Results for 'energy, technology and geopolitics'

971 found
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  1.  9
    Energy, Technology and Geopolitics.John R. Fanchi - 2012 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks (eds.), A Companion to the Philosophy of Technology. Malden, MA: Wiley-Blackwell. pp. 359–363.
    This chapter contains sections titled: References and Further Reading.
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  2.  11
    Energy, Technology and Climate.David Goodstein - 2005 - In Arthur W. Galston & Christiana Z. Peppard (eds.), Expanding horizons in bioethics. Norwell, MA: Springer. pp. 233--245.
  3.  31
    ENERGY 2040: Aligning Innovation, Economics and Decarbonization.Deepak Divan & Suresh Sharma - 2024 - Springer Nature Switzerland.
    Access to energy is essential for our daily lives, economic growth, environment, and sustainability. However, our use of fossil fuels has contributed to global climate change, which poses a significant threat to society and life on this planet. Yet, it has been challenging to reconcile the perceived conflict between economics and climate change, which has created deep divisions in our society. ENERGY 2040: Aligning Innovation, Economics, and Decarbonization provides a holistic and comprehensive analysis of the ongoing energy transition and its (...)
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  4.  15
    Organizational and geopolitical approaches to international science and technology networks.Wesley Shrum & Carl Bankston - 1993 - Knowledge, Technology & Policy 6 (3-4):119-133.
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  5.  12
    Renewable Energy Technologies in Africa: Retrospect & Prospects.Judi Wangalwa Wakhungu - 1996 - Bulletin of Science, Technology and Society 16 (1-2):35-40.
    Africa's renewable energy resource base is large. Traditional patterns of energy use have resulted in widespread environmental degradation. Renewable energy technologies are capable of harnessing this energy on a sustainable basis. However, despite some notable successes, efforts to disseminate these tech nologies have resulted in numerous failures. The failure of such efforts has been attributed to a variety of problems which have yet to be evaluated in a comprehensive and policy-relevant form. Such analysis is prerequisite to enabling policy-makers to act (...)
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  6. The Uncertain Future of Global Climate Change Commitments.Quan-Hoang Vuong, Minh-Hoang Nguyen & Viet-Phuong La - manuscript
    In the face of the climate crisis, countries around the globe have committed to reducing greenhouse gas emissions (GHG) and achieving carbon neutrality. While the effects of such commitments remain ambiguous, some risks and obstacles could potentially hinder nations, even leading to failure in fulfilling their climate commitments. The paper presents four major challenges that can impede the global progress towards emission reduction targets as pledged: 1) energy security and global socio-economic development demands, 2) political conflicts, geopolitical instability, and warfare, (...)
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  7.  47
    Energy Communities and the Tensions Between Neoliberalism and Communitarianism.Erik Laes & Gunter Bombaerts - 2022 - Science and Engineering Ethics 28 (1):1-21.
    The convergent development of distributed electricity sources, storage technologies, ‘big data’ devices, and novel ICT infrastructure matching energy supply and demand enables new local and collective forms of energy consumption and production. This socio-technical evolution has been accompanied by the development of citizen energy communities that have been supported by EU energy governance and directives, adopting a political narrative of placing the citizen central in the ongoing energy transition. But to what extent are the ideals that motivate the energy community (...)
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  8.  16
    Technology- and Product-Oriented Movements: Approximating Social Movement Studies and Science and Technology Studies.David J. Hess - 2005 - Science, Technology, and Human Values 30 (4):515-535.
    Technology- and product-oriented movements are mobilizations of civil society organizations that generally include alliances with private-sector firms, for which the target of social change is support for an alternative technology and/or product, as well as the policies with which they are associated. TPMs generally involve “private-sector symbiosis,” that is, a mixture of advocacy organizations/networks and private-sector firms. Case studies of nutritional therapeutics, wind energy, and open-source software are used to explore the tendency for large corporations in established industries (...)
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  9.  35
    Social Acceptance of Renewable Energy Technologies in the Post-fukushima Era.Eunil Park - 2021 - Frontiers in Psychology 11.
    In 2011, the Fukushima nuclear accident occurred, and this had a strong effect on public perceptions of energy facilities and services that relate not only to nuclear energy, but also renewable energy resources. Moreover, the accident has also considerably affected national energy plans in both developing and developed countries. In South Korea, several studies have been conducted since the accident to investigate public perspectives toward particular energy technologies; however, few studies have investigated public perceptions of renewable-energy technologies and tracked the (...)
