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More than half of the publishers listed alongside IntechOpen (18 out of 30) are Social Science and Humanities publishers. IntechOpen is an exception to this as a leader in not only Open Access content but Open Access content across all scientific disciplines, including Physical Sciences, Engineering and Technology, Health Sciences, Life Science, and Social Sciences and Humanities.
\\n\\nOur breakdown of titles published demonstrates this with 47% PET, 31% HS, 18% LS, and 4% SSH books published.
\\n\\n“Even though ItechOpen has shown the potential of sci-tech books using an OA approach,” other publishers “have shown little interest in OA books.”
\\n\\nAdditionally, each book published by IntechOpen contains original content and research findings.
\\n\\nWe are honored to be among such prestigious publishers and we hope to continue to spearhead that growth in our quest to promote Open Access as a true pioneer in OA book publishing.
\\n\\n\\n\\n
\\n"}]',published:!0,mainMedia:{caption:"IntechOpen Maintains",originalUrl:"/media/original/113"}},components:[{type:"htmlEditorComponent",content:'
Simba Information has released its Open Access Book Publishing 2020 - 2024 report and has again identified IntechOpen as the world’s largest Open Access book publisher by title count.
\n\nSimba Information is a leading provider for market intelligence and forecasts in the media and publishing industry. The report, published every year, provides an overview and financial outlook for the global professional e-book publishing market.
\n\nIntechOpen, De Gruyter, and Frontiers are the largest OA book publishers by title count, with IntechOpen coming in at first place with 5,101 OA books published, a good 1,782 titles ahead of the nearest competitor.
\n\nSince the first Open Access Book Publishing report published in 2016, IntechOpen has held the top stop each year.
\n\n\n\nMore than half of the publishers listed alongside IntechOpen (18 out of 30) are Social Science and Humanities publishers. IntechOpen is an exception to this as a leader in not only Open Access content but Open Access content across all scientific disciplines, including Physical Sciences, Engineering and Technology, Health Sciences, Life Science, and Social Sciences and Humanities.
\n\nOur breakdown of titles published demonstrates this with 47% PET, 31% HS, 18% LS, and 4% SSH books published.
\n\n“Even though ItechOpen has shown the potential of sci-tech books using an OA approach,” other publishers “have shown little interest in OA books.”
\n\nAdditionally, each book published by IntechOpen contains original content and research findings.
\n\nWe are honored to be among such prestigious publishers and we hope to continue to spearhead that growth in our quest to promote Open Access as a true pioneer in OA book publishing.
\n\n\n\n
\n'}],latestNews:[{slug:"intechopen-supports-asapbio-s-new-initiative-publish-your-reviews-20220729",title:"IntechOpen Supports ASAPbio’s New Initiative Publish Your Reviews"},{slug:"webinar-introduction-to-open-science-wednesday-18-may-1-pm-cest-20220518",title:"Webinar: Introduction to Open Science | Wednesday 18 May, 1 PM CEST"},{slug:"step-in-the-right-direction-intechopen-launches-a-portfolio-of-open-science-journals-20220414",title:"Step in the Right Direction: IntechOpen Launches a Portfolio of Open Science Journals"},{slug:"let-s-meet-at-london-book-fair-5-7-april-2022-olympia-london-20220321",title:"Let’s meet at London Book Fair, 5-7 April 2022, Olympia London"},{slug:"50-books-published-as-part-of-intechopen-and-knowledge-unlatched-ku-collaboration-20220316",title:"50 Books published as part of IntechOpen and Knowledge Unlatched (KU) Collaboration"},{slug:"intechopen-joins-the-united-nations-sustainable-development-goals-publishers-compact-20221702",title:"IntechOpen joins the United Nations Sustainable Development Goals Publishers Compact"},{slug:"intechopen-signs-exclusive-representation-agreement-with-lsr-libros-servicios-y-representaciones-s-a-de-c-v-20211123",title:"IntechOpen Signs Exclusive Representation Agreement with LSR Libros Servicios y Representaciones S.A. de C.V"},{slug:"intechopen-expands-partnership-with-research4life-20211110",title:"IntechOpen Expands Partnership with Research4Life"}]},book:{item:{type:"book",id:"6095",leadTitle:null,fullTitle:"Insecticides - Agriculture and Toxicology",title:"Insecticides",subtitle:"Agriculture and Toxicology",reviewType:"peer-reviewed",abstract:"Insecticides are substances used to kill insects. They are used primarily in agriculture to control pests that infest crop. Nearly all insecticides have the potential to significantly alter ecosystems: many are toxic to humans and/or animals; some become concentrated as they spread along the food chain. The presence of these chemicals in both aquatic and terrestrial ecosystems has become an important issue globally. The book Insecticides - Agriculture and Toxicology provides information on the use of insecticides in pest management in order to enhance crop protection and their effects on nontarget organisms.",isbn:"978-1-78923-167-0",printIsbn:"978-1-78923-166-3",pdfIsbn:"978-1-83881-288-1",doi:"10.5772/intechopen.68177",price:119,priceEur:129,priceUsd:155,slug:"insecticides-agriculture-and-toxicology",numberOfPages:146,isOpenForSubmission:!1,isInWos:null,isInBkci:!1,hash:"4e249884334e8155c1e57e34b7d8c9d2",bookSignature:"Ghousia Begum",publishedDate:"May 23rd 2018",coverURL:"https://cdn.intechopen.com/books/images_new/6095.jpg",numberOfDownloads:9341,numberOfWosCitations:23,numberOfCrossrefCitations:22,numberOfCrossrefCitationsByBook:0,numberOfDimensionsCitations:46,numberOfDimensionsCitationsByBook:0,hasAltmetrics:0,numberOfTotalCitations:91,isAvailableForWebshopOrdering:!0,dateEndFirstStepPublish:"June 6th 2017",dateEndSecondStepPublish:"June 27th 2017",dateEndThirdStepPublish:"September 23rd 2017",dateEndFourthStepPublish:"December 22nd 2017",dateEndFifthStepPublish:"February 20th 2018",currentStepOfPublishingProcess:5,indexedIn:"1,2,3,4,5,6",editedByType:"Edited by",kuFlag:!1,featuredMarkup:null,editors:[{id:"83759",title:"Dr.",name:"Ghousia",middleName:null,surname:"Begum",slug:"ghousia-begum",fullName:"Ghousia Begum",profilePictureURL:"https://mts.intechopen.com/storage/users/83759/images/3549_n.jpg",biography:"Dr. Ghousia Begum got her Ph.D from Osmania University and continued her postdoctoral wok in the same University. In 1998 she was appointed Junior Scientist in Biology Division, CSIR- Indian Institute of Chemical Technology. She has significantly contributed to the field of Ecotoxicology, Biochemical and Molecular Mechanisms of Toxicity and Environmental Biology. Her research interests lies in how environmental changes, particularly toxicants affect physiological functions in aquatic animals especially in fish She is also working on alternative animal models which include lower invertebrates (Daphnia) and vertebrates (Zebra fish and edible fishes) for toxicity evaluation. She has published more than 30 research articles in reputed journals. She has more than 500 citations to her credit\nShe has been awarded YOUNG SCIENTIST AWARD for the year 1993 by National Environmental Science Academy (NESA), gold medal for academic excellence and SCIENTIST OF THE YEAR AWARD-2012 by NESA. She has edited a book entitled “ECOTOXICOLOGY” published by InTech. Presently she is editorial board member in eleven journals and editor of two journals. Many journals in the area of environmental biology, toxicology and related areas used her as peer reviewer.",institutionString:null,position:null,outsideEditionCount:0,totalCites:0,totalAuthoredChapters:"0",totalChapterViews:"0",totalEditedBooks:"3",institution:{name:"Indian Institute of Chemical Technology",institutionURL:null,country:{name:"India"}}}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,coeditorOne:null,coeditorTwo:null,coeditorThree:null,coeditorFour:null,coeditorFive:null,topics:[{id:"310",title:"Pestology",slug:"agronomy-pestology"}],chapters:[{id:"58734",title:"Biorational Insecticides and Diatomaceous Earth for Control Sustainability of Pest in Chickpea and Mexican Bean Weevil",doi:"10.5772/intechopen.71534",slug:"biorational-insecticides-and-diatomaceous-earth-for-control-sustainability-of-pest-in-chickpea-and-m",totalDownloads:1050,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Sustainability involving the conservation and/or enhancement of natural resources and environmental protection can be practiced with biorational insecticides or diatomaceous earth. Two researches were carried out; in one, the objective was to determine the efficacy of biorational insecticides in controlling chickpea leaf miner, Liriomyza sativae Blanchard, without completely inhibiting the presence of parasitoids of this pest. Biorational insecticides were chlorantraniliprole, cyromazine and spinosad, and conventional insecticide was chlorpyrifos, which were similarly effective to control adults and larvae of Liriomyza. Most chickpea production in 2012–2013 (1993.3 and 1806.8 kg ha−1) was obtained where chlorantraniliprole and chlorpyrifos were applied, respectively, and where spinosad and cyromazine were applied also exceeded the performance of absolute control (1213.6 kg ha−1). In 2013–2014, the increased production was 1621.9 kg ha−1 with chlorantraniliprole and 1556.3 kg ha−1 with chlorpyrifos, significantly different from the absolute control that produced 1136.5 kg ha−1. Earnings were MX$ 21011.7 in 2012–2013 and MX$ 16036.7 in 2013–2014 with chlorantraniliprole, while in the absolute control, earnings were MX$ 12305.1 and MX$ 11083.5. Chlorantraniliprole was the biorational insecticide that caused greater effect in the management of this pest of chickpea and crop yields. While in another research, the objective was to determine the efficacy of different doses of diatomaceous earth against Mexican bean weevil Zabrotes subfasciatus Boheman. An experiment was carried out in two phases: in first, one tested diatomaceous earth at doses of 1.0, 2.0, 3.0, 4.0, and 5.0 g kg−1 of seed, with samples at 15, 30, 45, and 60 days after application (daa), while in the second, the doses were 0.2, 0.4, 0.6, 0.8, and 1.0 g kg−1 and samples at 10, 20, 30, and 40 daa. The parameters evaluated were weevil mortality and seed germination. The results indicated that the doses from 0.8 to 5.0 g kg−1 of diatomaceous earth efficiently controlled the Mexican bean weevil. The treatments did not inhibit seed germination.",signatures:"Jacobo Enrique Cruz Ortega, Leopoldo Partida Ruvalcaba,\nRaymundo Medina López, Tomás Díaz Valdés, Teresa de Jesús\nVelázquez Alcaraz and Felipe Ayala Tafoya",downloadPdfUrl:"/chapter/pdf-download/58734",previewPdfUrl:"/chapter/pdf-preview/58734",authors:[{id:"206346",title:"Dr.",name:"Partida",surname:"Ruvalcaba Leopoldo",slug:"partida-ruvalcaba-leopoldo",fullName:"Partida Ruvalcaba Leopoldo"},{id:"206348",title:"Dr.",name:"Medina",surname:"López Raymundo",slug:"medina-lopez-raymundo",fullName:"Medina López Raymundo"},{id:"206349",title:"Dr.",name:"Cruz",surname:"Ortega Jacobo Enrique",slug:"cruz-ortega-jacobo-enrique",fullName:"Cruz Ortega Jacobo Enrique"},{id:"206350",title:"Dr.",name:"Díaz",surname:"Valdés Tomás",slug:"diaz-valdes-tomas",fullName:"Díaz Valdés Tomás"},{id:"206351",title:"Dr.",name:"Velázquez",surname:"Alcaraz Teresa De Jesús",slug:"velazquez-alcaraz-teresa-de-jesus",fullName:"Velázquez Alcaraz Teresa De Jesús"},{id:"206352",title:"Dr.",name:"Ayala",surname:"Tafoya Felipe",slug:"ayala-tafoya-felipe",fullName:"Ayala Tafoya Felipe"}],corrections:null},{id:"60115",title:"Plant Lectins with Insecticidal and Insectistatic Activities",doi:"10.5772/intechopen.74962",slug:"plant-lectins-with-insecticidal-and-insectistatic-activities",totalDownloads:1315,totalCrossrefCites:5,totalDimensionsCites:12,hasAltmetrics:0,abstract:"Lectins are an important group of proteins which are spread in all kingdoms of life. Their most lighted characteristic is associated to their specific carbohydrate binding, although function has been not even identified. According to their carbohydrate specificity, several biological activities have been assessed, finding that lectins can be used as mitogenic agents, biomarkers, and cytotoxic and insecticide proteins. Lectins have been classified according to several features such as structure, source, and carbohydrate recognition. The Protein Research Group (PRG) has worked on Colombian seeds from the family of Fabaceae and Lamiaceae plants, isolating and characterizing their lectins, and found more than one lectin in some plants, indicating that according to its specificity, different lectins can have different biological activities. In the case of legume domain lectins, they have shown the biggest potential as insecticide or insectistatic agents due to the glycosylation pattern in insect midgut cells. This review attempts to identify the characteristics of plant legume lectin domains that determine their insecticidal and insectistatic activities.",signatures:"Edgar Antonio Reyes-Montaño and Nohora Angélica Vega-Castro",downloadPdfUrl:"/chapter/pdf-download/60115",previewPdfUrl:"/chapter/pdf-preview/60115",authors:[{id:"100016",title:"Dr.",name:"Edgar Antonio",surname:"Reyes-Montaño",slug:"edgar-antonio-reyes-montano",fullName:"Edgar Antonio Reyes-Montaño"},{id:"207931",title:"Dr.",name:"Nohora Angélica",surname:"Vega-Castro",slug:"nohora-angelica-vega-castro",fullName:"Nohora Angélica Vega-Castro"}],corrections:null},{id:"58195",title:"Role of the Formulation in the Efficacy and Dissipation of Agricultural Insecticides",doi:"10.5772/intechopen.72340",slug:"role-of-the-formulation-in-the-efficacy-and-dissipation-of-agricultural-insecticides",totalDownloads:2071,totalCrossrefCites:3,totalDimensionsCites:4,hasAltmetrics:0,abstract:"Considering the implications the formulation may have on the effectiveness and residuality of an active ingredient, four trials were conducted comparing two commercial formulations of the diazinon insecticide, two of acetamiprid, two of lambda-cyhalothrin, and, finally, three formulations of imidacloprid. For diazinon and acetamiprid, the comparison parameters used correspond to efficacy against three key pests in apple trees: Cydia pomonella, Diaspidiotus perniciosus, and Pseudococcus viburni; for l-cyhalothrin, efficacy against C. pomonella was compared; and for imidacloprid, differences in control P. viburni were established. In all cases, their persistence was established in terms of initial and final residue levels in samples of fruits, at 1 and 25 days after application (DAA). Different formulations of the same insecticide correspond to a relevant factor in the general behavior that each product presents in field conditions, being able to affect parameters such as its persistence in the fruit and/or initial deposit of the active ingredient. This variation was demonstrated in the comparison performed on acetamiprid, imidacloprid, and diazinon, but it was not so in l-cyhalothrin. Efficacy was affected in all parameters evaluated for each group of insecticides, demonstrating that different formulations can deliver different biological activity in the control of various pests.",signatures:"Karina Buzzetti",downloadPdfUrl:"/chapter/pdf-download/58195",previewPdfUrl:"/chapter/pdf-preview/58195",authors:[{id:"214596",title:"Dr.",name:"Karina",surname:"Buzzetti",slug:"karina-buzzetti",fullName:"Karina Buzzetti"}],corrections:null},{id:"60444",title:"Evaluation of Insecticides in Protective Clothing",doi:"10.5772/intechopen.76075",slug:"evaluation-of-insecticides-in-protective-clothing",totalDownloads:922,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"The exposure to insecticides causes several health problems, which can be aggravated by more toxicity. Therefore, to avoid this exposure, it is required to use protective clothing. The use of protective equipment against pesticides is indispensable and essential from the preparation/handling regulations of the pesticides spray to the application of diluted