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Dowsey, Trisha N. Peel and Peter F.M. Choong",authors:[{id:"80820",title:"Prof.",name:"Peter",middleName:null,surname:"Choong",fullName:"Peter Choong",slug:"peter-choong"},{id:"82173",title:"Dr.",name:"Michelle",middleName:"Maree",surname:"Dowsey",fullName:"Michelle Dowsey",slug:"michelle-dowsey"},{id:"96112",title:"Dr.",name:"Trisha",middleName:null,surname:"Peel",fullName:"Trisha Peel",slug:"trisha-peel"}]},{id:"26873",title:"Infections in Hip and Knee Arthroplasty: Challenges to and Chances for the Microbiological Laboratory",slug:"infections-in-hip-and-knee-arthroplasty-challenges-to-and-chances-for-the-microbiological-laboratory",signatures:"Peter Schäfer, Bernd Fink, Dieter Sandow and Lars Frommelt",authors:[{id:"65326",title:"Dr",name:"Peter",middleName:null,surname:"Schäfer",fullName:"Peter Schäfer",slug:"peter-schafer"},{id:"73692",title:"Prof.",name:"Bernd",middleName:null,surname:"Fink",fullName:"Bernd Fink",slug:"bernd-fink"},{id:"73693",title:"Prof.",name:"Dieter",middleName:null,surname:"Sandow",fullName:"Dieter Sandow",slug:"dieter-sandow"},{id:"73694",title:"Dr",name:"Lars",middleName:"E.",surname:"Frommelt",fullName:"Lars Frommelt",slug:"lars-frommelt"}]},{id:"26874",title:"Staphylococcus Infection Associated with Arthroplasty",slug:"staphylococcus-infection-associated-with-arthroplasty",signatures:"Weisheng Ye, Wei Shang and Yaqiong Yang",authors:[{id:"64538",title:"Prof.",name:"Weisheng",middleName:null,surname:"Ye",fullName:"Weisheng Ye",slug:"weisheng-ye"},{id:"149402",title:"Dr.",name:"Wei",middleName:null,surname:"Shang",fullName:"Wei Shang",slug:"wei-shang"},{id:"149403",title:"Dr.",name:"Yaqiong",middleName:null,surname:"Yang",fullName:"Yaqiong Yang",slug:"yaqiong-yang"}]},{id:"26875",title:"Arthroplasty in HIV/SCD Carriers",slug:"arthroplasty-in-hiv-scd-carriers",signatures:"J. Bahebeck, D. Handy Eone, B. Ngo Nonga and T. Kingue Njie",authors:[{id:"66353",title:"Prof.",name:"Jean",middleName:null,surname:"Bahebeck",fullName:"Jean Bahebeck",slug:"jean-bahebeck"},{id:"149344",title:"Dr.",name:"Ndjie Kingue",middleName:null,surname:"Thompson",fullName:"Ndjie Kingue Thompson",slug:"ndjie-kingue-thompson"},{id:"149345",title:"Dr.",name:"Eone Daniel",middleName:null,surname:"Handy",fullName:"Eone Daniel Handy",slug:"eone-daniel-handy"},{id:"149346",title:"Dr.",name:"Ngo Nonga",middleName:null,surname:"Bernadette",fullName:"Ngo Nonga Bernadette",slug:"ngo-nonga-bernadette"}]},{id:"26876",title:"Cervical Disc Arthroplasty",slug:"cervical-disc-arthroplasty",signatures:"Bruce V. Darden",authors:[{id:"74274",title:"Dr.",name:"Bruce V.",middleName:null,surname:"Darden",fullName:"Bruce V. Darden",slug:"bruce-v.-darden"}]},{id:"26877",title:"Lumbar Spinal Arthroplasty: Clinical Experience",slug:"lumbar-spinal-arthroplasty-clinical-experience",signatures:"Fred H. 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There is an ongoing debate about the impacts of globalization on sustainability [1, 2] with arguments for both positive [3] and negative [4] impacts. An attempt is made in this chapter to advance this debate by proposing a framework for sustainable globalization. Interactions between globalization and sustainability are analyzed to tackle a complex question of whether globalization can be made sustainable.
The term sustainability is used here to refer to sustainable ecological systems that can be affected by factors such as resources consumption and pollution that impact biosphere functions [5]. The traditional three pillars [6] of sustainability, namely environmental, economic, and social pillars, are considered while also acknowledging that a primary core of sustainability is its concern for the well-being of the future generations [7]. Likewise, this chapter adopts the broad definition of globalization as a process that encompasses the causes, modalities, and consequences of transnational and transcultural integration of human and nonhuman activities [8]. Focus is given to economic and social components of globalization while also touching upon its political component.
Firstly, interaction between globalization and environment is examined by considering energy and resources consumption, greenhouse gases emission, and pollution (Section 2). Then, relationships of sustainability with the current green growth paradigm and alternative economic approaches are explored in the context of globalization (Section 3). Implication of globalization on social sustainability is then examined by taking into account the quality of life, urbanization, and social equality (Section 4). Based on the analyses of different interactions, existing knowledge gaps are discussed (Section 5). Then, an approach for sustainable globalization is proposed (Section 6), and finally, the conclusions are presented.
There are several approaches to evaluate environmental sustainability. Environmental Performance Index has been used as a composite indicator to evaluate the state of sustainability of 180 countries by considering 11 issue categories [9]. These categories are air quality, sanitation and drinking water, heavy metals, waste management, biodiversity and habitat, ecosystem services, fisheries, climate change, pollution emission, water resources, and agriculture. Similarly, Environmental Performance Assessment Composite Index has been developed in [10] by combining three indices associated with natural resources, sustainable and efficient use of resources, and use of alternative resources. Likewise, six broad thematic categories—energy performance; waste management; air quality and pollution; water quality and pollution; land use, agriculture, and fisheries; and biodiversity, forests, and soils—have been proposed by [11] as indicators of environmental sustainability.
Ecological footprint is another common quantitative metric for measuring environmental sustainability. Basically, it is the amount of land, measured in global hectares, required to support a particular lifestyle [12]. Although the ecological footprint gives a valuable quantitative measure of environmental sustainability and enables comparisons of biocapacities of different nations, it does not take technological change and underground resources into account [13]. Furthermore, it does not take land degradation into account [14].
Based on the adaptations from abovementioned studies, this chapter characterizes environmental sustainability in three broad categories of energy and resources consumption, greenhouse gases emission, and pollution to evaluate the interactions between globalization and environmental sustainability.
Globalization has a potential to cause both increase and decrease in energy and resources consumption. Globalization can increase the applications of improved technologies in low- and middle-income nations that lead to higher process and energy efficiencies, eventually reducing the energy and resources consumption. Contrastingly, globalization could also support economic growth that requires higher energy and resources consumption [15].
A popular measure of globalization is the KOF Globalization Index (KOFGI), which measures globalization along the economic, social, and political dimensions for different countries [16]. The 10 most globalized nations based on KOFGI [17] are all high-income nations in Europe that also have very high energy consumption per capita [18]. However, the material footprints of these nations are decreasing over time with the exception of Sweden and Denmark [19]. Material footprint is one of indicators of the United Nations Sustainable Development Goals and refers to the total amount of raw materials extracted to meet final consumption demands [20]. It may be noted here that the 10 most globalized nations have material footprints higher than the global average, and the majority of them have footprints higher than the European Union average [19]. It is also noteworthy that 50 most globalized nations [17] are primarily high-income nations with a few upper middle-income nations such as Malaysia and Thailand [21].