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  10.  33
    Contested Technologies and Design for Values: The Case of Shale Gas.Marloes Dignum, Aad Correljé, Eefje Cuppen, Udo Pesch & Behnam Taebi - 2016 - Science and Engineering Ethics 22 (4):1171-1191.
    The introduction of new energy technologies may lead to public resistance and contestation. It is often argued that this phenomenon is caused by an inadequate inclusion of relevant public values in the design of technology. In this paper we examine the applicability of the value sensitive design approach. While VSD was primarily introduced for incorporating values in technological design, our focus in this paper is expanded towards the design of the institutions surrounding these technologies, as well as the design (...)
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  11.  30
    Technology and Social Inequality.Caroll Pursell - 2016 - Spontaneous Generations 8 (1):22-26.
    In the Fall of 1977 I gave a paper at a conference organized by the Center for Twentieth Century Studies at the University of Wisconsin, Milwaukee. The title of the paper, published in 1980, was “The American Ideal of a Democratic Technology.” Reading it over now, some thirty-seven years later, I am excited all over again by the debate over the nature and role of technology which was so prominent a part of the 1970s, but actually had its (...)
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  12.  11
    Lay–Expert Risk Perception Divide: Downscaling Global Problems to National Concerns.Aistė Balžekienė, Eimantė Zolubienė & Agnė Budžytė - 2022 - Filosofija. Sociologija 33 (4).
    In the modern world, risks are complex and systemic, and their effects are interconnected with the transformations in different layers of social systems. Global issues are not necessarily reflected in local contexts, and public perceptions of risks may differ significantly from expert assessments. The aim of the article is to reveal the differences between the opinions of the Lithuanian population and experts on economic, environmental, technological, geopolitical and social risks, and to compare the differences between the opinions of local experts (...)
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  13. ТРАНСБІОПОЛІТИЧНИЙ ХРОНОТОП ТЕХНОЛОГІЧНОЇ ЦИВІЛІЗАЦІЇ: БІО- І ГЕОПОЛІТИЧНІ КОННОТАЦІЇ МІЖНАРОДНИХ ВІДНОСИН (TRANSBIOPOLITICAL CHRONOTOPE OF TECHNOLOGICAL CIVILIZATION: BIO- AND GEOPOLITICAL CONNOTATIONS OF INTERNATIONAL RELATION).Valentin Cheshko, Nina Konnova & Oleh Kuz - 2022 - Epistemological studies in Philosophy, Social and Political Sciences 5 (2):143-150.
    Problem Statement. In modern conditions the reconstruction of self-developing socio-technological- ecological systems, which include man as its element, is actualized. The result of such a construction will be the management of the value of technogenic risk in its biological, social and civilizational forms. And the obvious consequence will be the transition of the development of biopolitical problems to a new, no longer international, but global-evolutionary level. The theory and practice of such a reconstruction can be designated by the category of (...)
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  14.  22
    Tracing Long-term Value Change in (Energy) Technologies: Opportunities of Probabilistic Topic Models Using Large Data Sets.E. J. L. Chappin, I. R. van de Poel & T. E. de Wildt - 2022 - Science, Technology, and Human Values 47 (3):429-458.
    We propose a new approach for tracing value change. Value change may lead to a mismatch between current value priorities in society and the values for which technologies were designed in the past, such as energy technologies based on fossil fuels, which were developed when sustainability was not considered a very important value. Better anticipating value change is essential to avoid a lack of social acceptance and moral acceptability of technologies. While value change can be studied historically and qualitatively, we (...)
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  15.  29
    Bataille's Peak: Energy, Religion, and Postsustainability.Allan Stoekl - 2007 - University of Minnesota Press.
    As the price of oil climbs toward $100 a barrel, our impending post-fossil fuel future appears to offer two alternatives: a bleak existence defined by scarcity and sacrifice or one in which humanity places its faith in technological solutions with unforeseen consequences. Are there other ways to imagine life in an era that will be characterized by resource depletion? The French intellectual Georges Bataille saw energy as the basis of all human activity--the essence of the human--and he envisioned a society (...)
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  16.  17
    MAC Layer Energy Consumption and Routing Protocol Optimization Algorithm for Mobile Ad Hoc Networks.Yaohua Chen & Waixi Liu - 2021 - Complexity 2021:1-12.