formulations. However, even with this protection, workers are not totally immune to the contamination of pesticides. There are several factors that contribute to the loss of efficiency of protective clothing against pesticides, such as field use, activity of application, the type of material, seam presence, clothing model, types of formulation used in the application, the process of washing, and the ironing of clothes after their use.",signatures:"Melina Espanhol Soares and Flávio Soares Silva",downloadPdfUrl:"/chapter/pdf-download/60444",previewPdfUrl:"/chapter/pdf-preview/60444",authors:[{id:"234424",title:"Ph.D.",name:"Melina",surname:"Espanhol Soares",slug:"melina-espanhol-soares",fullName:"Melina Espanhol Soares"},{id:"240925",title:"Prof.",name:"Flávio",surname:"Soares Silva",slug:"flavio-soares-silva",fullName:"Flávio Soares Silva"}],corrections:null},{id:"58221",title:"Particulate Nanoinsecticides: A New Concept in Insect Pest Management",doi:"10.5772/intechopen.72448",slug:"particulate-nanoinsecticides-a-new-concept-in-insect-pest-management",totalDownloads:1674,totalCrossrefCites:7,totalDimensionsCites:17,hasAltmetrics:0,abstract:"Nanostructured alumina (NSA) has insecticidal properties and has been demonstrated to be effective against stored product insect pests in laboratory bioassays. NSA is a nano-engineered material synthesized by oxidation of metals, and resulting particles show fixed electric charges. On the other hand, insects exhibit their own electric charges generated by triboelectrification. We propose that the mechanism of action of NSA involves two steps occurring in sequential order. First, a strong electrical binding between negatively charged NSA particles and positively charged insect. Next, dehydration of the insect occurs due to the strong sorbtive action of the NSA particles that remove the insect cuticular, leading to death by dehydration. As postulated for insecticidal inert powder in generals, particles attach to the insect cuticle surface disrupting water balance, and effectiveness decreases as ambient humidity increases, given that electrostatic bond forces are reduced by electrostatic discharge. The high insecticidal efficacy of NSA is a result of its intrinsic electric charge, small particle size and high sorptive potential due to its large specific surface area. NSA could provide an alternative to conventional synthetic organic insecticides due to its strong insecticidal properties with the advantage that its mechanism of action involves physical and electrostatic phenomena.",signatures:"Teodoro Stadler, Micaela Buteler, Susana R. Valdez and Javier G.\nGitto",downloadPdfUrl:"/chapter/pdf-download/58221",previewPdfUrl:"/chapter/pdf-preview/58221",authors:[{id:"207985",title:"Ph.D.",name:"Teodoro",surname:"Stadler",slug:"teodoro-stadler",fullName:"Teodoro Stadler"},{id:"208044",title:"Dr.",name:"Micaela",surname:"Buteler",slug:"micaela-buteler",fullName:"Micaela Buteler"},{id:"208045",title:"Ph.D. Student",name:"Javier",surname:"Gitto",slug:"javier-gitto",fullName:"Javier Gitto"},{id:"210819",title:"Dr.",name:"Susana Ruth",surname:"Valdez",slug:"susana-ruth-valdez",fullName:"Susana Ruth Valdez"}],corrections:null},{id:"58125",title:"Propesticides and Their Implications",doi:"10.5772/intechopen.71532",slug:"propesticides-and-their-implications",totalDownloads:1100,totalCrossrefCites:5,totalDimensionsCites:7,hasAltmetrics:0,abstract:"With increasing knowledge of the biochemistry and genetics of major pest insects, weeds, and agricultural pathogens, the design of such selectivity becomes a part of pesticide development and is achieved by appropriate structural modification of the parent lead molecule which is called as propesticide. In a strict sense, a propesticide is a biologically inactive compound requiring structural transformation(s) after application to become pesticidally active. Various pesticides have come to the limelight of being a propesticide by carrying out studies on their metabolic fate in organisms. Studies on the metabolic fate of diafenthiuron in vitro by liver microsomes from various vertebrates revealed a variety of possible transformations of the thiourea. Few have been developed by reversibly masking the active ingredients. Fluorinated N-acylaziridine behaves as a propesticide of the fluorinated carboxylate and the hydrolysis of the former to 2-methylaziridine and carboxylate being activation pathway. Imidacloprid and the thiazolylmethyl analogue masked with oxodioxolyl group decomposed with half life of 15.4 and 11.4 h in alkaline and physiological salt solutions, respectively, releasing imidacloprid quantitatively. New propesticide with two effects of both benzoylphenyl ureas and carbamates were designed and synthesized.",signatures:"Shaon Kumar Das and Irani Mukherjee",downloadPdfUrl:"/chapter/pdf-download/58125",previewPdfUrl:"/chapter/pdf-preview/58125",authors:[{id:"182210",title:"Dr.",name:"Shaon Kumar",surname:"Das",slug:"shaon-kumar-das",fullName:"Shaon Kumar Das"},{id:"213740",title:"Prof.",name:"Irani",surname:"Mukherjee",slug:"irani-mukherjee",fullName:"Irani Mukherjee"}],corrections:null},{id:"58099",title:"Toxic Effects of the Organophosphorus Insecticide Fenthion on Growth and Chlorophyll Production Activity of Unicellular Marine Microalgae Tetraselmis suecica: Comparison between Observed and Predicted Endpoint Toxicity Data",doi:"10.5772/intechopen.72321",slug:"toxic-effects-of-the-organophosphorus-insecticide-fenthion-on-growth-and-chlorophyll-production-acti",totalDownloads:1215,totalCrossrefCites:2,totalDimensionsCites:6,hasAltmetrics:0,abstract:"This chapter provides the results of a laboratory ecotoxicological study conducted to assess the acute toxicity of the organophosphorus pesticide fenthion toward the marine microalgal species Tetraselmis suecica. Bioassays were performed, and algal densities and chlorophyll pigments fractions were measured in the exponential phase after 96 h of exposure to fenthion. Two quantitative structure activity relationships (QSARs) were used to estimate the toxicity of 13 primary metabolites and degradation products of fenthion toward the selected organism; the first was based on the use of the n-octanol/water partition coefficient, whereas the second was based on the solubility of the compound in water. Results revealed that fenthion can have marked effects on the growth and photosynthesis of the target primary producers of marine ecosystems T. suecica. The parent pesticide toxicant was found not toxic to the tested algal species up to 1.00 mg L−1, while higher treatment concentrations not only affected algal densities and significantly decreased specific growth rate values (μ) (p < 0.05) but also decreased the contents of photosynthetic pigments. The comparison between the observed and the predicted toxicity values of the parent compound fenthion indicated that the predictive capability of the QSARs applied can be considered highly satisfactory. Consequently, both QSAR models were used for the prediction of toxicity data of fenthion’s principal metabolites and degradation products.",signatures:"Maria C. Vagi, Andreas S. Petsas, Maria D. Pavlaki, Niki M.\nSmaragdaki and Maria N. Kostopoulou",downloadPdfUrl:"/chapter/pdf-download/58099",previewPdfUrl:"/chapter/pdf-preview/58099",authors:[{id:"200196",title:"Dr.",name:"Andreas",surname:"Petsas",slug:"andreas-petsas",fullName:"Andreas Petsas"},{id:"200198",title:"Dr.",name:"Maria",surname:"Vagi",slug:"maria-vagi",fullName:"Maria Vagi"},{id:"217857",title:"Dr.",name:"Maria",surname:"Pavlaki",slug:"maria-pavlaki",fullName:"Maria Pavlaki"},{id:"217858",title:"Prof.",name:"Maria",surname:"Kostopoulou",slug:"maria-kostopoulou",fullName:"Maria Kostopoulou"},{id:"229000",title:"Ms.",name:"Niki",surname:"Smaragdaki",slug:"niki-smaragdaki",fullName:"Niki Smaragdaki"}],corrections:null}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"},subseries:null,tags:null},relatedBooks:[{type:"book",id:"677",title:"Ecotoxicology",subtitle:null,isOpenForSubmission:!1,hash:"1925c37f0dfc6eb0d8448aa22777eb9e",slug:"ecotoxicology",bookSignature:"Ghousia Begum",coverURL:"https://cdn.intechopen.com/books/images_new/677.jpg",editedByType:"Edited by",editors:[{id:"83759",title:"Dr.",name:"Ghousia",surname:"Begum",slug:"ghousia-begum",fullName:"Ghousia Begum"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"6566",title:"Biomarker",subtitle:"Indicator of Abnormal Physiological Process",isOpenForSubmission:!1,hash:"d50cce2242888a02ce742196a7dbf09f",slug:"biomarker-indicator-of-abnormal-physiological-process",bookSignature:"Ghousia Begum",coverURL:"https://cdn.intechopen.com/books/images_new/6566.jpg",editedByType:"Edited by",editors:[{id:"83759",title:"Dr.",name:"Ghousia",surname:"Begum",slug:"ghousia-begum",fullName:"Ghousia Begum"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"5526",title:"Biological Control of Pest and Vector Insects",subtitle:null,isOpenForSubmission:!1,hash:"2e787450cc7eded94883ef67852a07b4",slug:"biological-control-of-pest-and-vector-insects",bookSignature:"Vonnie D.C. 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\r\n\tAn ideal signal would be a Dirac if we lived in a world without noise. Of course, such an ideal signal where all the power could be only at one single frequency doesn't exist. It is due to physics, temperature effects, intrinsic effects and sensitivity of any system to external sources. Phase noise is determined in the frequency domain by providing the spectral density of phase noise versus the carrier frequency. Furthermore, phase noise is an essential parameter in various areas such as instrumentation, telecommunication, radars, or metrology. Obtaining the Jitter consists of measuring variations in the time domain, compared to the ideal value of a signal. Phase noise can then be considered as jitter in the time domain. In electronics, it is important to reduce it to ensure stable and better waveforms. This book intends to provide a wide scope of information about phase noise and jitter, including theory, simulation, electronics, applications and recent progress in this field.
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On the other hand, the fossil fuel had been taken to decrease, and the alternatives of energy sources are still under research to raise their efficiency. Besides, the fossil fuel has led to the environment degradation and global warming [1].
Revolution of nanotechnology and its unique features compared with the large scale of its originality has been given a major focus. This dramatic growth stemmed from the multiapplications in various fields of life: medicine, agriculture, engineering, and industry. Nanotechnology, as a scientific major, studies the properties of nanoscale materials. Nanotechnology-based techniques could be produced by small particles in the size of nano of some solid materials such as alumina and titanium oxide that have relatively high thermal conductivity. The word “nano” is described as 1 billionth of meter or 10−9 m. Figure 1 shows a comparative sample of different sizes of materials from large scales to nanoscales. These nanosized particles are mixed in the base fluid of heat transfer forming a colloidal solution in the stable case, while its addition to the base fluids of low thermal conductivity probably increases the heat transfer characteristics of the base fluids. This creative fluid is known as nanofluid, which has a new heat transfer characteristic as one of the recent outcomes of nanotechnology. This makes, of course, saving energy exactly similar to reducing the volume of heat transfer equipment.
A comparative of things from large scale to nanoscale.
Nanotechnology has been widely used in various engineering applications as a promising alternative in saving energy and reducing the cost of producing engineering facilities. This important application is represented by the reduction of nanoparticles to the size of the nanoparticles and their mixing with fluids of low thermal properties to give a good type of fluid known as nanofluid.
With the advancement of nanotechnology and its ability to increase the performance of solar devices by exploiting it, a new fluid known as nanofluid has been originated. This is assembled by mixing the base fluid of low thermal conductivity with solid nanoparticles of high thermal conductivity, and hence the new fluid (nanofluids) has high transfer characteristic compared with the base fluids [1, 2]. A nanofluid is a fluid in which nanometer-sized particles, suspended in the base fluid, form a colloidal solution of nanoparticles in a base fluid. The nanoparticles used in nanofluids are typically made of metals, oxides, carbides, or carbon nanotubes, while the base fluids include water, ethylene glycol, and oil. Nanofluids have novel properties that make them potentially useful in many applications in heat transfer, including microelectronics, fuel cells, pharmaceutical processes, and hybrid-powered engines, engine cooling/vehicle thermal management, domestic refrigerator, chiller, and heat exchanger and in grinding, machining, and in boiler flue gas temperature reduction.
Nanofluids are produced by several techniques: first step, second step, and other techniques. To avoid the sedimentation of nanoparticles during its operation, surfactant may be added to them. Nanofluid preparation is the first step ahead of any implementations. Therefore, it entails more focus from researchers to obtain a good stage of stability. Colloidal theory states that sedimentation in suspensions ceases when the particle size is below a critical radius due to counterbalancing gravity forces by the Brownian forces. Nanoparticles of a smaller size may be a better size in the different applications. However, it has a high surface which leads to the formation of agglomerates among them [3, 4]. Therefore, to obtain a stable nanofluid with optimum particle diameter and concentration, it is considered a big challenge for researchers. Two common methods are used to produce nanofluids, the two-step method and the one step method, and others have worked up some innovations.
The two-step method is the common method to produce nanofluids. Nanoparticles of different materials including nanofibers, nanotubes, or other nanomaterials are first produced as nanosized from 10 to 100 nm by chemical or physical methods. Then, the nanosized powder will be dispersed in base fluids with the help of intensive magnetic force agitation, ultrasonic agitation, high-shear mixing, homogenizing, and ball milling. As resulting from high surface area and surface activity, nanoparticles tend to aggregate reflecting adversely on the stability of nanofluid [4, 5, 6, 7, 8]. To avoid that effect, the surfactant is added to the nanofluids.
The two-method preparation has been done by many researchers [9, 10, 11, 12, 13, 14].
Figure 2 shows a block diagram of preparation of two-step method [15].
Two-step method of preparation of nanofluids [
The one-step process is simultaneously making and dispersing the particles in the base fluids which could be reduced to the agglomeration of nanoparticles. This method makes the nanofluid more stable with a limitation of the high cost of the process [16, 17, 18, 19, 20, 21, 22, 23, 24, 25].
Some researchers create other methods to obtain new prepared methods for nanofluid with relatively high characteristics and more stability. Wei et al. [26] developed a method to synthesize copper nanofluids. This method can be synthesized through a novel precursor transformation with the help of ultrasonic and microwave irradiation [27]. Chen et al. [28] obtain monodisperse noble-metal colloids through using a phase-transfer method. Feng et al. [29] have used the aqueous-organic phase-transfer method for preparing gold, silver, and platinum nanoparticles with the solubility in water. Phase-transfer method is also used to prepare stable kerosene-based F3O4 nanofluids [30]. As stated above, the research proved that nanofluids synthesized by chemical solution method could be enhanced in conductivity with more stability [31].