Energy consumption of top Asian economies has been found to increase with globalization [22]. It has been reported that the physical quantities of goods traded internationally only represent one-third of the actual natural resources that were used to produce these traded goods [23]. Therefore, it can be argued that globalization is currently increasing energy and resources consumption.
Globalization, evaluated in terms of KOFGI, has been shown to increase greenhouse gases (GHG) emission in European Union [24] and Japan [25]. On the other hand, globalization has been found to reduce GHG emission in emerging economies such as Brazil, Russia, India, China, Mexico, Indonesia, and Turkey [26, 27] showing some evidence for Environmental Kuznets Curve (EKC) hypothesis. This hypothesis states that an inverted-U-shaped relationship exists between different pollutants and per capita income, i.e., environmental pressure increases up to a certain level as income goes up and then decreases. The KEC hypothesis is based on a notion that environmental quality deteriorates at the early stages of economic development and subsequently improves at the later stages [28]. The hypothesis is that as the economic development occurs at the expense of the environment, average income of the population increases. Once the average income is sufficiently high, a turning point is reached where people start to value and take care of their local environment. Technological solutions and energy efficiency enabled by the economic growth then allow for improvement of the local environment, since people can afford to take care of the environment.
Impacts of globalization on local pollution other than GHG emission are presented here. International trade has been found to contribute to significant portion of total air pollution, which is negatively impacting human health [29, 30, 31]. It has recently been estimated that almost everyone on Earth is affected by air pollution [32]. Likewise, globalization may also be contributing toward land degradation. For instance, clearance of native vegetation and land degradation across much of Latin America and Asia has been linked to agricultural expansion and intensification at a commercial scale for export markets [23]. Likewise, there is also an indication that international trades facilitated by globalization are causing higher water pollution in emerging economies such as China [33].
In the context of emerging economies, there are studies showing support for, as well as against, the EKC hypothesis. For instance, support for EKC hypothesis where environmental quality first degraded due to globalization and then improved after the average income became sufficiently high was reported in several Chinese cities by [34]. Contrarily, continued environmental degradation in China was found by [35] despite the average income being sufficiently high, thereby showing evidence against the EKC hypothesis.
Plastic pollution may also be affected by globalization. For instance, China banned the import of plastic waste in 2017 to tackle its plastic pollution problem [36]. Although many high-income nations have agreed to place a strict limit on export of plastic waste to poorer nations, American exporters are still exporting plastic wastes to poor nations [37]. This can cause significant plastic pollution in poor nations that import plastic wastes.
This section analyzes the interaction between the existing green growth economic model and sustainability in the context of globalization. Alternatives to green growth economic models are also explored.
The Organization for Economic Co-operation and Development (OECD) has a green growth strategy set in place since 2011 [38]. The OECD views green growth as an approach to foster economic growth and development while ensuring that natural assets continue to provide the resources and environmental services on which our well-being relies [38]. The United Nations has a similar concept of green economy, which is a low-carbon, resource-efficient, and socially inclusive economy. Growth in the green economy is driven by public and private investments based on the understanding that natural assets are critical economic assets [39]. An umbrella term “green growth” is adopted in this chapter to refer to any growth-based economic models.
Green growth assumes that economic growth can be decoupled from environmental pressures. In order to evaluate green growth, an approach to measure it has been proposed by comparing gross domestic product (GDP) with resources productivity [40]. Green growth is said to occur when percentage increase in resources productivity is higher than the percentage increase in GDP. For instance, if a country experiences a GDP growth of 2%, and its carbon productivity improves by 4%, the country displays green growth in the climate dimension [40]. Carbon productivity here is an example of resource productivity and is a measure of GHG emission reduction. Overall, green growth should reduce environmental pressure.
Economic components of globalization such as foreign direct investment and trade openness are promoted in OECD countries to accelerate green growth, and it has been found that these components help reduce GHG emission [41]. However, although the implementation of green growth has the tendency to reduce GHG emission [42], global GHG emission is expected to be record high as the world economy recovers from coronavirus [43]. For instance, both China and India surpassed their 2019 emission peaks in 2021. Chinese emission grew by 5.5% between 2019 and 2021, while Indian emission grew by 4.4% [43].
Critics of the green growth paradigm argue that empirical evidence on resource use and carbon emission does not support green growth theory [44]. It has been argued that there is no empirical evidence to suggest that absolute decoupling from resource use can be achieved on a global scale while continuing economic growth [44]. Consequently, alternatives to green growth have been explored. Degrowth and policies for social equity are examples of alternative to green growth [45].
Degrowth paradigm relies on a construct that continuous economic growth and ecological sustainability are incompatible. Therefore, it argues for reduced production and consumption. Likewise, policies for social equity (PSE) are based on a concept that inequality leads to environmental degradation. The PSE is actually a type of green growth with two added radical social policies, namely a job guarantee program and working time reduction [45]. Degrowth, on the other hand, contains the PSE but also argues for downscaling economy. While all the three economic models have their own advantages and disadvantages, simulations of green growth, PSE, and degrowth have shown degrowth model to be most effective in tackling environmental pressures [45].
This section explores the interaction between globalization and society in the context of social sustainability. Three aspects of society, namely quality of life, urbanization, and equality, are considered.
In low-income nations, life expectancy has been positively correlated with globalization [46]. Likewise, quality of life measured in terms of human development index has been found to increase with globalization in several Asian countries [47]. At global scale, aggregate positive effect from globalization-related trade has been reported while also acknowledging disproportionate distributional concerns. The disproportionate concern is that globalization-related trade can lead to unemployment, reduced wages, and slower decline in poverty in some geographical regions and commercial sectors [48].
The overall effect of globalization on high-income, as well as low-income, nations is reported to be improved quality of life. Positive impacts include harmonization of the labor market, development of digital society [49], and reduced macroeconomic volatility due to diversification of risks.
Urbanization is primarily happening in low- and middle-income countries due to economic growth and globalization [50]. Benefits of urbanization are increase in employment opportunities, abundance of unskilled labor, and expansion of industrial, residential, entertainment, and commercial areas. Urbanization and trade openness can also reduce income inequality [51, 52], particularly when coupled with high institutional quality and democracy. However, a study in Africa has found that urbanization alone may not significantly impact equality in the absence of democratic reforms and institutional quality [52]. Institutional quality here refers to corruption control, law and order, and sound bureaucracy. On the flip side, disadvantages of urbanization include increased crime and land use change [50]. Farmland loss, ecological degradation, and decrease in biodiversity are some of the negative consequences of urbanization [53].
The relationship between equality and globalization is very complex. Generally, globalization increases inequality within a nation but decreases inequality between nations [54]. It can therefore be argued that the benefits of globalization have not reached everyone equally. There are also mixed relationships between income inequality and globalization with some countries seeing the benefit of globalization while others have not [55]. Statistical analyses have shown that social spending may not necessarily cushion the impact of inequality brought about by globalization [55]. Overall, better approach to globalization is needed to ensure that inequality does not rise due to globalization and outweigh its positive effects.