    Mobile ad hoc network is a network composed of mobile terminals without infrastructure. Due to its fast-networking ability, it is widely used in smart cities, car networking, military, agriculture, medicine, and other fields. Routing technology is a key technology in the field of MANET. The energy consumption is optimized through the technical network simulator NS-3, and the nodes in the MANET routing protocol can accurately simulate the problem, thereby optimizing the MAC layer of important research tools. This article (...)
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  17. Report of the UNESCO Conference on Ethics of Energy Technologies: Energy Flow, Environment and Ethical Implications for Meat Production.Robert Kanaly & Darryl Macer - 2008 - Eubios Journal of Asian and International Bioethics 18 (5):143-148.
     
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  18. Energy, risks, and metatechnology.Luciano Floridi - 2011 - Philosophy and Technology 24 (2):89-94.
    Technologies lower constraints and expand affordances. As a consequence, they tend to redesign the corresponding space of risks in which agents operate and interact. This paper analyses the concept of metatechnological risk from an ethical perspective, arguing that such an approach is necessary in order to mitigate future global energy crises.
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  19.  34
    Technology and Modality.Hans Poser - 2008 - Proceedings of the Xxii World Congress of Philosophy 48:49-55.
    Modal concepts as possibility, necessity, contingency and reality belong to the most important means of reflection. They constitute philosophical systems - but they are not used in a systematic way to characterize technology. The central ontological problem consists in the fact that technology is based on new ideas, which at the beginning are a mere possibility, because the intended artifacts and processes never existed up to that moment. Even the blueprint expresses a possibility. But these possibilities must be (...)
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  20.  18
    The Role of Deployment Policies in Fostering Innovation for Clean Energy Technologies.Joern Hoppmann - 2015 - Business and Society 54 (4):540-558.
    In recent years, governments in a large number of countries have introduced so-called deployment policies to foster the diffusion of clean energy technologies. While there is little doubt that these demand-side measures have been very effective in raising the share of clean electricity generation, currently, much less is known about how deployment policies affect—and are affected by—technological innovation beyond the mere diffusion of existing technologies. Against this backdrop, this dissertation abstract and commentary presents the dissertation work of Dr. Joern Hoppmann. (...)
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  21.  21
    Climate Change and Global Energy Security: Technology and Policy Options.Marilyn A. Brown & Benjamin K. Sovacool - 2011 - MIT Press.
    An exploration of commercially available technologies that can enhance energy security and address climate change and public policy options crucial to their adoption.
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  22.  7
    Assessing Our Ability to Design and Plan Green Energy Technologies.Willem H. Vanderburg - 2011 - Bulletin of Science, Technology and Society 31 (4):251-255.
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  23. Report of the UNESCO launch conference for the project Ethics of Energy Technologies in Asia and the Pacific.Darryl Macer & Anna Engwerda-Smith - 2008 - Eubios Journal of Asian and International Bioethics 18 (1):2-13.
     
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  24.  8
    Extractive Technologies and Civic Networks’ Fight for Sustainable Development.Mikhail A. Molchanov - 2011 - Bulletin of Science, Technology and Society 31 (1):55-67.
    This article describes the fight of transnational civic networks to influence business development strategies and counter the threats to environmental and labor rights posed by the construction and exploitation of the Baku-Tbilisi-Ceyhan (BTC) oil pipeline in Transcaucasia. The article starts by discussing the role of civil society in the global struggle for sustainable development. Then a brief overview of the geopolitical significance of the Transcaucasian-Caspian region in today’s oil and gas markets is presented. The case study looks at how the (...)
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  25.  15
    Hydrogen Highways: Lessons on the Energy Technology-Policy Interface.Bryan Haney, Daniel Tobin, John Byrne & Alex Waegel - 2006 - Bulletin of Science, Technology and Society 26 (4):288-298.
    The hydrogen economy has received increasing attention recently. Common reasons cited for investigating hydrogen energy options are improved energy security, reduced environmental impacts, and its contribution to a transition to sustainable energy sources. In anticipation of these benefits, national and local initiatives have been launched in the United States, creating pilot “roadmaps” and technology partnerships to explore hydrogen economy platforms. Although hydrogen can provide several positive improvements over a carbon- or uranium-based energy system, several problems are also likely. As (...)
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  26.  65
    Atomic Technologies and Nuclear Safety Practices in Spain During the 1960sNukleartechnologien und Sicherheitsmaßnahmen für Kernkraftwerke in Spanien während der 1960er Jahre. [REVIEW]Ana Romero de Pablos - 2022 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 30 (2):197-221.
