Results for 'sustainable technology'

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  1. Technology as Mimesis: Biomimicry as Regenerative Sustainable Design, Engineering, and Technology.Vincent Blok - 2022 - Techné: Research in Philosophy and Technology 26 (3):426-446.
    In this article, we investigate how to explain the difference between traditional design, engineering, and technology—which have exploited nature and put increasing pressure on Earth’s carrying capacity since the industrial revolution—and biomimetic design—which claims to explore nature’s sustainable solutions and promises to be regenerative by design. We reflect on the concept of mimesis. Mimesis assumes a continuity between the natural environment as a regenerative model and measure for sustainable design that is imitated and reproduced in biomimetic design, (...)
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  2. May Artificial Intelligence take health and sustainability on a honeymoon? Towards green technologies for multidimensional health and environmental justice.Cristian Moyano-Fernández, Jon Rueda, Janet Delgado & Txetxu Ausín - 2024 - Global Bioethics 35 (1).
    The application of Artificial Intelligence (AI) in healthcare and epidemiology undoubtedly has many benefits for the population. However, due to its environmental impact, the use of AI can produce social inequalities and long-term environmental damages that may not be thoroughly contemplated. In this paper, we propose to consider the impacts of AI applications in medical care from the One Health paradigm and long-term global health. From health and environmental justice, rather than settling for a short and fleeting green honeymoon between (...)
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  3.  45
    Shaping the Future: Sustainability and Technology at the Crossroads of Arts and Science.Harald Pechlaner, Michael de Rachewiltz, Maximilian Walder & Elisa Innerhofer (eds.) - 2024 - Llanelli: Graffeg.
    The exacerbating energy crises that are wreaking havoc around the globe, as well as the apparent effects of climate change, have spurred, amongst other causes, the concerted orientation towards amelioration aims such as the United Nations Sustainable Development Goals (SDGs) and environmental, social, and corporate governance (ESG). Although often presented as not only the solution to these global problems (if adopted wholesale), they are increasingly being used as a vehicle to traffic the centralisation of power and exacerbate growing authoritarian (...)
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  4. The Information Society: Technological, socio-economic and cultural aspects - Prolegomena for a sustainability-oriented ethics of ICTs.Jose Carlos Cañizares-Gaztelu - 2018 - Dissertation, University of Twente - Faculty of Behavioral and Management Sciences
    This thesis studies the enabling properties of ICT and their effects and potential for social change, and prepares the ground for a sustainability-oriented ethico-political assessment of this technology. It primarily builds on interdisciplinary scholarship to describe and explain the multifaceted co-evolution between the global deployment of ICTs and the emergence of the Information Society, understood as a socioeconomic restructuring of capitalism. Beyond the role of ICTs in this regime transition, the thesis delivers other philosophical insights about crucial aspects of (...)
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  5. The Role of the Practice of Excellence Strategies in Education to Achieve Sustainable Competitive Advantage to Institutions of Higher Education-Faculty of Engineering and Information Technology at Al-Azhar University in Gaza a Model.Mazen J. Al Shobaki & Samy S. Abu Naser - 2017 - International Journal of Digital Publication Technology 1 (2):135-157.
    This study aims to look at the role of the practice of excellence strategies in education in achieving sustainable competitive advantage for the Higher educational institutions of the faculty of Engineering and Information Technology at Al-Azhar University in Gaza, a model, and the study considered the competitive advantage of educational institutions stems from the impact on the level of each student, employee, and the institution. The study was based on the premise that the development of strategies for excellence (...)
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  6. Buying Time – Using Nanotechnologies and Other Emerging Technologies For A Sustainable Future.Thomas Vogt - 2010 - In Ulrich Fiedeler, Christopher Coenen, Sarah E. Davies & Arianna Ferrari (eds.), Understanding Nanotechnology. AKA Verlag. pp. 43-60.
    Abstract: Science and emerging technologies should not be predominantly tasked with furnishing us with more sustainable societies. Continuous short-term technological bail outs without taking into account the longer socio-cultural incubation times required to transition to ‘weakly sustainable’ economies squander valuable resources and time. Emerging technologies need to be deployed strategically to buy time in order to have extended political, social and ethical discussions about the root-causes of unsustainable economies and minimize social disruptions on the path towards global sustainability. (...)
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  7. Earthing Technology.Vincent Blok - 2017 - Techné: Research in Philosophy and Technology (2/3).