Extensive and rigorous research is needed to understand the interactions between globalization and sustainability. The foremost question is whether globalization can be made sustainable. This chapter assumes that globalization can be made sustainable based on the synthesis of existing literature as mentioned in preceding sections and the author’s reflection. However, if future studies and empirical evidence categorically confirm that sustainable globalization is not possible, alternative models to globalization need to be investigated.
In order to tackle a complex question of whether globalization can be made sustainable or not, the following three unanswered questions need to be addressed:
Globalization allows multinational corporations, especially the big tech companies such as Google, Amazon, Facebook, Apple, and Microsoft (GAFAM) to have global influence and strongly affect environmental, economic, and social dimensions of global sustainability. From environmental standpoint, the big tech companies provide assistance to mining of fossil fuels through artificial intelligence and cloud technologies as previously reported by the author [56]. Cloud technology can reduce complexity of information collection and control time in the petroleum production processes. Likewise, artificial intelligence can improve the accuracy of identifying oil fields for effective mining. The assistance of big tech companies to fossil fuel industry raises questions about their commitment to renewable energy transition. On the other hand, GAFAM also have a potential to greatly facilitate renewable energy transition by the application of artificial intelligence and cloud computing. For instance, machine learning could improve the predictability of intermittent renewable energy resources. How should the GAFAM support environmental sustainability in a globalized world needs to be investigated thoroughly.
From economic sustainability viewpoint, the GAFAM could monopolize global markets of intangible assets and digital services [57] threatening economic sustainability. Intangible assets such as intellectual properties and services play major role in today’s global economy [58]. Another very important intangible asset is personal data of global population that GAFAM possess [59]. The GAFAM have been referred to as data-driven intellectual monopolies [57] as they have huge control over digital services and personal data of the global market. Their monopolization and opaque practices could severely harm small and local businesses [60]. On the other hand, the GAFAM have helped the booming of mobile software industry, created avenues for advertisers and ushered in a new generation of entrepreneurs including influencers, podcasters, and marketing experts [61]. Increased globalization will allow GAFAM to penetrate global market more strongly, and the impacts this will have on economic sustainability need to be examined.
Big tech companies also have massive impacts on social dimension of sustainability, particularly on quality of life, freedom, privacy, and equality. Lawsuits have been filed against several big tech companies [59] for possibly maintaining monopoly illegally. There are also testimonials from small and local businesses about how they fear Google more than the Government [60]. For instance, the Government could place limited amount of fine on a small business with minimal impact, but delisting from advertising by Google could mean that the business could go bankrupt, particularly given Google’s dominant market share on Internet searches. The arbitrary control of GAFAM over small businesses [60] could therefore lead to unemployment and freedom to independently run business. This could also greatly increase inequality where few people running the GAFAM have control on large population, and globalization could exacerbate this problem by allowing GAFAM to control more people than they already do. On the other hand, the big tech companies can also allow voices of common people to reach global audience and thereby empower people.
Privacy is another major threat to social sustainability posed by the GAFAM. They have contributed to global surveillance for US National Security Agency [57], and loss of privacy is a major concern with GAFAM. Globalization could enable the GAFAM to surveille more people around the world.
Another important theme that needs detailed investigation is the role of globalization in advancing the green growth versus degrowth debate. For instance, can globalization support green growth model? Renewable energy and technology play central role in enabling green growth. Globalization could enhance the diffusion of technologies that reduce environmental pressures, but it is yet to be proven that growth can be universally sustained indefinitely. Therefore, a case for degrowth in high-income nations can be made, and it is necessary to understand how globalization could enable degrowth. Overall, it is necessary to investigate how globalization could enable the conflicting economic models of growth and degrowth in order to advance the green growth versus degrowth debate.
While globalization may have helped the economic growth of many low- and middle-income nations, globalization may also have contributed to increasing inequality within countries. Likewise, there is a perception that globalization is a threat to national sovereignty [62]. It has also been argued that globalization increases the propensity of obesity, particularly among women, in low- and middle-income nations [63]. From an environmental viewpoint, a study of 130 countries [64] found no significant relationship between globalization and environmental footprint.
All in all, there are positive as well as negative impacts of globalization, and further research is needed to investigate models of globalization that enhance environmental, economic, and social pillars of sustainability holistically.
It may not be possible to generalize the degree of globalization that is sustainable, and it is very likely that different countries need different degrees of globalization for sustainability. However, few basic principles could be adopted to decide on the degree of globalization as guidelines. This section proposes such guidelines as below for social, environmental, and economic dimensions of sustainability. A need for holistic approach is also highlighted.
There are several crucial aspects [65] of social sustainability such as human rights, equity, justice, democracy, and health and safety that cannot be compromised. Adoption of any element of globalization should not negatively impact these crucial aspects even if the globalization has other benefits. Since globalization has complex interactions with society, it may not be possible to only have positive impacts from any element of globalization. However, an element of globalization should only be adopted if it has positive or neutral effects on human rights, equity, justice, democracy, and health and safety even if other aspects of social sustainability are compromised for trade-offs.
Decision-making on the adoption of globalization from environmental sustainability perspective is not straightforward due to the nature of environmental impacts of globalization. Both positive and negative impacts of globalization on environment can be temporary and reversible. For instance, globalization can initially cause environmental degradation due to economic growth propelled by trade openness and foreign investments, but later lead to improved environment after the population has sufficiently increased average income and technical capabilities, thereby validating EKC hypothesis [66]. However, global study on EKC hypothesis is inconclusive [67] indicating the complex nature of interaction between economics, environment, and globalization. It has also been argued that while political and overall globalization improves the environment, economic globalization harms the environment [66].
In order to decide on the adoption of any element of globalization, it is first necessary to evaluate the immediate short-term and long-term positive and negative environmental effects. If short-term negative environmental impacts are identified, it is necessary to evaluate other benefits of creating the short-term negative impacts. In a situation where it is found that the short-term negative impacts are outweighed by benefits, for example, economic growth, it is necessary to identify future measures to reverse the short-term negative environmental impacts with a concrete timeframe. Therefore, careful planning is required by first evaluating whether the negative environmental impact can be reversed or not. If the negative environmental impact is reversible, the cost of reversing it needs to be weighed against the benefit of allowing it. The element of globalization may be adopted if the benefit outweighs the cost of reversing negative short-term environmental impact.
On the other hand, if the environmental impact is irreversible, it is necessary to analyze if this irreversibility compromises the livelihood, needs, and prosperity of future generations permanently. In a case where future generations need are severely compromised permanently, that element of globalization should not be adopted.