    The acquisition of a nuclear power reactor from the North American company Westinghouse in 1964 not only brought atomic practices and knowledge to Spain but also introduced new methods of industrial organization and management, as well as regulations created by organizations such as the US Atomic Energy Commission and the International Atomic Energy Agency. This article analyzes the history of the knowledge, regulations and experimental practices relating to radiation safety and protection that traveled with this reactor to an industrial space: (...)
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  27.  6
    Technological, Energy, and Organizational Limits to Material Progress: A Historical Perspective.James Lemon - 2002 - Bulletin of Science, Technology and Society 22 (4):297-317.
    This article examines the social, technological, and energy limits to growth from a historical perspective. Various suggestions to surmount these limits are evaluated and found to be wanting, especially in the face of a rapidly evolving energy crisis as the era of oil comes to an end. It concludes that there are genuine reasons to be concerned about the human prospect.
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  28.  76
    The new technology and its human impact.Umberto Colombo - 1989 - World Futures 27 (1):25-32.
    In the years that have passed since publication of the Club of Rome's seminal report "Limits to Growth," the issues raised in terms of development, resource use and the environment have become ever more pressing. The potential of advances in science and technology to affect all aspects of life, including development, was then little understood. Today's unparalleled burst in scientific and technological creativity has given new options and opportunities to the world economic system. Central to this process is a (...)
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  29. Reflections on the Reversibility of Nuclear Energy Technologies.Jan Peter Bergen - 2017 - Dissertation, Delft University of Technology
    The development of nuclear energy technologies in the second half of the 20th century came with great hopes of rebuilding nations recovering from the devasta-tion of the Second World War or recently released from colonial rule. In coun-tries like France, India, the USA, Canada, Russia, and the United Kingdom, nuclear energy became the symbol of development towards a modern and technologically advanced future. However, after more than six decades of experi-ence with nuclear energy production, and in the aftermath of the (...)
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  30. Nuclear Energy, Risk, and Emotions.Sabine Roeser - 2011 - Philosophy and Technology 24 (2):197-201.
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  31.  7
    Green Technologies and Innovation for a Sustainable Future.Dr Wei Chen - 2023 - Journal of Philosophical Criticism 6 (1):69-81.
    _ This scholarly article explores the pivotal role of green technologies and innovation in shaping a sustainable future. With the growing concern over environmental degradation and climate change, there is an increasing need for transformative solutions. This article investigates the current landscape of green technologies, their potential impact on sustainability, and the role of innovation in driving positive change. By examining case studies and emerging trends, it aims to provide insights into the promising avenues for creating a more environmentally conscious (...)
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  32.  30
    Alternative Forms of Energy Production and Political Reconfigurations: Exploring Alternative Energies as Potentialities of Collective Reorganization.Yannick Rumpala - 2017 - Bulletin of Science, Technology and Society 37 (2):85-96.
    To a large extent and one that is highly structuring, energy choices that are made in a society are political choices. This article aims at studying how these choices can be redirected by technological developments associated with renewable energy, thus contributing to a redistribution of opportunities and correspondingly to social reorganizations. In order to show that the development of alternative energies not only depends on technological advances but can also, in the process, reveal political potentialities, three steps are proposed. The (...)
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  33.  6
    U.S. Energy Policy and U.S. Foreign Policy in the 1980s: Report of the Atlantic Council's Energy Policy Committee.John E. Gray, Henry H. Fowler & Joseph W. Harned - 1988 - Upa.
    Originally published by Ballinger, this book is a result of an Atlantic Council study of U.S. international relationships on energy. It examines the uncertainties of a political, strategic, economic, and technological nature that are involved in energy supply, as well as the unavoidable certainty of finite resources.
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  34.  37
    Analyzing the Role of Values and Ideals in the Development of Energy Systems: How Values, Their Idealizations, and Technologies Shape Political Decision-Making.Joost Alleblas - 2024 - Science and Engineering Ethics 30 (2):1-21.
    This study examines an important aspect of energy history and policy: the intertwinement of energy technologies with ideals. Ideals play an important role in energy visions and innovation pathways. Aspirations to realize technical, social, and political ideals indicate a long-term commitment in the design of energy systems, distinguishable from commitment to other abstract goals, such as values. This study offers an analytical scheme that could help to conceptualize these differences and their impact on energy policy. In the proposed model, two (...)
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  35.  35
    Wind Energy in the 21st Century: Economics, Policy, technology and the Changing Electric Industry. [REVIEW]Daniel Weisser - 2003 - Environmental Values 12 (3):405-407.