Nanofluids have novel properties different from base fluids that included thermophysical properties such as specific heat, density, viscosity, and thermal conductivity.
Mixing the nanoparticles into the base fluid changes the thermophysical properties of the base fluid. The most important thermophysical properties of nanofluids are nanofluid viscosity, nanofluid convective heat transfer, nanofluid thermal conductivity, and nanofluid specific heat.
The value of specific heat and density of the nanofluids can be determined by correlations, whereas the viscosity and thermal conductivity have different correlations.
Conventional heat transfer fluids, such as oil, water, and ethylene glycol (EG) mixture, are poor heat transfer fluids. Hence, many trials by researchers to enhance the heat transfer convection of these fluids through increasing their thermal conductivity. High thermal conductivity is obtained for the nanofluids by adding nanoparticle of solid materials of high thermal conductivity.
Nanofluids are basically advanced heat transfer fluids as an alternative to the pure base fluids to improve the heat transfer process through the addition of nanoparticle materials that have the properties of higher thermal conductivity. This attracted the attention of researchers to test many nanoparticles that have different thermal conductivity to obtain a high rate of heat transfer and use them in different applications.
The literature reported multiequations describing the thermal conductivity of nanofluids. The prominent results reported that there are improvements of 5–10% of the thermal conductivity of nanofluids using the base fluid (water, PAO). As is reported, there is no critical improvement in the thermal conductivity in comparison to the conventional base fluid dependent on particle size and base fluid thermal conductivity [32, 33, 34, 35, 36, 37].
Conventional models of effective thermal conductivity of suspensions are reported for some researchers [32].
where
Nanofluids have been proven a great potential for heat transfer enhancement [44, 45, 46, 47]. Nanofluids have been presented as a promising tool and a good alternative to base fluids to save energy, compact devices of low cost and design of multiequipment used in a different applications with nanofluids as working fluids.
Experimental investigation [38] on Cu- or water-based nanofluids has demonstrated great enhancement of heat transfer and also reported that friction factor has a very meager part in the application process. Other scholars [39] have concluded that a systematic and definite deterioration of the natural convective heat transfer occurs for the forced convection reliant on the solution concentration, the particle density, and the aspect ratio of the cylinder. Experimental investigation on Al2O3 nanofluids using water as base fluid has been studied by various research groups, and they concluded that the heat transfer coefficient in laminar flow [40, 41, 42] increases up to 12–15% and in the case of turbulent flow, it ranges up to 8% [43, 44]. CNT, CuO, SiO, and TiO2 nanofluids using water have been investigated [45, 46, 47]. Among these, CNT nanofluid produced similar results to that of Al2O3 nanofluid. Ding et al. [48] have concluded that the enhancement of heat transfer could be obtained by varying the flow condition and the fluid concentration. Alternatively, CuO has been investigated for several wall boundary conditions, and it has reached good results [3]. The increase in the concentration of the nanofluid on contrary gives very weak results on the heat transfer coefficient for volume fraction greater than 0.3% [49]. It is noted from the experiments that the heat transfer coefficient enhancement can be achieved in the range of 2–5%.
Viscosity is one of the parameters that influences the behavior of nanofluids. Researchers have conducted experiments to test the viscosity through adding the nanoparticles to the different base fluids, and hence they found out that the viscosity is significantly affected by both variations of temperature and volume fraction of nanoparticles [50, 51, 52, 53, 54, 55, 56]. They have reported correlated equations to quantify the viscosity based on their experiments using different nanofluids. The following correlated equations are examples that have been reported by some researchers.
Model for spherical nanoparticles [57]:
Model for simple hard sphere systems, the relative viscosity increases with particle volume fraction ø [57]:
The model is valid for spherical nanoparticles and for 0.5236 ≤ Φ ≤ 0.7405 [55]. Meaning of Φ = volume fraction and
The SiO2 nanofluid has been investigated [48] and concluded that nanofluid viscosity is dependent on the volume fraction. Other researchers [58] have analyzed commercial engine coolants dispersed with alumina particles. They found out that the nanofluid produced with calculated amount of oleic acid (surfactant) has been tested for stability. While the pure base fluid demonstrates Newtonian behavior over the measured temperature, it turns to a non-Newtonian fluid with addition of a few alumina nanoparticles.
The specific heat of material is quite an important property to define the thermal performance of any material [36]. Specific heats of nanofluids may differ according to the type of base fluids, nanomaterials, and concentration of nanoparticles found in base fluids. Pak and Cho [59] have investigated the impact of volume fraction of Al2O3 on specific heat. The investigation showed that 1.10–2.27% decrease in specific heat occurred for 1.34–2.78% volume fraction of nanoparticle size of 13 nm. Zhao et al. [68] also noticed a fall in the specific heat capacity of CuO nanofluid by 1.16–5% compared to base fluid EG for volume fraction of 0.1–0.6% and particle size which ranges from 25 to 500 nm. Some nanofluids show inconsistent behavior with volume convergence. Shahrul et al. [60] have conducted a comparative revision on the specific heat of nanofluids used in energy applications. They have concluded that for most nanomaterials in base fluids, specific heat decreases with the increase in volume fraction. Sonawane et al. [61] have investigated specific heat of Al2O3/ATF and reported the anomalous conduct of specific heat with volume convergence. Increase in specific heat capacity has also been reported in experimental observations [36, 62, 63, 64, 65, 66, 67, 68]. Fakoor Pakdaman et al. [69] have found out that there is 21–42% decrease in specific heat capacity of MWCNT/water nanofluid for 0.1–0.4% vol. a fraction in the range of 5–20 nm size. However, Kumaresan et al. [64] have observed 2.31–9.35% gain. In specific heat capacity of MWCNT/(EG/DW, 30/70) nanofluid for 0.15–0.45% concentration, particle size was kept at 30–50 nm. Nowadays, the result of experimental data does not signal a discreet and clear-cut indication that there is the only reduction in the heat capacity with an increment of volume concentration, as has been reported by several academic figures. Experimental observations on various nanofluids show increase of specific heat capacity [62, 63, 64, 65, 66, 67, 68, 69, 70], whereas experimental observations exhibit decrease in specific heat capacity performed by many researchers [59, 61, 71, 72, 73, 74, 75, 76, 77, 78, 79, 80, 81].
The specific heat of nanofluid can be determined as function of the particle volume concentration using the following equation [80]:
And
Nowadays, nanofluids play a vital role in heat transfer equipment as a good alternative in developing the efficiency of the heat transfer equipment and in turn of reducing the size of the equipment and saving energy.
Since water is a good medium for heat transfer and it is also a good medium for receiving and storing solar energy during sunrise time, therefore, water is a good medium for the heating processes and one important source for the application of solar energy [2, 82, 83]. It is granted that the thermal efficiency of the FPSWH is relatively low, and therefore researchers have exerted many efforts to increase its performance. The thermal efficiency of the FPSWH has improved by using specific techniques [84]. Researchers to enhance the performance of FPSWH and the thermal efficiency using different methods [85, 86, 87, 88, 89] have conducted many studies.
The recent researches have revealed that nanofluids have a large effect on increasing heat transfer. This is done through mixing the nanoparticles materials that have high thermal conductivity into the working fluid (or called the base fluid).
Now, nanofluids are promising mediums as alternatives to the base fluids, and hence the researches are still under investigation to improve and develop the heat transfer equipment systems.
Many works have been conducted to improve the performance of flat plate solar water heater using different nanoparticles to the base fluid [63, 64, 65, 66, 67, 68, 69, 70, 71, 72, 73].
To improve the performance of flat plate solar collector, scholars had conducted experimental and theoretical studies on flat plate solar collector using nanofluids with different binary materials (nanoparticles + base fluids) as a working fluid.
Salem Ahmed et al. [90] have conducted an experimental work on the performance of chilled water air conditioning unit with and without alumina nanofluids.
They have used the first method to prepare Al2O3 water nanofluids with different concentrations by weight, which vary from 0.1, 0.2, 0.3, and 1% wt. Under operation conditions, experiments have been investigated including a variation of flow rate of chilled water/alumina nanofluids and the air through the cooling coil. The results have shown that less time is scored to get the desired chilled fluid temperature for all the different concentrations of nanofluids (Al2O3-water) compared with pure water.
Again, the findings have shown a reduction of the power consumption and increase in the cooling capacity, which is in turn an increase in the COP by about 5 and 17% for alumina nanoparticles, concentration of 0.1 and 1% by weight, respectively. A schematic diagram of the experimental work shown in Figures 3 and 4 shows the TEM image of the alumina nanoparticles (Al2O3) used in the experiments.
A schematic diagram of the chilled-water air conditioning unit [
TEM image of Al2O3 nanoparticles used in the experiments [
Xu et al. [91] have conducted experimental and theoretical studies comparing a novel of parabolic trough concentrator with traditional solar water heater using nanofluid, CuO/oil. Figure 5 shows a configuration of the novel parabolic trough concentrator and the traditional solar heater.
Schematics of solar collection principles. (a) A conventional indirect absorption solar collector (IASC); (b) the proposed novel nanofluid-based direct absorption solar collector (NDASC); and (c) the heat transfer around nanoparticles inside the tube of NDASC [
As is shown in Figure 5b, a kind of oil added with certain nanoparticles (CuO) acts as a working fluid. The nanoparticles dispersed in the oil inside the inner tube directly capture the solar radiation instead of the tube wall coating. The solar collection efficiency curves for the two collectors suggested that the NDASC was superior to a conventional IASC within a preferred working temperature range, but inferior when the tf exceeded a specific critical temperature (
Variations of solar collection efficiencies with tf,i for both the NDASC and the IASC [
Said et al. [92] have used TiO2-water nanofluid as a working fluid for enhancing the performance of a flat plate solar collector for the volume fraction of the nanoparticles 0.1 and 0.3%, respectively, and mass flow rates of the nanofluid vary from 0.5 to 1.5 kg/min, respectively. Thermophysical properties and reduced sedimentation for TiO2 nanofluid have been obtained using PEG 400 dispersant. Energy efficiency has increased by 76.6% for 0.1% volume fraction and 0.5 kg/min flow rate, whereas the highest energy efficiency obtained has been 16.9% for 0.1% volume fraction and 0.5 kg/min flow rate.
The thermal efficiency of the FPSC (μ) and the energy efficiency are given, respectively, as [92].
The schematic of the solar collector and the experiment is presented in Figure 7. They also showed that the pressure drop and pumping power of TiO2 nanofluid were very close to the base fluid for the studied volume fractions [92].
The presentation of the experimental setup in schematic diagram [
Polvongsri et al. [93] have performed an experimental work to study the performance of a flat plate solar collector (Figure 8) using a silver nanofluid as the working fluid, while water was mixed with 20 nm silver nano with concentrations of 1000 and 10,000 ppm. The operating conditions of experiments to be done at a flow rate of working fluid between 0.8 and 1.2 l/min-m2 and the inlet temperature were controlled in a range of 35–65°C.
Diagram of the experimental setup [
It is remarkable that using silver nanofluid as a working fluid could improve the thermal performance of flat plate collector compared with water, especially at high inlet temperature as shown in Figure 9.
The performance curves of silver nanofluid at 10,000 and 1000 ppm and water [
This chapter reviews the recent applications of nanotechnology for nanofluids. These applications revealed that nanofluids have a promising alternative to enhance the performance of heat transfer equipment considering the cost, safety, potential of size reduction, and environmental protection. The present chapter provides a comprehensive overview of nanofluid as one of the important applications of nanotechnology and how to obtain it and its thermal properties. There are challenges hindering the preparation of nanomaterials, including the stability of nanofluids to take into consideration and worthy of attention on the part of researchers.
The way of running businesses in the last decade has drastically changed in such a way that it is impossible to imagine doing any business without the application of information communications technology (ICT). This, naturally, is becoming even more important with the outbreak of the COVID-19 pandemic [1]. However, even before this pandemic, ICT applications became an integral part of the everyday business of a large portion of business systems [2]. Over time, ICT has been gaining its importance becoming more and more important in the daily functioning of all business organizations.
Higher educational institutions are regarded as organizations, which according to their business, are considered special companies (justifiably to some extent), and yet many good practices that have been applied in successful business systems, particularly corporations, are not applied in higher educational institutions, neither state nor privately owned ones. However, a pandemic does not make a difference between corporations and higher educational institutions but points out that educational institutions cannot be regarded as separate entities but have to adjust to changed circumstances and different ways of working [1].
Although higher educational institutions organize their business dealings differently when compared with classic companies, certain segments of their work function exactly the same way as in classical companies (they both require human resources management, financial policy, goods or services procurement, work promotion, etc.).
With the development of competition in the higher education market and the emergence of many new higher educational institutions and study programs, some elements that have never been considered before in higher education attract the limelight—approaching students as stakeholders [3], developing and maintaining the relationship with students [4], struggling to attract new students [5], taking care about relationships with students and employees, etc. The complex ecosystem of a higher educational institution is made up of many relations similar to those already mentioned, and which imply a whole series of business processes and activities. In order to satisfy those relations in a proper manner, it takes a thorough and comprehensive approach at the level of higher educational institutions, which should integrate and take care of many intertwined business activities.
How can proper use of technologies affect the quality rating improvement of a higher educational institution in the present competitive market? The Association of Colleges in North Carolina established that a corporate information system aimed at a student as a stakeholder can also provide better chances to attract enrollment and retain new students [6]. Let us take, for example, the situation which has changed the manner in which people behave—the coronavirus pandemic. If there had not existed some use of e-services on behalf of higher educational institutions until the onset of the pandemic, the relationship between universities and students would have been totally disrupted. Never before the application of information technologies in the everyday relationship between teachers and students have become so prominent. It is not just about the educational process itself but also about the comprehensive relationship that an educational institution has with its user—the need to digitalize as many points of contact as possible.
Although some find it difficult to accept the idea that students are the same as stakeholders in reality that is what they are. In today’s market, more competitive than ever before, institutions offer students study programs, inter-faculty exchanges, practices, and similar activities that enrich a student’s life. They are customers who enroll in study programs, aimed at getting their diplomas, and donating as alumni members. The longer the satisfaction gained from the processes on both sides, the more durable their relationship will be thus bringing benefits to both sides. One of the ways in which faculties can affect the duration of this positive relationship with students is something that many corporations have already incorporated—managing relationships with stakeholders by means of contemporary information communications technologies [7]. The objective of an institution is to manage those relationships in an efficient and effective way in order to create firm and long-lasting relations.
Managing relationships involves the development of strategies, processes, and technologies with the purpose of strengthening relations of the company with a customer during their lifetime—from marketing and sale all the way to post-sale support [8, 9]. The concept of relationship management (customer relationship management, CRM) is widely accepted in the world of corporations but it is still a relatively new phenomenon in the sector of higher education [9]. Similar to other business systems, by accepting the CRM concept relationship managers in higher educational institutions aspire to improve business performance, promote better management practices, and advance relationships with current and potential students.
From the point of view of a customer, CRM business strategy enables him the interaction with the higher education institution through just one entity which encompasses all the necessary data of the individual in question. In the case of a student, this can be seen through his/her interaction with the employees who take his/her data for enrollment and registration, through financial matters, student’s account, etc. From the educational institution’s point of view, CRM provides a clear and comprehensive picture of every individual and the activities connected with him/her [10].