Availability and depletion rates (both in quality and quantity) of critical natural resources are other important environmental sustainability considerations. Although the current focus is primarily centered on reducing greenhouse gases emission by implementing renewable energy systems, the use of critical natural resources by these systems cannot be neglected. Renewable energy systems require huge amounts of rare earths and other minerals such as lithium, nickel, copper, manganese, cobalt, etc., and these minerals exist only in fixed quantities on Earth. A typical electric car needs six times the mineral inputs of a conventional fossil fuel car, and an onshore wind plant needs nine times more mineral resources than a gas-fired plant [68]. From a globalization perspective, it is noteworthy that minerals required by renewable energy systems are concentrated in small geographic areas unlike fossil fuels. For example, the Democratic Republic of the Congo was responsible for 70% of cobalt production, and China was responsible for 60% of rare earth minerals production in 2019 [68]. China alone has nearly 90% share in refining of rare earth minerals [68] such as neodymium, terbium, indium, dysprosium, and praseodymium that are required for solar photovoltaics and wind energy systems. Since critical natural resources for renewable energy are concentrated in small geographical areas, monopolization of the supply chain of these resources by few multinational corporations and nations is a real threat that needs to be addressed with urgency. This is particularly important as major fossil fuel monopolies—BP, Shell, Chevron, Total, Eni, and Exxon—are heavily investing in renewable energy [69]. Fossil fuel industry has held tremendous political power in the United States and globally [70], and if this same industry is again allowed to monopolize the new fuel, i.e., critical natural resources required for renewable energy, what are the implications for sustainability? There is an urgent need to critically tackle this question. All in all, globalization needs to tackle any potential monopolization issues associated with renewable energy systems in order to be sustainable.
Impacts of globalization on plastic pollution and e-waste are another major environmental consideration. Adoption of any element of globalization that increases plastic pollution and e-waste needs very careful cost–benefit analysis.
Green growth versus degrowth debate is still unsolved, and therefore, every country might first need to rethink whether it wants to follow green growth, degrowth, or another economic paradigm before planning its degree of globalization.
In a scenario where a country chooses green growth, a clear time-bound pathway to decoupling economic growth from environmental pressures needs to be formulated. Environmental pressure should not be measured only in terms of GHG emission but also in terms of air pollution, loss of biodiversity, plastic pollution, stress on freshwater resources, depletion of critical natural resources, land degradation, and other pertinent local pollution. In the context of globalization, a country also needs to decide if it will import products and fuels produced unsustainably from other countries to sustain its economic growth. Economic sustainability cannot be achieved if a country does not produce environmentally detrimental products and fuels on its own country but imports them from other countries, especially from low- or middle-income nations where the products and fuels were produced unsustainably.
For low-income nations with high poverty where rudimentary amenities such as food, water, shelter, and access to basic healthcare are lacking for significant number of people, economic growth propelled by globalization may be adopted even if it causes short-term environmental degradation. This is because if the preservation of present generation is being threatened by poverty and lack of basic survival needs, there cannot be any sustainability or perhaps even future generation. By the same reasoning, poor nations could also adopt infrastructural development enabled by globalization even if there is a short-term environmental damage although it may not be possible to compromise potential long-term and irreversible environmental degradation. It may be noted here that the author is not advocating for short-term reversible environmental degradation for poverty alleviation but only opining that this may be permitted as a last resort if poverty alleviation through economic growth cannot be achieved with zero environmental consequences.
On the other hand, high- and middle-income nations need to strongly embed environmental and natural resources protections in their green growth models. Circular economy may allow green growth to sustain indefinitely although this is debatable. Ideally, circular economy is a regenerative system with no waste and pollution. In a linear economy, a product finally becomes a waste, and manufacturing processes also produce wastes that need disposal. Contrastingly, circular economy uses wastes as resources by creating a cyclical regenerative system that can theoretically be sustained indefinitely. It is highly debatable whether circular economy can be sustained indefinitely with zero negative environmental consequence and yet allow growth because a stable system typically remains unchanged and does not grow indefinitely. However, many believe that circular economy can sustain economic growth indefinitely, and the European Union has a circular economy action plan [71]. Even if the circular economy may not sustain green growth indefinitely, it certainly reduces environmental pressures, and therefore, every economic globalization program should embed circular economy wherever applicable.
It could very well be possible that green growth cannot be sustained indefinitely in high-income nations without importing products and fuels that were produced unsustainably elsewhere. Consequently, high-income nations may need to rethink degrowth or other novel economic paradigms in the context of globalization. Social elements of globalization such as tourism, cultural and technological exchanges, and digital services may allow people in high-income nations to maintain existing quality of life without economic growth or even degrowth. For instance, high-income nations could reduce infrastructural development but rather focus on trading digital services with middle- and low-income nations to maintain its living standards. This is an underinvestigated topic, and further research on how globalization could allow the maintenance of quality of life without economic growth in high-income nation is needed.
Holistic approach that takes into social, environmental, and economic dimensions of sustainability collectively is needed in order to devise a sustainable globalization approach. Basic human rights and equality are prerequisites for sustainability and globalization should either have positive or neutral impacts on these prerequisites for sustainability. Likewise, globalization should not enable irreversible long-term environmental impacts that reduce opportunities of future generations to prosper or maintain the quality of life that the present generation has.
Globalization cannot be sustainable if one country prospers at the expense of other countries. Therefore, sustainable globalization should enhance water, energy, and food security globally. Additionally, sustainable globalization should empower people and reduce inequality. Although, globalization requires agreements and laws that countries follow, sustainable globalization should not impinge on autonomy of any country. More specifically, sustainable globalization should not allow giant multinational companies and big tech corporations to be more powerful than any sovereign nation as this is a real risk (see Section 5).
It may not be possible for sustainable globalization to only have benefits with no negative implications at a practical level. Hence, trade-offs need to be evaluated by every country to decide on the degree of globalization it can sustainably adopt. To this end, it is necessary to realize that certain aspects of sustainability cannot be compromised. These include social aspects such as human rights, reduced inequality, livelihood, democracy, health, and safety. These also include environmental aspects such as irreversible environmental degradations that imminently threaten livelihood of present generation or reduce the ability of future generation to thrive and prosper. Once it is ascertained that globalization does not negatively impact the uncompromisable environmental and social aspects of sustainability, other trade-offs need to be evaluated. Since the priorities of every country can be different, these trade-offs evaluations cannot be generalized.
This chapter examines the impacts of globalization on sustainability by considering the environmental, economic, and social pillars of sustainability. Globalization can have positive as well as negative effects on different aspects of sustainability, underscoring the complex nature of interactions between globalization and sustainability. There are several knowledge gaps that need to be addressed to make globalization sustainable. These include questions regarding roles of big tech and multinational companies to enhance sustainability, globalization in the context of green growth versus degrowth debate, and better understanding of how disproportionate impacts (both positive and negative) of globalization can be minimized. Finally, an approach for sustainable globalization is proposed by identifying several environmental and social aspects of sustainability that cannot be compromised by globalization even if it offers huge economic and other benefits.
The author would like to thank the reviewers and the editor for their valuable feedback in improving the chapter.
The authors declare no conflict of interest.