    In this article, we reflect on the conditions under which new technologies emerge in the Anthropocene and raise the question of how to conceptualize sustainable technologies therein. To this end, we explore an eco-centric approach to technology development, called biomimicry. We discuss opposing views on biomimetic technologies, ranging from a still anthropocentric orientation focusing on human management and control of Earth’s life-support systems, to a real eco-centric concept of nature, found in the responsive conativity of nature. This concept (...)
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  8. Socially Good AI Contributions for the Implementation of Sustainable Development in Mountain Communities Through an Inclusive Student-Engaged Learning Model.Tyler Lance Jaynes, Baktybek Abdrisaev & Linda MacDonald Glenn - 2023 - In Francesca Mazzi & Luciano Floridi (eds.), The Ethics of Artificial Intelligence for the Sustainable Development Goals. Springer Verlag. pp. 269-289.
    AI is increasingly becoming based upon Internet-dependent systems to handle the massive amounts of data it requires to function effectively regardless of the availability of stable Internet connectivity in every affected community. As such, sustainable development (SD) for rural and mountain communities will require more than just equitable access to broadband Internet connection. It must also include a thorough means whereby to ensure that affected communities gain the education and tools necessary to engage inclusively with new technological advances, whether (...)
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  9. Sustainable Climate Engineering Innovation and the Need for Accountability.Marianna Capasso & Steven Umbrello - 2023 - In Henrik Skaug Sætra (ed.), Technology and Sustainable Development: The Promise and Pitfalls of Techno-Solutionism. Routledge. pp. 1-21.
    Although still highly controversial, the idea that we can use technology to radically alter our environment in order to mitigate the climate challenges we now face is becoming an ever more discussed approach. This chapter takes up a specific climate engineering technology, carbon capture, usage, and storage (CCUS), and highlights how this technology works and how its governance still needs further work to ensure that it is aligned to the ideal of sustainable development. Given that climate (...)
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  10. A Sustainability Improvement Strategy of Interconnected Data Centers Based on Dispatching Potential of Electric Vehicle Charging Stations.Xihao Wang, Xiaojun Wang, Yuqing Liu, Chun Xiao, Rongsheng Zhao, Ye Yang & Zhao Liu - 2022 - Sustainability 14 (11):6814.
    With the rapid development of information technology, the electricity consumption of Internet Data Centers (IDCs) increases drastically, resulting in considerable carbon emissions that need to be reduced urgently. In addition to the introduction of Renewable Energy Sources (RES), the joint use of the spatial migration capacity of IDC workload and the temporal flexibility of the demand of Electric Vehicle Charging Stations (EVCSs) provides an important means to change the carbon footprint of the IDC. In this paper, a sustainability improvement (...)
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  11. Sustainability Means Ethics and This Is a Cultural Revolution.Michel Puech - 2011 - In Almlund Pernille (ed.), Rethinking Climate Change Research: Clean-Technology, Culture and Communication. Ashgate.
    The sustainability challenge is to match cultural and natural change. Instead of a political or institutional approach, this implies a cultural revolution in the domain of individual ethics. I defend this ethical priority in sustainability through an a posteriori argument concerning institutional failure and through a conceptual analysis of sustainability as self-reliance and its consequences. Sustainability is not a challenge for our institutions directly. It is a challenge for our lifestyle, our personal lifestyle and our social lifestyle (institutional, economical and (...)
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  12. From children’s literature to sustainability science, and young scientists for a more sustainable Earth.Quan-Hoang Vuong - 2020 - Journal of Sustainability Education 23 (4):3-14.
    This essay evolved from my keynote address for the plenary session of the ASEAN Conference for Young Scientists 2019 organized by the ASEAN Secretariat, Vietnam Ministry of Science and Technology—whose main theme is sustainability science—organized at Hanoi-based Phenikaa University. It has also benefited from my advisory work for the International Union for Conservation of Nature (IUCN).
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  13.  63
    “Environmental Sustainability Needs Humanities” Topical Collection on Discover Sustainability: Aiding the social transitions toward an eco-surplus utopia.A. I. S. D. L. Team - 2024 - Sm3D Portal.
    Committing to contribute to promoting the 11th progressive cultural element – environmental-healing value – and building the eco-surplus culture for sustainable development, the AISDL Team (represented by Drs. Minh-Hoang Nguyen and Quan-Hoang Vuong) has collaborated with Discover Sustainability to launch “Environmental Sustainability Needs Humanities” Topical Collection. In contributing to the generation of knowledge that aids the social transitions toward an eco-surplus utopia, the Topical Collection welcomes various types of articles across disciplines, including Research, Reviews, Perspectives, Comments, Brief Communications, Case (...)