  36.  43
    Collaborative Research in Energy Efficiency and Renewable Energy: Evidence From 5 Years of US-Russian Research Cooperation.Thomas Wolfgang Thurner & Liliana Proskuryakova - 2013 - Journal of Research Practice 9 (1):Article M4.
    We reviewed the output of research and innovation cooperation between Russia and the US, including publications and patents, in the four prospective areas of energy efficiency and renewable energy during 2007-2011. Joint US-Russia research groups appear to focus primarily on hydrogen energy (fuel cells), followed by solar photovoltaics. The upcoming areas of smart grid and biofuels were left out entirely both from research and innovation collaboration. Russian patents in green energy technologies registered in the US are very low in comparison (...)
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  37.  10
    Nexus Between Financial Development, Renewable Energy Investment, and Sustainable Development: Role of Technical Innovations and Industrial Structure.Xing Dong & Nadeem Akhtar - 2022 - Frontiers in Psychology 13.
    Significant challenges confronting China include reducing carbon emissions, dealing with the resulting problems, and meeting various requirements for long-term economic growth. As a result, the shift in industrial structure best reflects how human society utilizes resources and impacts the environment. To meet China's 2050 net-zero emissions target, we look at how technological innovations, financial development, renewable energy investment, population age, and the economic complexity index all play a role in environmental sustainability in China. Analyzing short- and long-term relationships using ARDL (...)
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  38.  26
    Technology Topic Identification and Trend Prediction of New Energy Vehicle Using LDA Modeling.Renjie Hu, Wencong Ma, Weiqiang Lin, Xiude Chen, Zuchang Zhong & Chuhong Zeng - 2022 - Complexity 2022:1-20.
    As new energy vehicle is the future of automobile development, it is of great significance to dig deeper into the technical topics and development trends of new energy vehicles for accurately understanding the technical trends of the new energy vehicle industry, grasping development opportunities, and scientifically formulating strategic plans. This paper takes the patent texts in the field of new energy vehicles from 2000 to 2020 in the patent database of CNKI as the data source, identifies 25 technical topics implied (...)
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  39.  19
    The Postmodern Adventure: Science, Technology, and Cultural Studies at the Third Millennium.Steven Best & Douglas Kellner - 2001 - Guilford Press.
    Massive geopolitical shifts and dramatic developments in computerization and biotechnology are heralding the transformation from the modern to the postmodern age. We are confronted with altered modes of work, communication, and entertainment; new postindustrial and political networks; novel approaches to warfare; genetic engineering; and even cloning. This compelling book explores the challenges to theory, politics, and human identity that we face on the threshold of the third millennium. It follows on the success of Best and Kellner s two previous books: (...)
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  40.  60
    Reading Science, Technology and Education: A Tradition Dating back to Science into the History and Historiography.Raffaele Pisano, Rémi Franckowiak & Abdelakader Anakkar - 2017 - Transversal: International Journal for the Historiography of Science 3:77-97.
    In this paper, we present an interdisciplinary discussion on the relations between Science–Technology Education and Culture both historical standpoint and nowadays. The idea that a human mind can produce an intellectual revolution within science and its approaches strongly crossed like a paradigm both in the history of sciences and disciplines–literatures : but what about its social impact and science mission, as well? To describe the impact of the disseminated knowledge is a consequent aim. A case study on energy conceptualization (...)
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  41.  25
    The United States and Alternative Energies since 1980: Technological Fix or Regime Change?David E. Nye - 2014 - Theory, Culture and Society 31 (5):103-125.
    Awareness of global warming has been widespread for two decades, yet the American political system has been slow to respond. This essay examines, first, political explanations for policy failure, focusing at the federal level and outlining both short-term partisan and structural explanations for the stalemate. The second section surveys previous energy regimes and the transitions between them, and policy failure is explained by the logic of Thomas Hughes’s ‘technological momentum’. The third section moves to an international perspective, using the Kaya (...)
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  42.  5
    Gender Issues in Energy Policy and Pricing.GenJyoti K. Parikh - 1996 - Bulletin of Science, Technology and Society 16 (3):116-121.
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  43.  32
    Rural Energy Modeling and Planning: A Review on Tools and Methodology.Jukka V. Paatero & Aditya Poudyal - 2013 - Bulletin of Science, Technology and Society 33 (5-6):191-197.