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Nanotechnology and tissue engineering have been applied in the development of new antimicrobial therapies, capable of fighting opportunistic infections. In the medical field, research on antimicrobial properties of metal oxide nanoparticles have emerged to find new antimicrobial agents as an alternative against resistant bacteria. The metal oxides, particularly those formed by transition metals are compounds with electronic properties, and most magnetic phenomena involve this type of oxides. Nanoparticles-based metal oxide properties such as shape, size, roughness, zeta potential and their large surface area, make oxides ideal candidates to interact with bacteria and able to have an antimicrobial effectiveness. The aim of this chapter is to offer an updated panorama about the relationships between the use of metal oxide nanoparticles in the medical field, with an emphasis on their role as antimicrobial agents and the properties that influence their antimicrobial response. In addition, the mechanism of nano-antimicrobial action is described and the importance of using in vitro test methods, adopted by leading international regulatory agencies, that can be used to determine the antimicrobial activity of the metal oxide nanoparticles.",book:{id:"8440",slug:"nanoemulsions-properties-fabrications-and-applications",title:"Nanoemulsions",fullTitle:"Nanoemulsions - Properties, Fabrications and Applications"},signatures:"Alejandro L. Vega-Jiménez, América R. 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There are various methods for the fabrication of Nano-emulsions which can be divided based on the energy required—High energy emulsification methods and Low energy emulsification methods. High energy emulsification includes methods like Ultra sonication, high pressure homogenization using either microfluidizers or high-pressure homogenizers. Low energy emulsification has drawn attention since they are soft, nondestructive and cause no damage to encapsulated molecules and includes methods like phase inversion temperature, solvent displacement, phase inversion composition method. Nanoemulsions are best suited for drug delivery systems because of their lipophilic nature, optical clarity and surface area. Owing to their nature to prevent flocculation and inherent creaming, nanoemulsions find an important place in the cosmetic industry also. This chapter provides an insight into the use of nanogels, emulsion based wet wipes and PEG free nanoemulsions in cosmetics. In the food industry, nanoemulsions are utilized for the production of functional foods. Some of the patented nanoemulsions and their commercial applications have also been mentioned.",book:{id:"8440",slug:"nanoemulsions-properties-fabrications-and-applications",title:"Nanoemulsions",fullTitle:"Nanoemulsions - Properties, Fabrications and Applications"},signatures:"Praveen Kumar Gupta, Nividha Bhandari, Hardik N. Shah, Vartika Khanchandani, R. 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In this context, the application of nanoemulsion stands at the vanguard of introducing newer dimensions to the way we see the everyday world. Naturally, the preparation and stability of nanoemulsion demand a precise understanding of the underlying forces of interaction toward achieving a greater control over their functionality and regulating them. The stability of nanoemulsion is primarily governed by the conjugate and complex interplay of van der Waals forces and steric interactions. The present chapter will be dedicated to the discussion of the regulatory roles of these forces in dictating the stability of nanoemulsion with particular emphasis on the origin of these fundamental forces from a molecular-level viewpoint.",book:{id:"8440",slug:"nanoemulsions-properties-fabrications-and-applications",title:"Nanoemulsions",fullTitle:"Nanoemulsions - Properties, Fabrications and Applications"},signatures:"Kaustav Bhattacharjee",authors:[{id:"280003",title:"Dr.",name:"Kaustav",middleName:null,surname:"Bhattacharjee",slug:"kaustav-bhattacharjee",fullName:"Kaustav Bhattacharjee"}]},{id:"67779",doi:"10.5772/intechopen.87104",title:"Introductory Chapter: From Microemulsions to Nanoemulsions",slug:"introductory-chapter-from-microemulsions-to-nanoemulsions",totalDownloads:1071,totalCrossrefCites:1,totalDimensionsCites:3,abstract:null,book:{id:"8440",slug:"nanoemulsions-properties-fabrications-and-applications",title:"Nanoemulsions",fullTitle:"Nanoemulsions - Properties, Fabrications and Applications"},signatures:"Koh Kai Seng and Wong Voon Loong",authors:[{id:"222878",title:"Dr.",name:"Kai Seng",middleName:null,surname:"Koh",slug:"kai-seng-koh",fullName:"Kai Seng Koh"},{id:"224066",title:"Dr.",name:"Voon Loong",middleName:null,surname:"Wong",slug:"voon-loong-wong",fullName:"Voon Loong Wong"}]},{id:"67020",doi:"10.5772/intechopen.86170",title:"Nanoformulated Delivery Systems of Essential Nutraceuticals and Their Applications",slug:"nanoformulated-delivery-systems-of-essential-nutraceuticals-and-their-applications",totalDownloads:1029,totalCrossrefCites:1,totalDimensionsCites:2,abstract:"Malnutrition and poor diet constitute the number one driver of the global burden of disease. Undernutrition is responsible for up to 50% of all deaths in children under the age of 5. In South Africa, 25% of the country’s children suffer from undernutrition. This increases the risk of child mortality as well as contracting infectious diseases. It also affects the physical and intellectual development of the children. The greatest drawback in malnutrition is the deficiency of essential nutraceuticals involved in important biological functions. Innovative technologies such as nanoformulated products are needed for food and agriculture in order to enhance the children’s health. The evaluation and application of various nanoformulated delivery systems will be explored for improving the stability and bioavailability of essential nutraceuticals for consumers.",book:{id:"8440",slug:"nanoemulsions-properties-fabrications-and-applications",title:"Nanoemulsions",fullTitle:"Nanoemulsions - Properties, Fabrications and Applications"},signatures:"Lebogang Katata-Seru, Bathabile Ramalapa and Lesego Tshweu",authors:[{id:"275575",title:"Prof.",name:"Lebogang",middleName:null,surname:"Katata-Seru",slug:"lebogang-katata-seru",fullName:"Lebogang Katata-Seru"},{id:"300636",title:"Dr.",name:"Bathabile",middleName:null,surname:"Ramalapa",slug:"bathabile-ramalapa",fullName:"Bathabile Ramalapa"},{id:"300637",title:"Mr.",name:"Lesego",middleName:null,surname:"Tshweu",slug:"lesego-tshweu",fullName:"Lesego Tshweu"}]}],mostDownloadedChaptersLast30Days:[{id:"67779",title:"Introductory Chapter: From Microemulsions to Nanoemulsions",slug:"introductory-chapter-from-microemulsions-to-nanoemulsions",totalDownloads:1071,totalCrossrefCites:1,totalDimensionsCites:3,abstract:null,book:{id:"8440",slug:"nanoemulsions-properties-fabrications-and-applications",title:"Nanoemulsions",fullTitle:"Nanoemulsions - Properties, Fabrications and Applications"},signatures:"Koh Kai Seng and Wong Voon Loong",authors:[{id:"222878",title:"Dr.",name:"Kai Seng",middleName:null,surname:"Koh",slug:"kai-seng-koh",fullName:"Kai Seng Koh"},{id:"224066",title:"Dr.",name:"Voon Loong",middleName:null,surname:"Wong",slug:"voon-loong-wong",fullName:"Voon Loong Wong"}]},{id:"55094",title:"Nanostructured Morphologies by Self-Assembly of Diblock Copolymers: A Review",slug:"nanostructured-morphologies-by-self-assembly-of-diblock-copolymers-a-review",totalDownloads:1986,totalCrossrefCites:0,totalDimensionsCites:0,abstract:"Due to the thermodynamic incompatibility between blocks, diblock copolymers can self‐assemble in a wide variety of