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  14. Technology, Recommendation and Design: On Being a 'Paternalistic' Philosopher.Pak-Hang Wong - 2013 - Science and Engineering Ethics 19 (1):27-42.
    Philosophers have talked to each other about moral issues concerning technology, but few of them have talked about issues of technology and the good life, and even fewer have talked about technology and the good life with the public in the form of recommendation. In effect, recommendations for various technologies are often left to technologists and gurus. Given the potential benefits of informing the public on their impacts on the good life, however, this is a curious state (...)
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  15. Sustainable International Trade in Agricultural Goods: Emerging Markets Perspectives.Nataliia V. Stukalo, Nataliya O. Krasnikova & Olena V. Dzyad - 2019 - Journal of Social Sciences Research 5 (7):1096-1105.
    Preservation of the environment, the sphere of the vital activity of the population, cultural heritage, promotion of the healthy lifestyle movement, the implementation of the “green†and resource saving technologies create more active demand for organic goods in the international trade. The ecological, social, economic and institutional merits of organic goods compared with traditional and genetically modified goods as well as the high pace of the growth of the international trade in organic agricultural goods enhance their role in the achievement (...)
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  16. Questioning Technology's Role in Environmental Ethics: Weak Anthropocentrism Revisited.Shane Epting - 2010 - Interdisciplinary Environmental Review 11 (1):18-26.
    Environmental ethics has mostly been practiced separately from philosophy of technology, with few exceptions. However, forward thinking suggests that environmental ethics must become more interdisciplinary when we consider that almost everything affects the environment. Most notably,technology has had a huge impact on the natural realm. In the following discussion, the notions of synthesising philosophy of technology and environmental ethics are explored with a focus on research, development, and policy.
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  17.  88
    The Concept of Sustainable Retreat as an Answer to Anthropocene Challenges.Richard Sťahel - 2019 - In João Ribeiro Mendes & Bernhard Josef Sylla (eds.), EIBEA 2019. Encontro Iberoamericano de Estudos do Antropoceno. Atas. CEPS. pp. 195-2015.
    Critical examination of possible socio-political Anthropocene consequences leads to the conclusion that the sustainable development concept is not an adequate answer for current threats and risks. An effort to implement the sustainable development concept can even make climate changes and other forms of nature devastation worse, as it turns out on ongoing greenhouse gas concentrations growth in the atmosphere, despite obligations that result to all states of the world from Paris agreement. The climate change rate and range of (...)
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  18. Sustaining Native Entrepreneurship in South African Townships: the Start-up Agenda.Josephat Mukwarami & Robertson K. Tengeh - 2017 - ACTA UNIVERSITATIS DANUBIUS Economica 4 (13):331-345.
    Faced with enormous unemployment, the South African government enacted pro-SMME policies. It was assumed that such policies would ignite broad-based growth within the SMMEs cluster, regardless of the sector. However, the current evidence suggests that these laudable efforts have not benefited the poorest of the poor nor have they aroused and sustained entrepreneurship in certain quarters. Using the spaza shop as the focus and two prominent townships as the locus, this paper sought to understand the factors that under mind the (...)
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  19. The Sustainability and Challenges of Business Incubators in the Western Cape Province, South Africa.Thobekani Lose & Robertson K. Tengeh - 2015 - Sustainability 7:14344-14357.
    Notwithstanding the growing interest in business incubation programmes and the benefits derived from such programmes, the path is beset by numerous challenges. This paper investigates the challenges faced by business incubators (BIs) as they strive to support their clients. The study utilized a qualitative approach to collect data by way of interviews to gain in-depth knowledge and understanding of the concept and challenges of business incubators. The data were collected using structured and unstructured in-depth personal interviews, which were carried out (...)
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  20. Philosophy of Technology in the Digital Age: The datafication of the World, the homo virtualis, and the capacity of technological innovations to set the World free.Blok Vincent - 2023 - Wageningen: Wageningen University.
    I will start my inaugural address by outlining the main argument of my lecture. First, I will identify the phenomenon that philosophers of technology research. This subject matter, in my view, consists not only of ethical issues that disruptive technologies raise but also of the disruption of the world in which we live and act by these technologies. I will illustrate this disruption by reflecting on the convergence of the physical and the virtual in the digital world, which is (...)