    Energy system planning becomes essential in order to match demand and supply, where cost minimization is a primary objective. In addition, it is also of great significance in assessing the proper mix of energy sources so that energy systems meet the given load profile in a most efficient and cost-effective way. Lately, climate change has brought an increased amount of challenge for energy systems planners. As a result, there are varieties of planning methods and tools available today, either commercially or (...)
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  44.  7
    Addressing Energy Poverty Through Smarter Technology.Eddie Oldfield - 2011 - Bulletin of Science, Technology and Society 31 (2):113-122.
    Energy poverty is a key detriment to labor productivity, economic growth, and social well-being. This article presents a qualitative review of literature on the potential role of intelligent communication technology, web-based standards, and smart grid technology to alleviate energy costs and improve access to clean distributed energy in developed and developing countries. It puts forward the argument that energy poverty can be addressed through the use of smarter technologies— which inform decisions we make as individual and corporate citizens, (...)
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  45.  15
    Information technology for monitoring of efficiency of energy consumption in technological systems.Bohdanov O. V. & Pleskach B. M. - 2019 - Artificial Intelligence Scientific Journal 24 (1-2):60-68.
    The article proposes an approach to monitoring the efficiency of consumption of energy resources in technological systems, which is based on observing the precedents of stationary energy consumption. This approach allows us to adapt to the local conditions of the technological system and to detect in a timely manner any disturbances of the technological process that lead to unexpected energy losses. The peculiarity of energy monitoring based on observing and fixing the precedents of stationary conditions of energy consumption consists of (...)
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  46.  29
    An Assessment of the Association Between Renewable Energy Utilization and Firm Financial Performance.Hyunju Shin, Alexander E. Ellinger, Helenka Hopkins Nolan, Tyler D. DeCoster & Forrest Lane - 2018 - Journal of Business Ethics 151 (4):1121-1138.
    Contemporary research highlights multiple societal and environmental benefits in addition to potential economic advantages associated with renewable energy utilization. As federal and state incentives for investments in RE technologies become more prevalent, RE sources represent increasingly viable alternatives to established fossil fuel energy. RE utilization is recognized as a key component of “green” product innovation that helps firms reduce the environmental impact of production processes and diminish their ecological footprints and energy consumption. Yet, despite consistent evidence that corporate sustainability initiatives (...)
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  47.  41
    Between Reason and Experience: Essays in Technology and Modernity.Andrew Feenberg & Michel Callon - 2010 - MIT Press.
    The technologies, markets, and administrations of today's knowledge society are in crisis. We face recurring disasters in every domain: climate change, energy shortages, economic meltdown. The system is broken, despite everything the technocrats claim to know about science, technology, and economics. These problems are exacerbated by the fact that today powerful technologies have unforeseen effects that disrupt everyday life; the new masters of technology are not restrained by the lessons of experience, and accelerate change to the point where (...)
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  48.  71
    On the Teaching of Science, Technology and International Affairs.Charles Weiss - 2012 - Minerva 50 (1):127-137.
    Despite the ubiquity and critical importance of science and technology in international affairs, their role receives insufficient attention in traditional international relations curricula. There is little literature on how the relations between science, technology, economics, politics, law and culture should be taught in an international context. Since it is impossible even for scientists to master all the branches of natural science and engineering that affect public policy, the learning goals of students whose primary training is in the social (...)
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  49.  8
    Wind Power in Australia: Overcoming Technological and Institutional Barriers.Andrea Bunting & Gerard Healey - 2008 - Bulletin of Science, Technology and Society 28 (2):115-127.
    Until recently, Australia had little installed wind capacity, although there had been many investigations into its potential during the preceding decades. Formerly, state-owned monopoly utilities showed only token interest in wind power and could dictate the terms of energy debates. This situation changed in the late 1990s: Installed wind capacity began growing rapidly following the introduction of supportive renewable energy policies and the restructuring of the electricity industry. However, wind farms still provide only 1% of Australia's electricity, the future of (...)
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  50. Wind, energy, landscape: reconciling nature and technology.Gordon G. Brittan - 2001 - Philosophy and Geography 4 (2):169-184.
    Despite the fact that they are in most respects environmentally benign, electricity-generating wind turbines frequently encounter a great deal of resistance. Much of this resistance is aesthetic in character; wind turbines somehow do not "fit" in the landscape. On one view, landscapes are beautiful to the extent that they are "scenic," well-balanced compositions. But wind turbines introduce a discordant note, they are out of "scale." On another view, landscapes are beautiful if their various elements form a stable and integrated organic (...)
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