nanostructures, covalent linkage among blocks preventing the phase separation at macroscopic scale. Those nanostructures depend on copolymer composition (f), Flory‐Huggins interaction parameter among both blocks (χ), and polymerization degree of the copolymer (N). Thin films of block copolymers can show different equilibrium morphologies such as spheres, cylinders, gyroids, and lamellas. Besides mentioned parameters, film preparation process (substrate, annealing process if any) and used solvent will determine self‐assembled morphology. In the present review, the most important morphologies or microstructures obtained for different diblock copolymer films are presented, as well as the most important phase transitions among them. Different microstructures and the way in which they can be obtained become of great importance, as they could be used as templates for nanoparticle deposition, nanolithography, or nanopatterned materials with several potential applications in different fields such as nanoelectronics or nanomedicine.",book:{id:"5849",slug:"molecular-self-assembly-in-nanoscience-and-nanotechnology",title:"Molecular Self-assembly in Nanoscience and Nanotechnology",fullTitle:"Molecular Self-assembly in Nanoscience and Nanotechnology"},signatures:"Galder Kortaberria",authors:[{id:"102097",title:"Dr.",name:"Galder",middleName:null,surname:"Kortaberria",slug:"galder-kortaberria",fullName:"Galder Kortaberria"}]},{id:"67020",title:"Nanoformulated Delivery Systems of Essential Nutraceuticals and Their Applications",slug:"nanoformulated-delivery-systems-of-essential-nutraceuticals-and-their-applications",totalDownloads:1030,totalCrossrefCites:1,totalDimensionsCites:2,abstract:"Malnutrition and poor diet constitute the number one driver of the global burden of disease. Undernutrition is responsible for up to 50% of all deaths in children under the age of 5. In South Africa, 25% of the country’s children suffer from undernutrition. This increases the risk of child mortality as well as contracting infectious diseases. It also affects the physical and intellectual development of the children. The greatest drawback in malnutrition is the deficiency of essential nutraceuticals involved in important biological functions. Innovative technologies such as nanoformulated products are needed for food and agriculture in order to enhance the children’s health. The evaluation and application of various nanoformulated delivery systems will be explored for improving the stability and bioavailability of essential nutraceuticals for consumers.",book:{id:"8440",slug:"nanoemulsions-properties-fabrications-and-applications",title:"Nanoemulsions",fullTitle:"Nanoemulsions - Properties, Fabrications and Applications"},signatures:"Lebogang Katata-Seru, Bathabile Ramalapa and Lesego Tshweu",authors:[{id:"275575",title:"Prof.",name:"Lebogang",middleName:null,surname:"Katata-Seru",slug:"lebogang-katata-seru",fullName:"Lebogang Katata-Seru"},{id:"300636",title:"Dr.",name:"Bathabile",middleName:null,surname:"Ramalapa",slug:"bathabile-ramalapa",fullName:"Bathabile Ramalapa"},{id:"300637",title:"Mr.",name:"Lesego",middleName:null,surname:"Tshweu",slug:"lesego-tshweu",fullName:"Lesego Tshweu"}]},{id:"65648",title:"In vitro Antimicrobial Activity Evaluation of Metal Oxide Nanoparticles",slug:"-em-in-vitro-em-antimicrobial-activity-evaluation-of-metal-oxide-nanoparticles",totalDownloads:1748,totalCrossrefCites:10,totalDimensionsCites:24,abstract:"In recent years, infectious diseases, specifically those that are caused by pathogens, have seen a dramatic proliferation due to resistance to multiple antibiotics, opening the colony by opportunistic pathogens. Nanotechnology and tissue engineering have been applied in the development of new antimicrobial therapies, capable of fighting opportunistic infections. In the medical field, research on antimicrobial properties of metal oxide nanoparticles have emerged to find new antimicrobial agents as an alternative against resistant bacteria. The metal oxides, particularly those formed by transition metals are compounds with electronic properties, and most magnetic phenomena involve this type of oxides. Nanoparticles-based metal oxide properties such as shape, size, roughness, zeta potential and their large surface area, make oxides ideal candidates to interact with bacteria and able to have an antimicrobial effectiveness. The aim of this chapter is to offer an updated panorama about the relationships between the use of metal oxide nanoparticles in the medical field, with an emphasis on their role as antimicrobial agents and the properties that influence their antimicrobial response. In addition, the mechanism of nano-antimicrobial action is described and the importance of using in vitro test methods, adopted by leading international regulatory agencies, that can be used to determine the antimicrobial activity of the metal oxide nanoparticles.",book:{id:"8440",slug:"nanoemulsions-properties-fabrications-and-applications",title:"Nanoemulsions",fullTitle:"Nanoemulsions - Properties, Fabrications and Applications"},signatures:"Alejandro L. Vega-Jiménez, América R. Vázquez-Olmos, Enrique Acosta-Gío and Marco Antonio Álvarez-Pérez",authors:[{id:"272164",title:"Dr.",name:"Alejandro",middleName:"Luis",surname:"Vega-Jiménez",slug:"alejandro-vega-jimenez",fullName:"Alejandro Vega-Jiménez"},{id:"273073",title:"Dr.",name:"América",middleName:null,surname:"Vázquez-Olmos",slug:"america-vazquez-olmos",fullName:"América Vázquez-Olmos"},{id:"273075",title:"Dr.",name:"Enrique",middleName:null,surname:"Acosta-Gío",slug:"enrique-acosta-gio",fullName:"Enrique Acosta-Gío"},{id:"273078",title:"Dr.",name:"Marco Antonio",middleName:null,surname:"Alvarez-Pérez",slug:"marco-antonio-alvarez-perez",fullName:"Marco Antonio Alvarez-Pérez"}]},{id:"65728",title:"Development of Nano-Emulsions of Essential Citrus Oil Stabilized with Mesquite Gum",slug:"development-of-nano-emulsions-of-essential-citrus-oil-stabilized-with-mesquite-gum",totalDownloads:1186,totalCrossrefCites:1,totalDimensionsCites:1,abstract:"The use of nano-emulsions has great advantages over conventional macro-emulsions since the small droplet size allows to expand the options of applications besides presenting a greater surface area. This chapter focuses on the formulation of nano-emulsions of citrus essential oils in water, stabilized with a natural gum (mesquite gum), using a high pressure microfluidic homogenizer to obtain appropriate physicochemical characteristics and kinetic stability. When establishing the general conditions of the methods for obtaining nano-emulsions by high pressure homogenization, several formulations presented stability and size corresponding to nano-emulsions, and these were monitored during 4 months in order to study their stability as a function of time. Taking into account the results of size and stability, the best nano-emulsion obtained had a composition of Persian lemon oil (9.86%), mesquite gum (4.93%) Tween 80 (4.89%), Span 20 (1.45%), and deionized water (78.86%) with an average droplet size of 40 nm. In addition, the antibacterial activity studies also showed that this formulation had the best performance against common bacteria such as Staphylococcus aureus and Escherichia coli. The analysis of the minimum inhibitory concentration (MIC) shows that it is possible to prevent the growth of these particular bacteria using 6.25% of the best nano-emulsion formulations.",book:{id:"8440",slug:"nanoemulsions-properties-fabrications-and-applications",title:"Nanoemulsions",fullTitle:"Nanoemulsions - Properties, Fabrications and Applications"},signatures:"Maira Berenice Moreno-Trejo, Arturo Adrián Rodríguez-Rodríguez, Ángela Suarez-Jacobo and Margarita Sánchez-Domínguez",authors:[{id:"93593",title:"Dr.",name:"Margarita",middleName:null,surname:"Sanchez-Dominguez",slug:"margarita-sanchez-dominguez",fullName:"Margarita Sanchez-Dominguez"},{id:"284208",title:"Dr.",name:"Maira B.",middleName:null,surname:"Moreno-Trejo",slug:"maira-b.