In order to pay attention to students and realize contact with them, and in doing to gain their loyalty and make them satisfied, higher educational institutions can nowadays turn to e-service concepts in their functioning. The application of e-service for the management of relationships with the users has become a part of business strategy and is not considered merely a marketing tool. That strategy supports the management in decision-making by using the existing information within the organization and, more importantly, by using information technologies for marketing programs and activities of the organization. The primary objective of managing the relationships with users is to notice and deliver services adjusted to each user himself/herself.
Bejou [7] proposes the adoption of customer relationship management as a way to establish and maintain a relationship between a student and a higher education institution. Customer care is represented in a certain form in most educational institutions today, so there are departments for providing services to students. However, real customer service must contain more than a department or a few individuals. CRM must include a special, service-oriented environment, and everyone within the organization should be engaged in trying to achieve that goal [11]. The fact is that today a strong relationship with customers is the key to success in any business [12, 13, 14, 15].
If we make an analogy with the development of computer applications, it can be said that e-service technology connects the frontend of the departments, that is, the ones protruding toward the user (such as sales, marketing, and customer care), and the backend departments such as management, finance, logistics, and human resources services, with user’s touchpoints [16]. “Touchpoints” represent channels through which the company has contact with its customers, and they can be the Internet, e-mail, sales, call centers, advertising, physical points of sale, and the like. These “touchpoints” are often under the control of special information systems [17].
Tapp et al. [18] state that the use of direct and marketing databases generated through the CRM system can greatly enhance the potential of a higher education institution to attract new candidates. Adoption of the CRM strategy leads to gaining insight into various relevant data on students that may be important, that is, on the basis of which a basis can be formed later for providing a service that will correspond with their expectations, build loyalty on behalf of students, and all that taken together will affect their retention within the institution. Potential customers are likely to hear positive experiences about the services provided by other users. In his study, Hill [19] reveals that there is a correlation between students’ expectations regarding services and their satisfaction. The same author also claims that higher education institutions should detect the expectations of their future students from the entry point to the institution until the moment of successful completion of the study program [20].
Very often, the choice of one higher education institution over another one with a similar level of quality may depend on the way the institution communicates with its (potential) students. The modern age is such that most students want established, relevant, and complete communication with the staff of the educational institution. The easiest way for higher education institutions to establish harmonious relationships with their stakeholders is by using an e-service system based on the application of modern ICT. Such a system provides valuable insight into information about students, creating a possibility to build a stronger and more personalized connection with former (alumni), current, and future students. In other words, the mentioned system applied in higher educational institutions enables the institution to constantly update information about stakeholders, facilitating and monitoring every interaction that the institution has with them through various platforms, regardless of where they are located. The e-service system can be designed so that it helps employees by simplifying their work process, and ultimately, improves their relationships with students. The result of all this is an increased interest in enrolling in the institution, increased student retention rates, better communication with students, and a happier and more satisfied team [21].
e-Service system can enable sending automated messages that will remind students of the future exam terms. Simple things such as reminders can help students to better organize their time, prepare more efficiently for exam obligations, and can have a positive effect on their welfare and the results to be achieved.
Collecting means and donations through the creation of long-lasting relationships with the Alumni club members is very much present at many universities. Diversification of higher educational institution revenue apart from traditional students’ tuition and public financing has become very important for universities. Nowadays many institutions are faced with the reduction of state financing which leads to financial pressure and the request to reduce their expenses. For that very reason, many higher educational institutions in other countries pay great attention to the relationships with former students (alumni). A comprehensive e-service system centralizes information on donors and Alumni club members and uses them to send automated notifications at certain periods during the year in order to inform all interested parties about the success of the program and the students in the particular institution. The incorporated analytical system examines which events and types of communication that year contributed the most.
The focus of marketing today is not so much on attracting new customers as it is directed at the customer’s satisfaction concept by offering users what they want, taking care of the relationship with them—the relationship which is not only commercial, unidirectional, and impersonal. The consumerist concept in higher education should be in the context of relationship marketing and not transactional marketing. Although students can be considered users, the nature of educational services, especially the relationship duration, suggests the development of the relationship rather than the approach of “pay and buy” [22, 23]. Adoption of CRM on behalf of educational institutions implies in itself the use of appropriate instruments which will help in collecting information about students’ requirements regarding education, and adjust services to measure their characteristics and requirements, all with the aim to enhance the educational process and to obtain better results which will reduce the number of students who drop out of university or abandon further education [20, 23, 24, 25, 26].
One of the features that separates higher educational institutions from business systems in other branches, and which makes the application of contemporary technologies aimed at CRM ideal for higher education, is the dedication and long-term relationship to which students agree when they enroll in the study program [27]. Other industries do not have that “luxury” to affect the life cycle of a client, which lasts several years. On the other hand, it can be good practice for higher educational institutions to consider their students as users since such an approach enables competitive advantage and enhances the ability of an institution to attract, retain, and offer appropriate service to its students/users.
From the relationship management point of view, the concept of a client’s life cycle can be transported to a student’s life cycle which is made up of the phases through which a student passes while considering and using the services of an educational institution. The phases in the life cycle of a student are as follows:
Possible → potential → candidate → accepted → enrolled → former student (alumni)
Possible: any student who, according to the Law, can be a candidate for enrollment in the university.
Potential: a student who is currently in the phase of gathering information and forming an opinion about a higher education institution.
Candidate: a student who has made a decision to apply for enrollment in an institution.
Accepted: the student is accepted when the institution has made a decision to accept the student.
Enrolled: this is the stage when a student officially becomes a student, that is, part of a higher education institution.
Former student (alumni): a student who has successfully completed the study program, and if he is satisfied with his academic experience, he will develop a long-term loyalty relationship with his institution.
From the point of view of relationship management activities, student enrollment activities related to the conversion of a possible into an accepted student constitute a marketing component. The conversion of accepted into enrolled is a component of sales, while the continuous enrollment and the presence of alumni is a component of customer support and retention. However, the student life cycle involves several complex interactions, especially during the retention phase because the academic program, counseling, and student life play a key role in student retention.
According to the results of a study conducted by Ogunnaike et al. [28], it was found that a student’s desire to recommend the institution of which he was a part, or still is, increases if the student life cycle is well managed by the institution. It was also noticed that a strong connection of the educational institution with parents leads to the situation that the student recommends his/her institution to others. Managing a good relationship with the parents of students also increases the desire of students to continue their postgraduate studies at the same institution.
The research conducted by Hilbert et al. [5] expresses a slightly different approach. It states that the student life cycle consists of three phases: entry, presence, and departure. In the entry phase, students are considered as potential clients, the present phase is made up of existing clients, and in the departure phase, they are already lost. However, the departure of students from the university/college does not mean that their communication with the institution is interrupted. At that point, universities strive to keep relationships with their students using some strategic methods [15].
The comprehensive model of the e-service system in the complex business ecosystem of higher education is shown in Figure 1. The model takes care of managing relations with a large portion of stakeholders of the higher education institution, among which students and employees are the most demanding in terms of the number and scope of electronic services. In addition to relations with stakeholders, the model represents support for the proper and efficient conduct of business functions: marketing, education, science, human resource management, finance and accounting, and procurement.
Infrastructure of the comprehensive e-service system.
The model consists of numerous elements and is based on cloud computing. The central part of the model is the infrastructure as a service (IaaS). A public cloud consisting of several virtual private servers (VPS) was chosen as the appropriate form of cloud computing. Each of the servers has a dedicated purpose and they have been separated with the intention, primarily because of the better optimization, higher security offered by this approach, and other practical reasons.
The comprehensive e-service system is based on open-source technologies. The system was developed by using Python programming language in combination with Django as a web framework. MySQL was chosen as a relational database management system.
As shown in Figure 1, the system consists of several modules. Some of the modules are actually specific Django applications, which have been integrated together into the main project. This has been done respecting one of the principles of Django design—DRY (Do not Repeat Yourself). The important part of the e-service system’s architecture is web services which are used to improve the performance of the system by utilizing Django’s cache framework.
Which are the benefits offered by implementing a comprehensive e-service system in higher education in the field of student relationship management? Using adequate communication channels, potential students can obtain appropriate and timely information that is the focus of their interest. When using the online learning platform, candidates are in a position to attend classes without physical presence and prepare for taking the entrance exam for enrollment in the institution. The process of applying for admission to the faculty can be completed much faster and easier with the help of online tools on the portal of the institution. Processing the results of the entrance exam with ICT support drastically shortens the time required for the formation of preliminary and final ranking lists, which shortens the period of stress exposure for future students. By using the already existing data on candidates in the system, and for the purpose of realizing the enrollment of candidates, there is no data redundancy, and the whole process of enrollment of candidates is accelerated.
Potential students, who decide to enroll in the educational institution, extend their life cycles and become current students of a higher education institution, where their previously existing data are taken over. In this way, a path is established for nurturing the relationship with the student during his entire life cycle from the moment he becomes a potential candidate until the act of graduating. The whole process of studying is then further facilitated for current students in several aspects—by using students’ modules they are able to apply for and cancel exams, follow all notifications, monitor all their teaching and pre-examination obligations, and have access to all information from their student file and use the platform for online learning. These students also have at their disposal timely notifications and all the necessary information relevant to their education through web portals, student services, social networks, email marketing platforms, and mobile services. More importantly, they are given the opportunity to leave feedback on various issues, fill out questionnaires regarding the pedagogical work of teachers and associates, the work of professional services and management, and in doing so greatly influence the work of the institution. There are several channels through which one can contact the institution and get answers to their questions in a short time. This way of working increases the retention rate, raises the reputation of the institution to a higher level, and at the same time reduces the costs of attracting new students, which, on the other hand, protects the income of the institution coming from tuition fees.
Upon graduating from the university, the students become members of the Alumni community thus completing their life cycle at the university. It is important for the institution to stay in touch with its former students and to work on maintaining good relations. It is in this field that the Alumni Portal is important, which helps in informing and organizing various types of events, gatherings, and professional training that are necessary for graduates, sends reminders about events, monitors events, and sends accompanying information.
The comprehensive e-service system can help an institution in one of the following ways:
nurtures the relationship with the student throughout his/her entire life cycle—from the moment he/she becomes a potential candidate to the act of graduation;
maintains complete student profiles—centralizes all contact information and helps to understand and analyze potential candidates, at every point of contact;
realizes contact with each member of the community: potential candidates, current students, alumni, employees, parents, and other contacts;
delivers relevant and appropriate offers, recommendations, advice, and actions at the moment optimal for potential candidates;
automates communication, freeing up time for other activities;
increases the retention rate by improving reputation, reduces attraction costs, and protects the income of the institution coming from tuition fees;
achieves a more efficient workflow, enabling employees to complete their tasks faster and easier. Reduces paper usage and the need to use a variety of storage solutions;
enables access, addition, and data modification 24/7, either in the office or on the road, with the use of mobile devices;
provides students with the fastest possible form of information, helps them to manage their responsibilities in a simple and clear manner, improves communication with the staff of the higher education institution, and provides an easy way to update data;
invites prospective students, current students, and alumni students to events, facilitates the event management process, sends event reminders, monitors events, and sends accompanying notifications;
measures the return on investment, provides insight into marketing activities, promotion channels, and determines what exactly brings revenue, and how.
The services covered in the work process by applying the comprehensive e-service model are as follows:
providing service information (notices, news, current events, and other important information on relevant activities);
management of student files (monitoring and recording of complete student files);
administration of the study program (support for organizing and conducting classes, organizing and monitoring exam terms);
monitoring, planning, and keeping records of teaching staff, their engagement, and workload;
generating the necessary documents, certificates, and other reports for students;
administration of employees (their personal identification data, contracts, salaries, records of attendance at work);
online learning environment;
accounting activities;
monitoring and recording scientific research work;
financial statements;
preparation of various statistical reports on enrollment, student achievement, and other reports necessary for state bodies, the University, or the governing bodies of the college;
ALUMNI portal for relationships with former graduates;
different forms and reports necessary for self-evaluation and accreditation of institutions and study programs;
monitoring, procurement, and records of inventory, materials, and fixed assets.
This section presents the functionalities of the comprehensive e-services system through the user interface and explanations of the logic behind it. As an integrated system, it can be logically divided into three parts: e-teacher module, e-student module, and supporting departments module.
This module enables teaching staff to manage a wide spread of activities:
informs teaching staff about ongoing exams and details (Figure 2);
gives an overview of students who registered for an exam within the given term (Figure 3);
gives an overview of subjects for which grades were not supplied (Figure 4);
allows teaching staff to add students’ grades for the appropriate exam period and the appropriate subject (Figure 5);
archives previously held exams for the appropriate subjects (Figure 6);
shows the records of those students who have registered for the relevant exam within the appropriate term (Figure 7);
shows an overview of teaching staff engagement across subjects in the study program (Figure 8);
provides an overview of published scientific results for each employee within the teaching staff (Figure 9).
Overview of ongoing exams.
Overview of students who registered for the exam within the given term.
Overview of subjects for which grades were not provided.
Adding students’ grades for the appropriate subject and exam period.
Archive of the previously held exams for the appropriate subjects.
Students details for those who have registered for the exam within the appropriate term.
Shows an overview of employee engagement in the relevant study program.
An overview of the employee’s scientific results published so far.
In the Ongoing exams section, teachers and associates have the opportunity to review registered students, within the given term, for the subjects they are engaged in (Figure 2).
Students registered for the selected subject can be displayed by selecting one of the subjects from the table (Figure 3).
In the Grades entry for previous exams section, grades are added by selecting the appropriate subject from the table (Figure 4). The list shows all subjects for which grades in previous exam terms have not been added.
If the teaching staff wants to leave the entry for later, the teacher can temporarily save grades that have been added and later continue with the entry and confirmation of those grades, or they can do so immediately by clicking the
The
Clicking on a certain record in the table gives a more detailed presentation of the respective exam term, which includes a list of students who have applied for the exam within the specified term, grades, and the date of the exam (Figure 7).
In the
The
This module deals with relevant student data, viewed from two perspectives:
Students’ data managed by higher education institution.
Students’ data accessed through students user accounts.
Students’ data are accessed through the
Search form for students by several different parameters.
By selecting one of the students from the table, the Student file and more detailed data are accessed (Figure 11).
Student search results.
The section assigned to Students contains personal identification data of students, data on schooling or enrollment in the following years of study in the study program, an overview of all details related to exams taken by students and not passed so far, as well as data on the final paper, diploma supplement, and diploma export opportunities (Figure 12).
Page with basic student data and the possibility of updating them.
In the section with Exams, all the data on passed and failed exams are shown (Figure 13). These data are added on the other page, that is, in the module for teachers, who are obliged to add grades for each of the students after the exam period. By clicking on the appropriate row in the table, a new page opens in which it is possible to change the data on the held exam.
Report with the list of passed exams.
The second Tab with failed exams shows data on the subjects left for the student to pass in order to complete his/her education (Figure 14).
Report on the second Tab with a list of failed exams.
The section
Overview of the student’s education so far - managed by higher education institution.
In the section on the Final examination, after the student has successfully defended it, data on the topic of the final paper, the date of the defense, the grade as well as the members of the commission are added (Figure 16).
Page with student’s final examination data.
The
Archive of previously held exam terms.
By clicking on one of the entries in the table, it is possible to change the existing or add a new exam term.
Students can access their files using their user accounts, which offer an overview of all relevant data concerning the students. Among the information offered to the students are notices intended for students (Figure 18), data on their previous education, a list of passed exams, the ability to apply for and cancel exams, and an overview of their personal identification data.
Notices for students created in the system.
In the section Study year, students have an insight into their previous student education, that is, enrollment by school years, and the number of ECTS credits earned (Figure 19).
Overview of the student’s education so far - accessed by student.
In the section
Overview of the exams passed so far.
At the same time, the student has an insight into his current average grade and the current number of ECTS credits earned in the given study program.
In the
Exam application section.
Section for canceling previously applied exams.
The
Overview of general student data.
This module represents the core of the e-services system.
There are several functions provided by this module:
Human resources data management (employees’ contracts, specializations, sick leaves, and similar data management);
Teaching staff engagement overview;
Financial data and analytics;
Scientific research results management;
Institution’s publishing activity overview;
Institution’s assets management.
This section shows the records on master data of employees (Figures 24–26) and the records of inactive or former employees (Figure 27). Records contain data for full-time employees as well as for employees with other types of contracts. The functions available here are:
search by any of the parameters or employees data,
data sort for each of the columns,
exporting data in .xls format,
showing/hiding certain columns for easier and more clear viewing if necessary.
Overview of employee master data.
Overview of master data on employees, filtered data.
Overview of master data on employees, hiding certain data columns.
Records of employees who are no longer employed at the institution (former employees).
Clicking on one of the employees from the table displays a page from which employees’ data can be edited.
The section dedicated to editing employee data enables the revision of master data as well as the entry of various types of contracts and details related to them (these are treated as data objects). Administrators can add data on employment contracts, absences (due to sick leave, maternity leave, paid or unpaid leave), and academic advancement. Also, it is possible to record the termination of employment and to add a new employee with relevant data. In that way, the basis for the orderly and accurate keeping of records on teaching and non-teaching staff has been established, which will be further used for planning human resources policy and other services that use the given data.
A
The
Teaching staff engagement overview.
In addition to engagement by subjects and employees, it is possible to summarize engagement in the entire study program, with additional data such as academic promotion dates, period of retirement approaches, and similar (Figure 29).
Summary of the engagement of teachers and associates at the study program level.
The
Financial data for employees overview.
Change of financial data for employees.
The
Overview of the scientific research results published by teaching staff.
Prior to adding the scientific publication record to the system, it is necessary to ensure that a certain scientific journal or conference against which this record can be added is already in the system. To make it easier for users to add scientific publications results, asynchronous JavaScript calls have been implemented (Figure 33). By starting data entry, results are obtained in real-time, so users can have an insight into previous entries that may be related to a given record. In this way, feedback is received immediately on whether it is necessary to add publication data only or whether a journal or a conference record must be added previously.
Adding a new scientific research publication.
If a given journal does not already exist in the database for a given publication, it must be added first by selecting the
The next important feature of this section is the ability to export publication records in .docx format, based on several different parameters (Figures 34 and 35). The scientific research activity is an important aspect of higher education institutions’ work, and as such serves as a basis for the accreditation of scientific research activity. Given the volume of work on collecting documentation for application in the mentioned process, if the system is kept up to date, this section can be of significant help. It is possible to export all publications for a certain period amd filter publications that originate from doctoral dissertations or those from scientific research projects. Data can be exported in accordance with different needs, so publications can be sorted by authors, by relevant categorization, or by publishing date.
Exporting scientific publications.
Data exported in .docx format.
The appearance of the obtained data exported in .docx format is shown in Figure 35.
In the
The textbook overview contains basic information about each textbook issued by the institution—its name, code, and value generated by its distribution (Figure 36). Selecting one of the entries from the table proceeds to the status display for the corresponding textbook.
Summary overview of the textbooks published by the institution.
The
Service-level overview;
Department-level overview;
Institution-level overview, grouped by departments;
Comprehensive review at the institution-level.
The system records all services provided by the institution (Figure 37). By selecting a specific service the system displays detailed information: the number of services performed by months, service revenue, and comparison with the specific period (in terms of frequency and revenue) (Figure 38).
Reports for the selected service.
Reports on services provided for the selected department.
Given that each service belongs to one of the institution’s department, all of them can thus be grouped and presented in the report on
The last type of report is a summary of the services provided at the level of the institution (Figure 39). All services provided since the beginning of monitoring are recorded here, so the overview is very practical for comparing different periods. Also, the numbers of performed services and clients are shown tabularly and graphically, across the time.
Summary reports on services provided at the level of the institution.
Keeping records of the institution’s assets and inventory is possible through the provided section in the system that offers data review, entry of new data, and export of lists of assets and inventory (Figure 40).
Overview of the institution’s assets and inventory.
Data on the equipment of the institution can be sorted by columns and quickly filtered through the search. Also, there is an option to export lists of assets and inventory, that is important for classifying assets in an appropriate manner, thus making it easier for those responsible to keep records.
By integrating a comprehensive e-service model with the REST program interface, one of the instant messaging applications, a system for direct communication with students has been established, which immediately provides the necessary transactional notifications, service information, and reports to the most important stakeholder group of the higher educational institution.
One of the most commonly used instant messaging applications on a global scale today (Rakuten Viber) allows programmers to develop their own bots whose purpose is direct communication 1-1 with users who are subscribed for this type of service.
The following elements are required for the implementation of the Viber REST API [29]:
Active account on the platform that supports bots.
Active bot that has to be created beforehand.
Token for account authentication used for account validation. This token must be included in each individual API request sent to the service.
One-time Webhook request during initial setup that defines the types of responses that the bot wants to receive from users.
Viber Chatbots enable free communication with users, but only with those who first contacted the business account, that is, who subscribed to the service. Also, API does not enable downloading information about the user’s phone number, but each of the users has its own identification code (User ID).
The flow of message exchange between a Viber business account and regular Viber users is shown in Figure 41.
Diagram of the flow of messages sent between the user and the public account.
Once all the prerequisites have been met, a one-time Webhook registration for the public account is required. A webhook is a type of application programming interface which is event-based. It can be defined as a service that enables one application to send data to another when a certain event occurs. Webhook works practically one way, unlike classic APIs whose essence is to a get response based on a previously sent request.
Webhook can be configured programmatically or by sending a POST request with the appropriate parameters in the Header and Body, to the URL https://chatapi.viber.com/pa/set-webhook. The parameters required for sending are shown in Table 1.
Name | Description | Validation |
---|---|---|
url | Required. Account webhook URL to receive callbacks and messages from users | Webhook URL must use SSL Note: Viber does not support self signed certificates |
event_types | Optional. Indicates the types of Viber events that the account owner would like to be notified about. Do not include this parameter in your request to get all events | Possible values: delivered, seen, failed, subscribed, unsubscribed and conversation_started |
send_name | Optional. Indicates whether or not the bot should receive the user name. Default false | Possible values: true, false |
send_photo | Optional. Indicates whether or not the bot should receive the user photo. Default false | Possible values: true, false |
Parameters required for sending in order to arrange Webhook requests.
Depending on the type of event that can be registered through the callback function, different types of responses to the user can be defined. The following is an example of the Python code which is in charge of sending a response to a user according to whether the user started a conversation or signed up for the service:
from viberbot import Api
from viberbot.api.bot_configuration import BotConfiguration
from viberbot.api.messages.text_message import TextMessage
from viberbot.api.messages.data_types.contact import Contact
from viberbot.api.viber_requests import ViberConversationStartedRequest
from viberbot.api.viber_requests import ViberFailedRequest
from viberbot.api.viber_requests import ViberMessageRequest
from viberbot.api.viber_requests import ViberSubscribedRequest
from viberbot.api.viber_requests import ViberUnsubscribedRequest
from django.views.decorators.csrf import csrf_exempt
viber = Api(BotConfiguration(
name = ‘UniversityChatBot’,
avatar = ‘https://example.com/avatar.jpg’,
auth_token = ‘universitytoken’
))
def hook(request):
logger.debug(“received request. post data: {0}”.format(request.get_data()))
viber_request = viber.parse_request(request.get_data())
if isinstance(viber_request, ViberConversationStartedRequest):
viber.send_messages(viber_request.get_user().get_id(), [
TextMessage(text = “Welcome!”)
])
elif isinstance(viber_request, ViberSubscribedRequest):
viber.send_messages(viber_request.get_user.id, [
TextMessage(text = “Thank you!”)
])
return Response(status = 200)
This type of communication is used for sending information about the grade students received after successfully passing an exam. The teachers add the grades that the students receive at the exam and the e-service simultaneously sends a notification to the students to their instant messaging accounts through which they previously establish communication with the University bot. In that way, and at the same time, they voluntarily applied for the service. It is possible to establish this type of communication for any needs so that personalized communication 1-1 with each of the university students can be achieved at any time. In addition to information on the grades obtained, it is possible to establish communication for all other types of information and needs, both with students and employees.
In the uncertain forthcoming days, institutions must be prepared for new technological challenges that may appear. It is of the utmost importance for an institution to investigate what can be done about the creation of high-quality relationships with interested parties in order to not only maintain but also enhance the relationship with them. In such circumstances, proper ICT application can be of inestimable value for the leaders of higher educational institutions, deans, decision-makers, administrators, and others who are to make important strategic decisions.
In addition, there is another very important fact in the future that should not be ignored—as the years go by, new generations of students come with increasing knowledge, higher previous formal education, and, most importantly, the expectation of ICT presence in their “student life.” Prospective students will need to be provided with an easier way of learning (including various types of distance learning systems), but also the opportunity to quickly and easily complete all their obligations outside the classroom. They should be provided with all relevant information at their fingertips. From a technological point of view, only the adequate application of modern technologies can provide a basis for meeting these conditions.
Students’ expectations regarding the presence of various forms of technology within student activities are today at a much higher level than they were until recently [30]. The availability and proper use of digital technologies in the portfolio of a higher educational institution were especially evident during the coronavirus pandemic, which imposed a completely new way of interaction and communication between students and higher educational institutions [31].
Adoption of the correct use of digital technologies could lead not only to greater student satisfaction but also to the improvement of the technological reputation of the institution. Today, digital technology has become an essential part of students’ daily lives and plays a key role in their studying and extracurricular activities. We are living in a new digital reality [32] and educational institutions will have to adapt to it quickly. The proper use of digital technologies could play an important role in the sustainable development of educational institutions in the future [31]. Future generations of higher education students will have more and more prominent previous experience with the significant use of digital technologies in their primary and secondary education [33].
The author declares no conflict of interest.
Our business values are based on those any scientist applies to their research. The values of our business are based on the same ones that all good scientists apply to their research. We have created a culture of respect and collaboration within a relaxed, friendly, and progressive atmosphere, while maintaining academic rigour.
\n\nPlease check out our job board for open positions.
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\\n\\nOpenness - We communicate honestly and transparently. We are open to constructive criticism and committed to learning from it.
\\n\\nDisruptiveness - We are eager for discovery, for new ideas and for progression. We approach our work with creativity and determination, with a clear vision that drives us forward. We look beyond today and strive for a better tomorrow.
\\n\\nIntechOpen is a dynamic, vibrant company, where exceptional people are achieving great things. We offer a creative, dedicated, committed, and passionate environment but never lose sight of the fact that science and discovery is exciting and rewarding. We constantly strive to ensure that members of our community can work, travel, meet world-renowned researchers and grow their own career and develop their own experiences.
\\n\\nIf this sounds like a place that you would like to work, whether you are at the beginning of your career or are an experienced professional, we invite you to drop us a line and tell us why you could be the right person for IntechOpen.
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Integrity - We are consistent and dependable, always striving for precision and accuracy in the true spirit of science.
\n\nOpenness - We communicate honestly and transparently. We are open to constructive criticism and committed to learning from it.
\n\nDisruptiveness - We are eager for discovery, for new ideas and for progression. We approach our work with creativity and determination, with a clear vision that drives us forward. We look beyond today and strive for a better tomorrow.
\n\nIntechOpen is a dynamic, vibrant company, where exceptional people are achieving great things. We offer a creative, dedicated, committed, and passionate environment but never lose sight of the fact that science and discovery is exciting and rewarding. We constantly strive to ensure that members of our community can work, travel, meet world-renowned researchers and grow their own career and develop their own experiences.
\n\nIf this sounds like a place that you would like to work, whether you are at the beginning of your career or are an experienced professional, we invite you to drop us a line and tell us why you could be the right person for IntechOpen.