-moreno-trejo",fullName:"Maira B. 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",coverUrl:"https://cdn.intechopen.com/series/covers/22.jpg",latestPublicationDate:"June 27th, 2022",hasOnlineFirst:!0,numberOfPublishedBooks:1,editor:{id:"356540",title:"Prof.",name:"Taufiq",middleName:null,surname:"Choudhry",slug:"taufiq-choudhry",fullName:"Taufiq Choudhry",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0033Y000036X2hvQAC/Profile_Picture_2022-03-14T08:58:03.jpg",biography:"Prof. Choudhry holds a BSc degree in Economics from the University of Iowa, as well as a Masters and Ph.D. in Applied Economics from Clemson University, USA. In January 2006, he became a Professor of Finance at the University of Southampton Business School. He was previously a Professor of Finance at the University of Bradford Management School. He has over 80 articles published in international finance and economics journals. 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At the Ministry of Justice of Slovenia, she is a member of examination boards for court expert candidates and judicial appraisers in the following areas: economy/finance, valuation of companies, banking, and forensic investigation of economic operations/accounting. 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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. 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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. 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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:null},{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:"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. He also works as a researcher at the Supercomputing Center for Industrial Innovation (CS2i) and at the SENAI Institute of Innovation for Automation (ISI Automação), both from SENAI CIMATEC. He is a member and vice-coordinator of the Basic Board of Scientific-Technological Advice and Evaluation, in the area of Innovation, of the Foundation for Research Support of the State of Bahia (FAPESB). He serves as Technology Transfer Coordinator and one of the Principal Investigators at the National Applied Research Center in Artificial Intelligence (CPA-IA) of SENAI CIMATEC, focusing on Industry, being one of the six CPA-IA in Brazil approved by MCTI / FAPESP / CGI.br. He also participates as one of the representatives of Brazil in the BRICS Innovation Collaboration Working Group on HPC, ICT and AI. He is the coordinator of the Work Group of the Axis 5 - Workforce and Training - of the Brazilian Strategy for Artificial Intelligence (EBIA), and member of the MCTI/EMBRAPII AI Innovation Network Training Committee. He is the coordinator, by SENAI CIMATEC, of the Artificial Intelligence Reference Network of the State of Bahia (REDE BAH.IA). He leads the working group of experts representing Brazil in the Global Partnership on Artificial Intelligence (GPAI), on the theme \"AI and the Pandemic Response\".",institutionString:"Manufacturing and Technology Integrated Campus – SENAI CIMATEC",institution:null},{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:"Polytechnic University of Timişoara",institution:{name:"Polytechnic University of Timişoara",country:{name:"Romania"}}},{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:null},{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:"241400",title:"Prof.",name:"Mohammed",middleName:null,surname:"Bsiss",slug:"mohammed-bsiss",fullName:"Mohammed Bsiss",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/241400/images/8062_n.jpg",biography:null,institutionString:null,institution:null},{id:"276128",title:"Dr.",name:"Hira",middleName:null,surname:"Fatima",slug:"hira-fatima",fullName:"Hira Fatima",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/276128/images/14420_n.jpg",biography:"Dr. Hira Fatima\nAssistant Professor\nDepartment of Mathematics\nInstitute of Applied Science\nMangalayatan University, Aligarh\nMobile: no : 8532041179\nhirafatima2014@gmal.com\n\nDr. Hira Fatima has received his Ph.D. degree in pure Mathematics from Aligarh Muslim University, Aligarh India. Currently working as an Assistant Professor in the Department of Mathematics, Institute of Applied Science, Mangalayatan University, Aligarh. She taught so many courses of Mathematics of UG and PG level. Her research Area of Expertise is Functional Analysis & Sequence Spaces. She has been working on Ideal Convergence of double sequence. She has published 17 research papers in National and International Journals including Cogent Mathematics, Filomat, Journal of Intelligent and Fuzzy Systems, Advances in Difference Equations, Journal of Mathematical Analysis, Journal of Mathematical & Computer Science etc. She has also reviewed few research papers for the and international journals. She is a member of Indian Mathematical Society.",institutionString:null,institution:null},{id:"414880",title:"Dr.",name:"Maryam",middleName:null,surname:"Vatankhah",slug:"maryam-vatankhah",fullName:"Maryam Vatankhah",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Borough of Manhattan Community College",country:{name:"United States of America"}}},{id:"414879",title:"Prof.",name:"Mohammad-Reza",middleName:null,surname:"Akbarzadeh-Totonchi",slug:"mohammad-reza-akbarzadeh-totonchi",fullName:"Mohammad-Reza Akbarzadeh-Totonchi",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Ferdowsi University of Mashhad",country:{name:"Iran"}}},{id:"414878",title:"Prof.",name:"Reza",middleName:null,surname:"Fazel-Rezai",slug:"reza-fazel-rezai",fullName:"Reza Fazel-Rezai",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"American Public University System",country:{name:"United States of America"}}},{id:"302698",title:"Dr.",name:"Yao",middleName:null,surname:"Shan",slug:"yao-shan",fullName:"Yao Shan",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Dalian University of Technology",country:{name:"China"}}},{id:"125911",title:"Prof.",name:"Jia-Ching",middleName:null,surname:"Wang",slug:"jia-ching-wang",fullName:"Jia-Ching Wang",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"National Central University",country:{name:"Taiwan"}}},{id:"357085",title:"Mr.",name:"P. Mohan",middleName:null,surname:"Anand",slug:"p.-mohan-anand",fullName:"P. Mohan Anand",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Indian Institute of Technology Kanpur",country:{name:"India"}}},{id:"356696",title:"Ph.D. Student",name:"P.V.",middleName:null,surname:"Sai Charan",slug:"p.v.-sai-charan",fullName:"P.V. Sai Charan",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Indian Institute of Technology Kanpur",country:{name:"India"}}},{id:"357086",title:"Prof.",name:"Sandeep K.",middleName:null,surname:"Shukla",slug:"sandeep-k.