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His studies in robotics lead him not only to a PhD degree but also inspired him to co-found and build the International Journal of Advanced Robotic Systems - world's first Open Access journal in the field of robotics.",institutionString:null,institution:{name:"TU Wien",country:{name:"Austria"}}},{id:"441",title:"Ph.D.",name:"Jaekyu",middleName:null,surname:"Park",slug:"jaekyu-park",fullName:"Jaekyu Park",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/441/images/1881_n.jpg",biography:null,institutionString:null,institution:{name:"LG Corporation (South Korea)",country:{name:"Korea, South"}}},{id:"465",title:"Dr.",name:"Christian",middleName:null,surname:"Martens",slug:"christian-martens",fullName:"Christian Martens",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Rheinmetall (Germany)",country:{name:"Germany"}}},{id:"479",title:"Dr.",name:"Valentina",middleName:null,surname:"Colla",slug:"valentina-colla",fullName:"Valentina Colla",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/479/images/358_n.jpg",biography:null,institutionString:null,institution:{name:"Sant'Anna School of Advanced Studies",country:{name:"Italy"}}},{id:"494",title:"PhD",name:"Loris",middleName:null,surname:"Nanni",slug:"loris-nanni",fullName:"Loris Nanni",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/494/images/system/494.jpg",biography:"Loris Nanni received his Master Degree cum laude on June-2002 from the University of Bologna, and the April 26th 2006 he received his Ph.D. in Computer Engineering at DEIS, University of Bologna. On September, 29th 2006 he has won a post PhD fellowship from the university of Bologna (from October 2006 to October 2008), at the competitive examination he was ranked first in the industrial engineering area. He extensively served as referee for several international journals. He is author/coauthor of more than 100 research papers. He has been involved in some projects supported by MURST and European Community. 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This awareness regarding pest problems and environment has led to the search for powerful and eco-friendly pesticides that degrade after some time, avoiding pest persistence resistance, which is also pest-specific, non-phytotoxic, nontoxic to mammals, and relatively less expensive in order to obtain a sustainable crop production Biodegradable biomimetic pesticides can be a potential green alternative to the pest industry.",book:{id:"11318",title:"Pesticides",coverURL:"https://cdn.intechopen.com/books/images_new/11318.jpg"},signatures:"Ahissan Innocent Adou, Garrick Bibian, Odile Bordelais, Léa Farouil, Muriel Sylvestre, Sarra Gaspard, Marie-Noëlle Sylvestre and Gerardo Cebrián-Torrejón"},{id:"82580",title:"Predicting Trends, Seasonal Effects, and Future Yields in Cow’s Milk through Time Series Analysis",slug:"predicting-trends-seasonal-effects-and-future-yields-in-cow-s-milk-through-time-series-analysis",totalDownloads:1,totalDimensionsCites:null,doi:"10.5772/intechopen.105704",abstract:"A dairy is a place that is used for handling milk and milk products. Dairy products are basically based on milk. Milk is used to prepare dairy products, such as butter, cheese, and milk powder. There is always a great demand for milk and milk products among people. This study attempted to investigate the trends in the actual yield of cow’s milk production at Andassa dairy farm. We used secondary data for the study of the daily milk production of cows at Andassa dairy farm. The specific objectives of the study were—to identify whether the milk production is time-dependent or not; to predict in which season the milk production is high or low; to examine the daily trend analysis of milk production; to fit the appropriate model; and to forecast the milk production for the future. The study was conducted based on quantitative variables. So, the dependent variable is the average daily milk, and the independent variable is the time measure at which milk production is measured each day. The study used both descriptive and inferential statistics to analyze the data that were collected from the dairy farms in the sector. This study covered a total of 179 days of milk production. The results reveal that the milk yield of cows is declining, and that milk output is time-dependent, according to the time series plot, and that the model is ARIMA.",book:{id:"10887",title:"New Advances in the Dairy Industry",coverURL:"https://cdn.intechopen.com/books/images_new/10887.jpg"},signatures:"Birhan Ambachew Taye, Alemayehu Amsalu Alen, Ashenafi Kalayu Nega and Bantie Getnet Yirsaw"},{id:"81881",title:"Cassava Production Enterprise in the Tropics",slug:"cassava-production-enterprise-in-the-tropics",totalDownloads:3,totalDimensionsCites:null,doi:"10.5772/intechopen.104677",abstract:"Cassava, a tropical root crop, provides the staple food for millions of people around the world. It is one of the tuber crops that could be cultivated on a small scale in an environment with erratic rainfall, and without necessarily needing heavy equipment and machineries. Cassava could be successfully cultivated by resource-poor farm family. Farmers’ productivity could be as much as 70 tonnes per hectares under favourable conditions. However, smallholder farmers do among other things improve productivity through proven cultural practices and a mix of organic and inorganic measures. Irrigation is very necessary for achieving bumper harvest in areas with shortage of rainfall and insufficient soil moisture content. The concept of sustainability in the practice of agriculture has been on the front burner world over in recent time. Therefore, the cultivation of cassava with the aim of increased productivity without jeopardising the factors of production meant for future time is encouraged. Practices that combine traditional knowledge with modern technologies that are adapted to the needs of small-scale farmers are on the increase around the world. Depending on the purpose, cassava could be harvested anytime from eight month. Cassava leaves could serve as vegetable and the stems use as fire wood.",book:{id:"11311",title:"Tropical Plant Species",coverURL:"https://cdn.intechopen.com/books/images_new/11311.jpg"},signatures:"Raufu Olusola Sanusi, Deola-Tayo Lordbanjou, Azeez Olalekan Ibrahim, Mohammad Babakatcha Abubakar and Oluwole Olalekan Oke"},{id:"83138",title:"Pesticides: Chemistry, Manufacturing, Regulation, Usage and Impacts on Population in Kenya",slug:"pesticides-chemistry-manufacturing-regulation-usage-and-impacts-on-population-in-kenya",totalDownloads:0,totalDimensionsCites:null,doi:"10.5772/intechopen.105826",abstract:"Pesticide use in Kenya plays a critical role in socio-economic development because its economy depends heavily on agriculture, which contributes to 30% of the GDP and accounts for 60% of export earnings. For agriculture and public health vector control, the country relies on pesticides, most of which (95%) are formulated products imported from China, India and Germany as the top exporters. In this chapter, we present the chemistry, manufacturing, importation and regulatory processes regarding pesticides in Kenya as well as their usage and impacts. All the various categories, organochlorine, organophosphate, carbamate, pyrethroid, neonicotinod insectides, as well as fungicides, herbicides and biopesticides, which are used in the country, are considered. A total of 1,447 and 157, which include formulations and active ingredients, respectively, for use in agriculture and public health sectors, with sufficient information on their usages and toxicities, are listed on the Pest Control Products Board (PCPB) database that is available to the public. A significant number of studies have been conducted in major agricultural regions, which have characterized pesticides, their toxicities, the types of crops and pests, the usage and human and environmental health risk indices, since the 2000, but the reports have not made any impacts on pesticide regulation, as some of the very toxic active ingredients, belonging to the WHO Class I and II, are still reported by farmers. However, a recent call from NGO’s made an impact in government and parliament, and a bill was introduced in 2020 with the aim of banning some of the toxic ones that have already been withdrawn from the EU market.",book:{id:"11318",title:"Pesticides",coverURL:"https://cdn.intechopen.com/books/images_new/11318.jpg"},signatures:"Joseph O. Lalah, Peter O. Otieno, Zedekiah Odira and Joanne A. Ogunah"},{id:"82842",title:"Genomic Selection: A Faster Strategy for Plant Breeding",slug:"genomic-selection-a-faster-strategy-for-plant-breeding",totalDownloads:1,totalDimensionsCites:null,doi:"10.5772/intechopen.105398",abstract:"Many agronomic traits, such as grain yield, are controlled by polygenes with minor effects and epistatic interaction. Genomic selection (GS) uses genome-wide markers to predict a genomic estimate of breeding value (GEBV) that is used to select favorable individuals. GS involves three essential steps: prediction model training, prediction of breeding value, and selection of favorable individual based on the predicted GEBV. Prediction accuracies were evaluated using either correlation between GEBV (predicted) and empirically estimated (observed) value or cross-validation technique. Factors such as marker diversity and density, size and composition of training population, number of QTL, and heritability affect GS accuracies. GS has got potential applications in hybrid breeding, germplasm enhancement, and yield-related breeding programs. Therefore, GS is promising strategy for rapid improvement of genetic gain per unit time for quantitative traits with low heritability in breeding programs.",book:{id:"11621",title:"Plant Breeding - New Perspectives",coverURL:"https://cdn.intechopen.com/books/images_new/11621.jpg"},signatures:"Gizachew Haile Gidamo"},{id:"83145",title:"Effect of Irrigation Depths and Salinity Levels on the Growth and Production of Forage Palm Orelha de Elefante Mexicana",slug:"effect-of-irrigation-depths-and-salinity-levels-on-the-growth-and-production-of-forage-palm-orelha-d",totalDownloads:1,totalDimensionsCites:null,doi:"10.5772/intechopen.104985",abstract:"Although the adaptation of forage palm to the Brazilian semi-arid, it may be influenced by soil and climatic conditions of this region, irregular rainy periods, high annual evapotranspiration and soils with a low water retention capacity. These factors may reduce crop production during dry seasons, including forage. The present research aimed at analyzing the effect of irrigation with different water depths and levels of salinity on Orelha de Elefante Mexicana cultivar. The study was carried out in pots in the Federal University of Campina Grande, from September 2017 to December 2018. Experimental design was randomized blocks in a factorial scheme 4 x 4, with 4 replications. Four irrigation water depths were applied (25, 50, 75, and 100%), as a function of water retention capacity of soil and four levels of electrical conductivity: 0.60; 3.00; 5.40 and 7.80 dS m−1. Morphometric and production variables were evaluated. Plant growth was not affected by irrigation water depth and levels of salinity, except the thickness of secondary cladode. Primary cladodes showed the greatest average values (4.03 cladodes) for 376.00 mm depth. The other variables evaluated did not present significant effects under treatments. Saline water did not affect the total production of the cultivar.",book:{id:"11623",title:"Irrigation and Drainage - Recent Advances",coverURL:"https://cdn.intechopen.com/books/images_new/11623.jpg"},signatures:"Mariana de Oliveira Pereira, Jailton Garcia Ramos, Carlos Alberto Vieira de Azevedo, André Alisson Rodrigues da Silva, Geovani Soares de Lima, Luciano Marcelo Fallé Saboya, Patrícia da Silva Costa and Gustavo Bastos Lyra"}],onlineFirstChaptersTotal:616},preDownload:{success:null,errors:{}},subscriptionForm:{success:null,errors:{}},aboutIntechopen:{},privacyPolicy:{},peerReviewing:{},howOpenAccessPublishingWithIntechopenWorks:{},sponsorshipBooks:{sponsorshipBooks:[],offset:8,limit:8,total:0},allSeries:{pteSeriesList:[{id:"14",title:"Artificial Intelligence",numberOfPublishedBooks:11,numberOfPublishedChapters:91,numberOfOpenTopics:6,numberOfUpcomingTopics:0,issn:"2633-1403",doi:"10.5772/intechopen.79920",isOpenForSubmission:!0},{id:"7",title:"Biomedical Engineering",numberOfPublishedBooks:12,numberOfPublishedChapters:108,numberOfOpenTopics:3,numberOfUpcomingTopics:0,issn:"2631-5343",doi:"10.5772/intechopen.71985",isOpenForSubmission:!0}],lsSeriesList:[{id:"11",title:"Biochemistry",numberOfPublishedBooks:33,numberOfPublishedChapters:333,numberOfOpenTopics:4,numberOfUpcomingTopics:0,issn:"2632-0983",doi:"10.5772/intechopen.72877",isOpenForSubmission:!0},{id:"25",title:"Environmental Sciences",numberOfPublishedBooks:1,numberOfPublishedChapters:19,numberOfOpenTopics:4,numberOfUpcomingTopics:0,issn:"2754-6713",doi:"10.5772/intechopen.100362",isOpenForSubmission:!0},{id:"10",title:"Physiology",numberOfPublishedBooks:14,numberOfPublishedChapters:145,numberOfOpenTopics:4,numberOfUpcomingTopics:0,issn:"2631-8261",doi:"10.5772/intechopen.72796",isOpenForSubmission:!0}],hsSeriesList:[{id:"3",title:"Dentistry",numberOfPublishedBooks:11,numberOfPublishedChapters:144,numberOfOpenTopics:2,numberOfUpcomingTopics:0,issn:"2631-6218",doi:"10.5772/intechopen.71199",isOpenForSubmission:!0},{id:"6",title:"Infectious Diseases",numberOfPublishedBooks:13,numberOfPublishedChapters:126,numberOfOpenTopics:4,numberOfUpcomingTopics:0,issn:"2631-6188",doi:"10.5772/intechopen.71852",isOpenForSubmission:!0},{id:"13",title:"Veterinary Medicine and Science",numberOfPublishedBooks:11,numberOfPublishedChapters:113,numberOfOpenTopics:3,numberOfUpcomingTopics:0,issn:"2632-0517",doi:"10.5772/intechopen.73681",isOpenForSubmission:!0}],sshSeriesList:[{id:"22",title:"Business, Management and Economics",numberOfPublishedBooks:1,numberOfPublishedChapters:23,numberOfOpenTopics:3,numberOfUpcomingTopics:0,issn:"2753-894X",doi:"10.5772/intechopen.100359",isOpenForSubmission:!0},{id:"23",title:"Education and Human Development",numberOfPublishedBooks:0,numberOfPublishedChapters:13,numberOfOpenTopics:1,numberOfUpcomingTopics:1,issn:null,doi:"10.5772/intechopen.100360",isOpenForSubmission:!0},{id:"24",title:"Sustainable Development",numberOfPublishedBooks:1,numberOfPublishedChapters:19,numberOfOpenTopics:5,numberOfUpcomingTopics:0,issn:"2753-6580",doi:"10.5772/intechopen.100361",isOpenForSubmission:!0}],testimonialsList:[{id:"6",text:"It is great to work with the IntechOpen to produce a worthwhile collection of research that also becomes a great educational resource and guide for future research endeavors.",author:{id:"259298",name:"Edward",surname:"Narayan",institutionString:null,profilePictureURL:"https://mts.intechopen.com/storage/users/259298/images/system/259298.jpeg",slug:"edward-narayan",institution:{id:"3",name:"University of Queensland",country:{id:null,name:"Australia"}}}},{id:"13",text:"The collaboration with and support of the technical staff of IntechOpen is fantastic. 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He is the president of the Travel Medicine Committee of the Pan-American Infectious Diseases Association (API), as well as the president of the Colombian Association of Infectious Diseases (ACIN). He is a member of the Committee on Tropical Medicine, Zoonoses, and Travel Medicine of ACIN. He is a vice-president of the Latin American Society for Travel Medicine (SLAMVI) and a Member of the Council of the International Society for Infectious Diseases (ISID). Since 2014, he has been recognized as a Senior Researcher, at the Ministry of Science of Colombia. He is a professor at the Faculty of Medicine of the Fundacion Universitaria Autonoma de las Americas, in Pereira, Risaralda, Colombia. He is an External Professor, Master in Research on Tropical Medicine and International Health, Universitat de Barcelona, Spain. He is also a professor at the Master in Clinical Epidemiology and Biostatistics, Universidad Científica del Sur, Lima, Peru. In 2021 he has been awarded the “Raul Isturiz Award” Medal of the API. Also, in 2021, he was awarded with the “Jose Felix Patiño” Asclepius Staff Medal of the Colombian Medical College, due to his scientific contributions to COVID-19 during the pandemic. He is currently the Editor in Chief of the journal Travel Medicine and Infectious Diseases. His Scopus H index is 47 (Google Scholar H index, 68).",institutionString:"Institución Universitaria Visión de las Américas, Colombia",institution:null},editorTwo:null,editorThree:null},subseries:{paginationCount:5,paginationItems:[{id:"3",title:"Bacterial Infectious Diseases",coverUrl:"https://cdn.intechopen.com/series_topics/covers/3.jpg",editor:{id:"205604",title:"Dr.",name:"Tomas",middleName:null,surname:"Jarzembowski",slug:"tomas-jarzembowski",fullName:"Tomas Jarzembowski",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRKriQAG/Profile_Picture_2022-06-16T11:01:31.jpg",biography:"Tomasz Jarzembowski was born in 1968 in Gdansk, Poland. He obtained his Ph.D. degree in 2000 from the Medical University of Gdańsk (UG). After specialization in clinical microbiology in 2003, he started studying biofilm formation and antibiotic resistance at the single-cell level. In 2015, he obtained his D.Sc. degree. His later study in cooperation with experts in nephrology and immunology resulted in the designation of the new diagnostic method of UTI, patented in 2017. He is currently working at the Department of Microbiology, Medical University of Gdańsk (GUMed), Poland. Since many years, he is a member of steering committee of Gdańsk branch of Polish Society of Microbiologists, a member of ESCMID. He is also a reviewer and a member of editorial boards of a number of international journals.",institutionString:"Medical University of Gdańsk, Poland",institution:null},editorTwo:{id:"484980",title:"Dr.",name:"Katarzyna",middleName:null,surname:"Garbacz",slug:"katarzyna-garbacz",fullName:"Katarzyna Garbacz",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0033Y00003St8TAQAZ/Profile_Picture_2022-07-07T09:45:16.jpg",biography:"Katarzyna Maria Garbacz, MD, is an Associate Professor at the Medical University of Gdańsk, Poland and she is head of the Department of Oral Microbiology of the Medical University of Gdańsk. She has published more than 50 scientific publications in peer-reviewed journals. She has been a project leader funded by the National Science Centre of Poland. Prof. Garbacz is a microbiologist working on applied and fundamental questions in microbial epidemiology and pathogenesis. Her research interest is in antibiotic resistance, host-pathogen interaction, and therapeutics development for staphylococcal pathogens, mainly Staphylococcus aureus, which causes hospital-acquired infections. Currently, her research is mostly focused on the study of oral pathogens, particularly Staphylococcus spp.",institutionString:"Medical University of Gdańsk, Poland",institution:null},editorThree:null,editorialBoard:[{id:"190041",title:"Dr.",name:"Jose",middleName:null,surname:"Gutierrez Fernandez",slug:"jose-gutierrez-fernandez",fullName:"Jose Gutierrez Fernandez",profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",institutionString:null,institution:{name:"University of Granada",institutionURL:null,country:{name:"Spain"}}},{id:"156556",title:"Prof.",name:"Maria Teresa",middleName:null,surname:"Mascellino",slug:"maria-teresa-mascellino",fullName:"Maria Teresa Mascellino",profilePictureURL:"https://mts.intechopen.com/storage/users/156556/images/system/156556.jpg",institutionString:"Sapienza University",institution:{name:"Sapienza University of Rome",institutionURL:null,country:{name:"Italy"}}},{id:"164933",title:"Prof.",name:"Mónica Alexandra",middleName:null,surname:"Sousa Oleastro",slug:"monica-alexandra-sousa-oleastro",fullName:"Mónica Alexandra Sousa Oleastro",profilePictureURL:"https://mts.intechopen.com/storage/users/164933/images/system/164933.jpeg",institutionString:"National Institute of Health Dr Ricardo Jorge",institution:{name:"National Institute of Health Dr. Ricardo Jorge",institutionURL:null,country:{name:"Portugal"}}}]},{id:"4",title:"Fungal Infectious Diseases",coverUrl:"https://cdn.intechopen.com/series_topics/covers/4.jpg",editor:{id:"174134",title:"Dr.",name:"Yuping",middleName:null,surname:"Ran",slug:"yuping-ran",fullName:"Yuping Ran",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bS9d6QAC/Profile_Picture_1630330675373",biography:"Dr. Yuping Ran, Professor, Department of Dermatology, West China Hospital, Sichuan University, Chengdu, China. Completed the Course Medical Mycology, the Centraalbureau voor Schimmelcultures (CBS), Fungal Biodiversity Centre, Netherlands (2006). International Union of Microbiological Societies (IUMS) Fellow, and International Emerging Infectious Diseases (IEID) Fellow, Centers for Diseases Control and Prevention (CDC), Atlanta, USA. Diploma of Dermatological Scientist, Japanese Society for Investigative Dermatology. Ph.D. of Juntendo University, Japan. Bachelor’s and Master’s degree, Medicine, West China University of Medical Sciences. Chair of Sichuan Medical Association Dermatology Committee. General Secretary of The 19th Annual Meeting of Chinese Society of Dermatology and the Asia Pacific Society for Medical Mycology (2013). In charge of the Annual Medical Mycology Course over 20-years authorized by National Continue Medical Education Committee of China. Member of the board of directors of the Asia-Pacific Society for Medical Mycology (APSMM). Associate editor of Mycopathologia. Vice-chief of the editorial board of Chinses Journal of Mycology, China. Board Member and Chair of Mycology Group of Chinese Society of Dermatology.",institutionString:null,institution:{name:"Sichuan University",institutionURL:null,country:{name:"China"}}},editorTwo:null,editorThree:null,editorialBoard:[{id:"302145",title:"Dr.",name:"Felix",middleName:null,surname:"Bongomin",slug:"felix-bongomin",fullName:"Felix Bongomin",profilePictureURL:"https://mts.intechopen.com/storage/users/302145/images/system/302145.jpg",institutionString:null,institution:{name:"Gulu University",institutionURL:null,country:{name:"Uganda"}}},{id:"45803",title:"Ph.D.",name:"Payam",middleName:null,surname:"Behzadi",slug:"payam-behzadi",fullName:"Payam Behzadi",profilePictureURL:"https://mts.intechopen.com/storage/users/45803/images/system/45803.jpg",institutionString:"Islamic Azad University, Tehran",institution:{name:"Islamic Azad University, Tehran",institutionURL:null,country:{name:"Iran"}}}]},{id:"5",title:"Parasitic Infectious Diseases",coverUrl:"https://cdn.intechopen.com/series_topics/covers/5.jpg",editor:{id:"67907",title:"Dr.",name:"Amidou",middleName:null,surname:"Samie",slug:"amidou-samie",fullName:"Amidou Samie",profilePictureURL:"https://mts.intechopen.com/storage/users/67907/images/system/67907.jpg",biography:"Dr. Amidou Samie is an Associate Professor of Microbiology at the University of Venda, in South Africa, where he graduated for his PhD in May 2008. He joined the Department of Microbiology the same year and has been giving lectures on topics covering parasitology, immunology, molecular biology and industrial microbiology. He is currently a rated researcher by the National Research Foundation of South Africa at category C2. He has published widely in the field of infectious diseases and has overseen several MSc’s and PhDs. His research activities mostly cover topics on infectious diseases from epidemiology to control. His particular interest lies in the study of intestinal protozoan parasites and opportunistic infections among HIV patients as well as the potential impact of childhood diarrhoea on growth and child development. He also conducts research on water-borne diseases and water quality and is involved in the evaluation of point-of-use water treatment technologies using silver and copper nanoparticles in collaboration with the University of Virginia, USA. He also studies the use of medicinal plants for the control of infectious diseases as well as antimicrobial drug resistance.",institutionString:null,institution:{name:"University of Venda",institutionURL:null,country:{name:"South Africa"}}},editorTwo:null,editorThree:null,editorialBoard:[{id:"188881",title:"Dr.",name:"Fernando José",middleName:null,surname:"Andrade-Narváez",slug:"fernando-jose-andrade-narvaez",fullName:"Fernando José Andrade-Narváez",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRIV7QAO/Profile_Picture_1628834308121",institutionString:null,institution:{name:"Autonomous University of Yucatán",institutionURL:null,country:{name:"Mexico"}}},{id:"269120",title:"Dr.",name:"Rajeev",middleName:"K.",surname:"Tyagi",slug:"rajeev-tyagi",fullName:"Rajeev Tyagi",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRaBqQAK/Profile_Picture_1644331884726",institutionString:"CSIR - Institute of Microbial Technology, India",institution:null},{id:"336849",title:"Prof.",name:"Ricardo",middleName:null,surname:"Izurieta",slug:"ricardo-izurieta",fullName:"Ricardo Izurieta",profilePictureURL:"https://mts.intechopen.com/storage/users/293169/images/system/293169.png",institutionString:null,institution:{name:"University of South Florida",institutionURL:null,country:{name:"United States of America"}}}]},{id:"6",title:"Viral Infectious Diseases",coverUrl:"https://cdn.intechopen.com/series_topics/covers/6.jpg",editor:{id:"158026",title:"Prof.",name:"Shailendra K.",middleName:null,surname:"Saxena",slug:"shailendra-k.-saxena",fullName:"Shailendra K. 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He was elected a Yangtze River Scholars Distinguished Professor in 2013, a member of the International Statistical Institute (ISI) in 2016, a member of the board of the International Chinese Statistical Association (ICSA) in 2018, and a fellow of the Institute of Mathematical Statistics (IMS) in 2021. He received the ICSA Outstanding Service Award in 2018 and the National Science Foundation for Distinguished Young Scholars of China in 2012. He serves as a member of the editorial board of Statistics and Its Interface and Journal of Systems Science and Complexity. He is also a field editor for Communications in Mathematics and Statistics. His research interests include biostatistics, empirical likelihood, missing data analysis, variable selection, high-dimensional data analysis, Bayesian statistics, and data science. He has published more than 190 research papers and authored five books.",institutionString:"Yunnan University",institution:{name:"Yunnan University",country:{name:"China"}}},{id:"1177",title:"Prof.",name:"António",middleName:"J. R.",surname:"José Ribeiro Neves",slug:"antonio-jose-ribeiro-neves",fullName:"António José Ribeiro Neves",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/1177/images/system/1177.jpg",biography:"Prof. António J. R. Neves received a Ph.D. in Electrical Engineering from the University of Aveiro, Portugal, in 2007. Since 2002, he has been a researcher at the Institute of Electronics and Informatics Engineering of Aveiro. Since 2007, he has been an assistant professor in the Department of Electronics, Telecommunications, and Informatics, University of Aveiro. He is the director of the undergraduate course on Electrical and Computers Engineering and the vice-director of the master’s degree in Electronics and Telecommunications Engineering. He is an IEEE Senior Member and a member of several other research organizations worldwide. His main research interests are computer vision, intelligent systems, robotics, and image and video processing. He has participated in or coordinated several research projects and received more than thirty-five awards. He has 161 publications to his credit, including books, book chapters, journal articles, and conference papers. He has vast experience as a reviewer of several journals and conferences. As a professor, Dr. Neves has supervised several Ph.D. and master’s students and was involved in more than twenty-five different courses.",institutionString:null,institution:{name:"University of Aveiro",country:{name:"Portugal"}}},{id:"11317",title:"Dr.",name:"Francisco",middleName:null,surname:"Javier Gallegos-Funes",slug:"francisco-javier-gallegos-funes",fullName:"Francisco Javier Gallegos-Funes",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/11317/images/system/11317.png",biography:"Francisco J. Gallegos-Funes received his Ph.D. in Communications and Electronics from the Instituto Politécnico Nacional de México (National Polytechnic Institute of Mexico) in 2003. He is currently an associate professor in the Escuela Superior de Ingeniería Mecánica y Eléctrica (Mechanical and Electrical Engineering Higher School) at the same institute. His areas of scientific interest are signal and image processing, filtering, steganography, segmentation, pattern recognition, biomedical signal processing, sensors, and real-time applications.",institutionString:"Instituto Politécnico Nacional",institution:{name:"Instituto Politécnico Nacional",country:{name:"Mexico"}}},{id:"428449",title:"Dr.",name:"Ronaldo",middleName:null,surname:"Ferreira",slug:"ronaldo-ferreira",fullName:"Ronaldo Ferreira",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/428449/images/21449_n.png",biography:null,institutionString:null,institution:{name:"University of Aveiro",country:{name:"Portugal"}}},{id:"165328",title:"Dr.",name:"Vahid",middleName:null,surname:"Asadpour",slug:"vahid-asadpour",fullName:"Vahid Asadpour",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/165328/images/system/165328.jpg",biography:"Vahid Asadpour, MS, Ph.D., is currently with the Department of Research and Evaluation, Kaiser Permanente Southern California. He has both an MS and Ph.D. in Biomedical Engineering. He was previously a research scientist at the University of California Los Angeles (UCLA) and visiting professor and researcher at the University of North Dakota. He is currently working in artificial intelligence and its applications in medical signal processing. In addition, he is using digital signal processing in medical imaging and speech processing. Dr. Asadpour has developed brain-computer interfacing algorithms and has published books, book chapters, and several journal and conference papers in this field and other areas of intelligent signal processing. He has also designed medical devices, including a laser Doppler monitoring system.",institutionString:"Kaiser Permanente Southern California",institution:null},{id:"169608",title:"Prof.",name:"Marian",middleName:null,surname:"Găiceanu",slug:"marian-gaiceanu",fullName:"Marian Găiceanu",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/169608/images/system/169608.png",biography:"Prof. Dr. Marian Gaiceanu graduated from the Naval and Electrical Engineering Faculty, Dunarea de Jos University of Galati, Romania, in 1997. He received a Ph.D. (Magna Cum Laude) in Electrical Engineering in 2002. Since 2017, Dr. Gaiceanu has been a Ph.D. supervisor for students in Electrical Engineering. He has been employed at Dunarea de Jos University of Galati since 1996, where he is currently a professor. Dr. Gaiceanu is a member of the National Council for Attesting Titles, Diplomas and Certificates, an expert of the Executive Agency for Higher Education, Research Funding, and a member of the Senate of the Dunarea de Jos University of Galati. He has been the head of the Integrated Energy Conversion Systems and Advanced Control of Complex Processes Research Center, Romania, since 2016. He has conducted several projects in power converter systems for electrical drives, power quality, PEM and SOFC fuel cell power converters for utilities, electric vehicles, and marine applications with the Department of Regulation and Control, SIEI S.pA. (2002–2004) and the Polytechnic University of Turin, Italy (2002–2004, 2006–2007). He is a member of the Institute of Electrical and Electronics Engineers (IEEE) and cofounder-member of the IEEE Power Electronics Romanian Chapter. He is a guest editor at Energies and an academic book editor for IntechOpen. He is also a member of the editorial boards of the Journal of Electrical Engineering, Electronics, Control and Computer Science and Sustainability. Dr. Gaiceanu has been General Chairman of the IEEE International Symposium on Electrical and Electronics Engineering in the last six editions.",institutionString:'"Dunarea de Jos" University of Galati',institution:{name:'"Dunarea de Jos" University of Galati',country:{name:"Romania"}}},{id:"4519",title:"Prof.",name:"Jaydip",middleName:null,surname:"Sen",slug:"jaydip-sen",fullName:"Jaydip Sen",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/4519/images/system/4519.jpeg",biography:"Jaydip Sen is associated with Praxis Business School, Kolkata, India, as a professor in the Department of Data Science. His research areas include security and privacy issues in computing and communication, intrusion detection systems, machine learning, deep learning, and artificial intelligence in the financial domain. He has more than 200 publications in reputed international journals, refereed conference proceedings, and 20 book chapters in books published by internationally renowned publishing houses, such as Springer, CRC press, IGI Global, etc. Currently, he is serving on the editorial board of the prestigious journal Frontiers in Communications and Networks and in the technical program committees of a number of high-ranked international conferences organized by the IEEE, USA, and the ACM, USA. He has been listed among the top 2% of scientists in the world for the last three consecutive years, 2019 to 2021 as per studies conducted by the Stanford University, USA.",institutionString:"Praxis Business School",institution:null},{id:"320071",title:"Dr.",name:"Sidra",middleName:null,surname:"Mehtab",slug:"sidra-mehtab",fullName:"Sidra Mehtab",position:null,profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0033Y00002v6KHoQAM/Profile_Picture_1584512086360",biography:"Sidra Mehtab has completed her BS with honors in Physics from Calcutta University, India in 2018. She has done MS in Data Science and Analytics from Maulana Abul Kalam Azad University of Technology (MAKAUT), Kolkata, India in 2020. Her research areas include Econometrics, Time Series Analysis, Machine Learning, Deep Learning, Artificial Intelligence, and Computer and Network Security with a particular focus on Cyber Security Analytics. Ms. Mehtab has published seven papers in international conferences and one of her papers has been accepted for publication in a reputable international journal. She has won the best paper awards in two prestigious international conferences – BAICONF 2019, and ICADCML 2021, organized in the Indian Institute of Management, Bangalore, India in December 2019, and SOA University, Bhubaneswar, India in January 2021. Besides, Ms. Mehtab has also published two book chapters in two books. Seven of her book chapters will be published in a volume shortly in 2021 by Cambridge Scholars’ Press, UK. Currently, she is working as the joint editor of two edited volumes on Time Series Analysis and Forecasting to be published in the first half of 2021 by an international house. Currently, she is working as a Data Scientist with an MNC in Delhi, India.",institutionString:"NSHM College of Management and Technology",institution:{name:"Association for Computing Machinery",country:{name:"United States of America"}}},{id:"226240",title:"Dr.",name:"Andri Irfan",middleName:null,surname:"Rifai",slug:"andri-irfan-rifai",fullName:"Andri Irfan Rifai",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/226240/images/7412_n.jpg",biography:"Andri IRFAN is a Senior Lecturer of Civil Engineering and Planning. He completed the PhD at the Universitas Indonesia & Universidade do Minho with Sandwich Program Scholarship from the Directorate General of Higher Education and LPDP scholarship. He has been teaching for more than 19 years and much active to applied his knowledge in the project construction in Indonesia. His research interest ranges from pavement management system to advanced data mining techniques for transportation engineering. He has published more than 50 papers in journals and 2 books.",institutionString:null,institution:{name:"Universitas Internasional Batam",country:{name:"Indonesia"}}},{id:"314576",title:"Dr.",name:"Ibai",middleName:null,surname:"Laña",slug:"ibai-lana",fullName:"Ibai Laña",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/314576/images/system/314576.jpg",biography:"Dr. Ibai Laña works at TECNALIA as a data analyst. He received his Ph.D. in Artificial Intelligence from the University of the Basque Country (UPV/EHU), Spain, in 2018. He is currently a senior researcher at TECNALIA. His research interests fall within the intersection of intelligent transportation systems, machine learning, traffic data analysis, and data science. He has dealt with urban traffic forecasting problems, applying machine learning models and evolutionary algorithms. He has experience in origin-destination matrix estimation or point of interest and trajectory detection. Working with large volumes of data has given him a good command of big data processing tools and NoSQL databases. He has also been a visiting scholar at the Knowledge Engineering and Discovery Research Institute, Auckland University of Technology.",institutionString:"TECNALIA Research & Innovation",institution:{name:"Tecnalia",country:{name:"Spain"}}},{id:"314575",title:"Dr.",name:"Jesus",middleName:null,surname:"L. Lobo",slug:"jesus-l.