-shukla",fullName:"Sandeep K. Shukla",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Indian Institute of Technology Kanpur",country:{name:"India"}}},{id:"356823",title:"MSc.",name:"Seonghee",middleName:null,surname:"Min",slug:"seonghee-min",fullName:"Seonghee Min",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Daegu University",country:{name:"Korea, South"}}},{id:"353307",title:"Prof.",name:"Yoosoo",middleName:null,surname:"Oh",slug:"yoosoo-oh",fullName:"Yoosoo Oh",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:"Yoosoo Oh received his Bachelor's degree in the Department of Electronics and Engineering from Kyungpook National University in 2002. He obtained his Master’s degree in the Department of Information and Communications from Gwangju Institute of Science and Technology (GIST) in 2003. In 2010, he received his Ph.D. degree in the School of Information and Mechatronics from GIST. In the meantime, he was an executed team leader at Culture Technology Institute, GIST, 2010-2012. In 2011, he worked at Lancaster University, the UK as a visiting scholar. In September 2012, he joined Daegu University, where he is currently an associate professor in the School of ICT Conver, Daegu University. Also, he served as the Board of Directors of KSIIS since 2019, and HCI Korea since 2016. From 2017~2019, he worked as a center director of the Mixed Reality Convergence Research Center at Daegu University. From 2015-2017, He worked as a director in the Enterprise Supporting Office of LINC Project Group, Daegu University. His research interests include Activity Fusion & Reasoning, Machine Learning, Context-aware Middleware, Human-Computer Interaction, etc.",institutionString:null,institution:{name:"Daegu Gyeongbuk Institute of Science and Technology",country:{name:"Korea, South"}}},{id:"262719",title:"Dr.",name:"Esma",middleName:null,surname:"Ergüner Özkoç",slug:"esma-erguner-ozkoc",fullName:"Esma Ergüner Özkoç",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Başkent University",country:{name:"Turkey"}}},{id:"346530",title:"Dr.",name:"Ibrahim",middleName:null,surname:"Kaya",slug:"ibrahim-kaya",fullName:"Ibrahim Kaya",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Izmir Kâtip Çelebi University",country:{name:"Turkey"}}},{id:"419199",title:"Dr.",name:"Qun",middleName:null,surname:"Yang",slug:"qun-yang",fullName:"Qun Yang",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"University of Auckland",country:{name:"New Zealand"}}}]}},subseries:{item:{id:"95",type:"subseries",title:"Urban Planning and Environmental Management",keywords:"Circular economy, Contingency planning and response to disasters, Ecosystem services, Integrated urban water management, Nature-based solutions, Sustainable urban development, Urban green spaces",scope:"\r\n\tThis series will provide a comprehensive overview of recent research trends in business and management, economics, and marketing. Topics will include asset liability management, financial consequences of the financial crisis and covid-19, financial accounting, mergers and acquisitions, management accounting, SMEs, financial markets, corporate finance and governance, managerial technology and innovation, resource management and sustainable development, social entrepreneurship, corporate responsibility, ethics and accountability, microeconomics, labour economics, macroeconomics, public economics, financial economics, econometrics, direct marketing, creative marketing, internet marketing, market planning and forecasting, brand management, market segmentation and targeting and other topics under business and management. This book series will focus on various aspects of business and management whose in-depth understanding is critical for business and company management to function effectively during this uncertain time of financial crisis, Covid-19 pandemic, and military activity in Europe.
",coverUrl:"https://cdn.intechopen.com/series/covers/22.jpg",latestPublicationDate:"June 27th, 2022",hasOnlineFirst:!0,numberOfOpenTopics:2,numberOfPublishedChapters:19,numberOfPublishedBooks:1,editor:{id:"356540",title:"Prof.",name:"Taufiq",middleName:null,surname:"Choudhry",fullName:"Taufiq Choudhry",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0033Y000036X2hvQAC/Profile_Picture_2022-03-14T08:58:03.jpg",biography:"Prof. Choudhry holds a BSc degree in Economics from the University of Iowa, as well as a Masters and Ph.D. in Applied Economics from Clemson University, USA. In January 2006, he became a Professor of Finance at the University of Southampton Business School. He was previously a Professor of Finance at the University of Bradford Management School. He has over 80 articles published in international finance and economics journals. His research interests and specialties include financial econometrics, financial economics, international economics and finance, housing markets, financial markets, among others.",institutionString:null,institution:{name:"University of Southampton",institutionURL:null,country:{name:"United Kingdom"}}},subseries:[{id:"86",title:"Business and Management",keywords:"Demographic shifts, Innovation, Technology, Next-gen leaders, Worldwide environmental issues and clean technology, Uncertainty and political risks, Radical adjacency, Emergence of new business ecosystem type, Emergence of different leader and leader values types, Universal connector, Elastic enterprise, Business platform, Supply chain complexity",scope:"\r\n\tThe topic on Economics is designed to disseminate knowledge around broad global economic issues. Original submissions will be accepted in English for applied and theoretical articles, case studies and reviews about the specific challenges and opportunities faced by the economies and markets around the world. The authors are encouraged to apply rigorous economic analysis with significant policy implications for developed and developing countries. Examples of subjects of interest will include, but are not limited to globalization, economic integration, growth and development, international trade, environmental development, country specific comparative analysis, technical innovation and knowledge management, political economy analysis, and banking and financial markets.
",annualVolume:11971,isOpenForSubmission:!0,coverUrl:"https://cdn.intechopen.com/series_topics/covers/87.jpg",editor:{id:"327730",title:"Prof.",name:"Jaime",middleName:null,surname:"Ortiz",fullName:"Jaime Ortiz",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0033Y00002zaOKZQA2/Profile_Picture_1642145584421",institutionString:null,institution:{name:"University of Houston",institutionURL:null,country:{name:"United States of America"}}},editorTwo:null,editorThree:null,editorialBoard:[{id:"104262",title:"Dr.",name:"Chee-Heong",middleName:null,surname:"Quah",fullName:"Chee-Heong Quah",profilePictureURL:"https://mts.intechopen.com/storage/users/104262/images/system/104262.jpg",institutionString:null,institution:{name:"University of Malaya",institutionURL:null,country:{name:"Malaysia"}}},{id:"236659",title:"Prof.",name:"Monica Violeta",middleName:null,surname:"Achim",fullName:"Monica Violeta Achim",profilePictureURL:"https://mts.intechopen.com/storage/users/236659/images/system/236659.jpg",institutionString:null,institution:{name:"Babeș-Bolyai University",institutionURL:null,country:{name:"Romania"}}},{id:"202039",title:"Dr.",name:"Nahanga",middleName:null,surname:"Verter",fullName:"Nahanga Verter",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bSCwtQAG/Profile_Picture_1643101901237",institutionString:null,institution:{name:"Mendel University Brno",institutionURL:null,country:{name:"Czech Republic"}}},{id:"107745",title:"Emeritus Prof.",name:"Panagiotis E.",middleName:null,surname:"Petrakis",fullName:"Panagiotis E. Petrakis",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRzzaQAC/Profile_Picture_1644221136992",institutionString:null,institution:{name:"National and Kapodistrian University of Athens",institutionURL:null,country:{name:"Greece"}}},{id:"196259",title:"Dr.",name:"Ryan Merlin",middleName:null,surname:"Yonk",fullName:"Ryan Merlin Yonk",profilePictureURL:"https://mts.intechopen.com/storage/users/196259/images/system/196259.jpg",institutionString:null,institution:{name:"American Institute for Economic Research",institutionURL:null,country:{name:"United States of America"}}}]},{id:"88",title:"Marketing",keywords:"Consumer trends, Consumer needs, Media, Pricing, Distribution, Branding, Innovation, Neuromarketing",scope:"