-lobo",fullName:"Jesus L. Lobo",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/314575/images/system/314575.png",biography:"Dr. Jesús López is currently based in Bilbao (Spain) working at TECNALIA as Artificial Intelligence Research Scientist. In most cases, a project idea or a new research line needs to be investigated to see if it is good enough to take into production or to focus on it. That is exactly what he does, diving into Machine Learning algorithms and technologies to help TECNALIA to decide whether something is great in theory or will actually impact on the product or processes of its projects. So, he is expert at framing experiments, developing hypotheses, and proving whether they’re true or not, in order to investigate fundamental problems with a longer time horizon. He is also able to design and develop PoCs and system prototypes in simulation. He has participated in several national and internacional R&D projects.\n\nAs another relevant part of his everyday research work, he usually publishes his findings in reputed scientific refereed journals and international conferences, occasionally acting as reviewer and Programme Commitee member. Concretely, since 2018 he has published 9 JCR (8 Q1) journal papers, 9 conference papers (e.g. ECML PKDD 2021), and he has co-edited a book. He is also active in popular science writing data science stories for reputed blogs (KDNuggets, TowardsDataScience, Naukas). Besides, he has recently embarked on mentoring programmes as mentor, and has also worked as data science trainer.",institutionString:"TECNALIA Research & Innovation",institution:{name:"Tecnalia",country:{name:"Spain"}}},{id:"103779",title:"Prof.",name:"Yalcin",middleName:null,surname:"Isler",slug:"yalcin-isler",fullName:"Yalcin Isler",position:null,profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRyQ8QAK/Profile_Picture_1628834958734",biography:"Yalcin Isler (1971 - Burdur / Turkey) received the B.Sc. degree in the Department of Electrical and Electronics Engineering from Anadolu University, Eskisehir, Turkey, in 1993, the M.Sc. degree from the Department of Electronics and Communication Engineering, Suleyman Demirel University, Isparta, Turkey, in 1996, the Ph.D. degree from the Department of Electrical and Electronics Engineering, Dokuz Eylul University, Izmir, Turkey, in 2009, and the Competence of Associate Professorship from the Turkish Interuniversity Council in 2019.\n\nHe was Lecturer at Burdur Vocational School in Suleyman Demirel University (1993-2000, Burdur / Turkey), Software Engineer (2000-2002, Izmir / Turkey), Research Assistant in Bulent Ecevit University (2002-2003, Zonguldak / Turkey), Research Assistant in Dokuz Eylul University (2003-2010, Izmir / Turkey), Assistant Professor at the Department of Electrical and Electronics Engineering in Bulent Ecevit University (2010-2012, Zonguldak / Turkey), Assistant Professor at the Department of Biomedical Engineering in Izmir Katip Celebi University (2012-2019, Izmir / Turkey). He is an Associate Professor at the Department of Biomedical Engineering at Izmir Katip Celebi University, Izmir / Turkey, since 2019. In addition to academics, he has also founded Islerya Medical and Information Technologies Company, Izmir / Turkey, since 2017.\n\nHis main research interests cover biomedical signal processing, pattern recognition, medical device design, programming, and embedded systems. He has many scientific papers and participated in several projects in these study fields. He was an IEEE Student Member (2009-2011) and IEEE Member (2011-2014) and has been IEEE Senior Member since 2014.",institutionString:null,institution:{name:"Izmir Kâtip Çelebi University",country:{name:"Turkey"}}},{id:"339677",title:"Dr.",name:"Mrinmoy",middleName:null,surname:"Roy",slug:"mrinmoy-roy",fullName:"Mrinmoy Roy",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/339677/images/16768_n.jpg",biography:"An accomplished Sales & Marketing professional with 12 years of cross-functional experience in well-known organisations such as CIPLA, LUPIN, GLENMARK, ASTRAZENECA across different segment of Sales & Marketing, International Business, Institutional Business, Product Management, Strategic Marketing of HIV, Oncology, Derma, Respiratory, Anti-Diabetic, Nutraceutical & Stomatological Product Portfolio and Generic as well as Chronic Critical Care Portfolio. A First Class MBA in International Business & Strategic Marketing, B.Pharm, D.Pharm, Google Certified Digital Marketing Professional. Qualified PhD Candidate in Operations and Management with special focus on Artificial Intelligence and Machine Learning adoption, analysis and use in Healthcare, Hospital & Pharma Domain. Seasoned with diverse therapy area of Pharmaceutical Sales & Marketing ranging from generating revenue through generating prescriptions, launching new products, and making them big brands with continuous strategy execution at the Physician and Patients level. Moved from Sales to Marketing and Business Development for 3.5 years in South East Asian Market operating from Manila, Philippines. Came back to India and handled and developed Brands such as Gluconorm, Lupisulin, Supracal, Absolut Woman, Hemozink, Fabiflu (For COVID 19), and many more. In my previous assignment I used to develop and execute strategies on Sales & Marketing, Commercialization & Business Development for Institution and Corporate Hospital Business portfolio of Oncology Therapy Area for AstraZeneca Pharma India Ltd. Being a Research Scholar and Student of ‘Operations Research & Management: Artificial Intelligence’ I published several pioneer research papers and book chapters on the same in Internationally reputed journals and Books indexed in Scopus, Springer and Ei Compendex, Google Scholar etc. Currently, I am launching PGDM Pharmaceutical Management Program in IIHMR Bangalore and spearheading the course curriculum and structure of the same. I am interested in Collaboration for Healthcare Innovation, Pharma AI Innovation, Future trend in Marketing and Management with incubation on Healthcare, Healthcare IT startups, AI-ML Modelling and Healthcare Algorithm based training module development. I am also an affiliated member of the Institute of Management Consultant of India, looking forward to Healthcare, Healthcare IT and Innovation, Pharma and Hospital Management Consulting works.",institutionString:null,institution:{name:"Lovely Professional University",country:{name:"India"}}},{id:"1063",title:"Prof.",name:"Constantin",middleName:null,surname:"Volosencu",slug:"constantin-volosencu",fullName:"Constantin Volosencu",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/1063/images/system/1063.png",biography:"Prof. Dr. Constantin Voloşencu graduated as an engineer from\nPolitehnica University of Timișoara, Romania, where he also\nobtained a doctorate degree. He is currently a full professor in\nthe Department of Automation and Applied Informatics at the\nsame university. Dr. Voloşencu is the author of ten books, seven\nbook chapters, and more than 160 papers published in journals\nand conference proceedings. He has also edited twelve books and\nhas twenty-seven patents to his name. He is a manager of research grants, editor in\nchief and member of international journal editorial boards, a former plenary speaker, a member of scientific committees, and chair at international conferences. His\nresearch is in the fields of control systems, control of electric drives, fuzzy control\nsystems, neural network applications, fault detection and diagnosis, sensor network\napplications, monitoring of distributed parameter systems, and power ultrasound\napplications. He has developed automation equipment for machine tools, spooling\nmachines, high-power ultrasound processes, and more.",institutionString:'"Politechnica" University Timişoara',institution:null},{id:"221364",title:"Dr.",name:"Eneko",middleName:null,surname:"Osaba",slug:"eneko-osaba",fullName:"Eneko Osaba",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/221364/images/system/221364.jpg",biography:"Dr. Eneko Osaba works at TECNALIA as a senior researcher. He obtained his Ph.D. in Artificial Intelligence in 2015. He has participated in more than twenty-five local and European research projects, and in the publication of more than 130 papers. He has performed several stays at universities in the United Kingdom, Italy, and Malta. Dr. Osaba has served as a program committee member in more than forty international conferences and participated in organizing activities in more than ten international conferences. He is a member of the editorial board of the International Journal of Artificial Intelligence, Data in Brief, and Journal of Advanced Transportation. He is also a guest editor for the Journal of Computational Science, Neurocomputing, Swarm, and Evolutionary Computation and IEEE ITS Magazine.",institutionString:"TECNALIA Research & Innovation",institution:{name:"Tecnalia",country:{name:"Spain"}}},{id:"275829",title:"Dr.",name:"Esther",middleName:null,surname:"Villar-Rodriguez",slug:"esther-villar-rodriguez",fullName:"Esther Villar-Rodriguez",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/275829/images/system/275829.jpg",biography:"Dr. Esther Villar obtained a Ph.D. in Information and Communication Technologies from the University of Alcalá, Spain, in 2015. She obtained a degree in Computer Science from the University of Deusto, Spain, in 2010, and an MSc in Computer Languages and Systems from the National University of Distance Education, Spain, in 2012. Her areas of interest and knowledge include natural language processing (NLP), detection of impersonation in social networks, semantic web, and machine learning. Dr. Esther Villar made several contributions at conferences and publishing in various journals in those fields. Currently, she is working within the OPTIMA (Optimization Modeling & Analytics) business of TECNALIA’s ICT Division as a data scientist in projects related to the prediction and optimization of management and industrial processes (resource planning, energy efficiency, etc).",institutionString:"TECNALIA Research & Innovation",institution:{name:"Tecnalia",country:{name:"Spain"}}},{id:"49813",title:"Dr.",name:"Javier",middleName:null,surname:"Del Ser",slug:"javier-del-ser",fullName:"Javier Del Ser",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/49813/images/system/49813.png",biography:"Prof. Dr. Javier Del Ser received his first PhD in Telecommunication Engineering (Cum Laude) from the University of Navarra, Spain, in 2006, and a second PhD in Computational Intelligence (Summa Cum Laude) from the University of Alcala, Spain, in 2013. He is currently a principal researcher in data analytics and optimisation at TECNALIA (Spain), a visiting fellow at the Basque Center for Applied Mathematics (BCAM) and a part-time lecturer at the University of the Basque Country (UPV/EHU). His research interests gravitate on the use of descriptive, prescriptive and predictive algorithms for data mining and optimization in a diverse range of application fields such as Energy, Transport, Telecommunications, Health and Industry, among others. In these fields he has published more than 240 articles, co-supervised 8 Ph.D. theses, edited 6 books, coauthored 7 patents and participated/led more than 40 research projects. He is a Senior Member of the IEEE, and a recipient of the Biscay Talent prize for his academic career.",institutionString:"Tecnalia Research & Innovation",institution:{name:"Tecnalia",country:{name:"Spain"}}},{id:"278948",title:"Dr.",name:"Carlos Pedro",middleName:null,surname:"Gonçalves",slug:"carlos-pedro-goncalves",fullName:"Carlos Pedro Gonçalves",position:null,profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRcmyQAC/Profile_Picture_1564224512145",biography:'Carlos Pedro Gonçalves (PhD) is an Associate Professor at Lusophone University of Humanities and Technologies and a researcher on Complexity Sciences, Quantum Technologies, Artificial Intelligence, Strategic Studies, Studies in Intelligence and Security, FinTech and Financial Risk Modeling. He is also a progammer with programming experience in:\n\nA) Quantum Computing using Qiskit Python module and IBM Quantum Experience Platform, with software developed on the simulation of Quantum Artificial Neural Networks and Quantum Cybersecurity;\n\nB) Artificial Intelligence and Machine learning programming in Python;\n\nC) Artificial Intelligence, Multiagent Systems Modeling and System Dynamics Modeling in Netlogo, with models developed in the areas of Chaos Theory, Econophysics, Artificial Intelligence, Classical and Quantum Complex Systems Science, with the Econophysics models having been cited worldwide and incorporated in PhD programs by different Universities.\n\nReceived an Arctic Code Vault Contributor status by GitHub, due to having developed open source software preserved in the \\"Arctic Code Vault\\" for future generations (https://archiveprogram.github.com/arctic-vault/), with the Strategy Analyzer A.I. module for decision making support (based on his PhD thesis, used in his Classes on Decision Making and in Strategic Intelligence Consulting Activities) and QNeural Python Quantum Neural Network simulator also preserved in the \\"Arctic Code Vault\\", for access to these software modules see: https://github.com/cpgoncalves. He is also a peer reviewer with outsanding review status from Elsevier journals, including Physica A, Neurocomputing and Engineering Applications of Artificial Intelligence. Science CV available at: https://www.cienciavitae.pt//pt/8E1C-A8B3-78C5 and ORCID: https://orcid.org/0000-0002-0298-3974',institutionString:"University of Lisbon",institution:{name:"Universidade Lusófona",country:{name:"Portugal"}}},{id:"310576",title:"Prof.",name:"Erick Giovani",middleName:null,surname:"Sperandio Nascimento",slug:"erick-giovani-sperandio-nascimento",fullName:"Erick Giovani Sperandio Nascimento",position:null,profilePictureURL:"https://intech-files.s3.amazonaws.com/0033Y00002pDKxDQAW/ProfilePicture%202022-06-20%2019%3A57%3A24.788",biography:"Prof. Erick Sperandio is the Lead Researcher and professor of Artificial Intelligence (AI) at SENAI CIMATEC, Bahia, Brazil, also working with Computational Modeling (CM) and HPC. He holds a PhD in Environmental Engineering in the area of Atmospheric Computational Modeling, a Master in Informatics in the field of Computational Intelligence and Graduated in Computer Science from UFES. He currently coordinates, leads and participates in R&D projects in the areas of AI, computational modeling and supercomputing applied to different areas such as Oil and Gas, Health, Advanced Manufacturing, Renewable Energies and Atmospheric Sciences, advising undergraduate, master's and doctoral students. He is the Lead Researcher at SENAI CIMATEC's Reference Center on Artificial Intelligence. In addition, he is a Certified Instructor and University Ambassador of the NVIDIA Deep Learning Institute (DLI) in the areas of Deep Learning, Computer Vision, Natural Language Processing and Recommender Systems, and Principal Investigator of the NVIDIA/CIMATEC AI Joint Lab, the first in Latin America within the NVIDIA AI Technology Center (NVAITC) worldwide program. 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