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  21. Social, Technological and Health Innovation: Opportunities and Limitations for Social Policy, Health Policy, and Environmental Policy.Andrzej Klimczuk, Magdalena Klimczuk-Kochańska & Jorge Felix (eds.) - 2022 - Lausanne: Frontiers Media.
    This Research Topic focuses on both strengths and weaknesses of social innovation, technological innovation, and health innovation that are increasingly recognized as crucial concepts related to the formulation of responses to the social, health, and environmental challenges. Goals of this Research Topic: (1) to identify and share the best recent practices and innovations related to social, environmental and health policies; (2) to debate on relevant governance modes, management tools as well as evaluation and impact assessment techniques; (3) to discuss dilemmas (...)
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  22. The Precautionary Principle as a Framework for a Sustainable Information Society.Claudia Som, Lorenz M. Hilty & Andreas R. Köhler - 2009 - Journal of Business Ethics 85 (S3):493 - 505.
    The precautionary principle (PP) aims to anticipate and minimize potentially serious or irreversible risks under conditions of scientific uncertainty. Thus it preserves the potential for future developments. It has been incorporated into many international treaties and pieces of national legislation for environmental protection and sustainable development. In this article, we outline an interpretation of the PP as a framework of orientation for a sustainable information society. Since the risks induced by future information and communication technologies (ICT) are social (...)
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  23. Prospects for sustainable development and ensuring the security of economic systems in the new geostrategic realities.Maksym Bezpartochnyi, Igor Britchenko & Olesia Bezpartochna - 2023 - Kosice: Vysoká škola bezpečnostného manažérstva v Košiciach.
    The authors of the scientific monograph have come to the conclusion that ensuring sustainable development and security of economic systems in the new geostrategic realities requires the use of mechanisms for state protection of national economic interests, innovative outsourcing and digital technologies, and environmental protection. Basic research focuses on assessment the economic security of insurance companies, logistics processes, farms, healthcare organisations, retail and e-commerce, and tourist destinations. The research results have been implemented in the different decision-making models in the (...)
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  24. Development and Environmental Sustainability in Nigeria: An African Perspective.Brian Ifere Njar & David Abim Enagu - 2019 - GNOSI: An Interdisciplinary Journal of Human Theory and Praxis 2 (1).
    This research titled “Development and Environment Sustainability in Nigeria: An African Perspective” examines the effect of development on the African environment. Recent trends and tenets of development are accredited to technological advancements infrastructures and industrialization. Thus, development is respected within the light of social and economic productivity and mostly applauded within the ambiance of consumable scientific, architectural, agricultural and engineering, etc. Notably, the afore-mentioned directly affects the environment and this has become a conundrum to both living and non-living organisms within (...)
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  25. Technocracy in Science and Technology Policy.Alireza Mansouri - 2016 - Persian Journal on Strategy for Culture 9 (34):25-43.
    Development in all of its stages, from organizing the vision and strategy to implementing plans, requires policy-making. We show that the division of labor and specialization of sciences and some philosophical doctrines cause the emergence of technocracy in policies. Technocracy makes development not happen in the direction of public welfare. For this reason, for sustainable development, we need institutions, strategies, and philosophical contexts that provide a democratic ground for the possibility of criticizing and reforming policies.
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  26. Editorial: Social, Technological and Health Innovation: Opportunities and Limitations for Social Policy, Health Policy, and Environmental Policy.Andrzej Klimczuk, Magdalena Klimczuk-Kochańska & Jorge Felix - 2022 - Frontiers in Political Science 4:1–4.
    Innovation is progressively needed in responding to global challenges. Moreover, the increasing complexity of challenges implies demand for the usage of multisectoral and policy mix approaches. Wicked problems can be tackled by "integrated innovation" that combines the coordinated implementation of social, technological, and health innovation co-created by entities of the public sector, the private sector, the non-governmental sector, and the informal sector. This Research Topic focuses on filling the knowledge gaps about the selected types of innovation. First, regarding social innovation (...)
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  27. Technology and Newer Innovations All Involving Science.Md Majidul Haque Bhuiyan - manuscript
    Sustainable Finance is the procedure of taking Environmental, Social, and Governance (ESG) factors into consideration when making financial investment decisions (Zheng et al., 2021). Changing climate, moderation, adaptation, and the larger environment are all causes of environmental issues. Conservation of biodiversity, pollution avoidance, and circular economics are all part of it. Labor relations, investments in human capital and communities, and human rights challenges are examples of social factors. The governance of governmental and non - governmental businesses, including management structures, (...)
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  28. Nature, Gender and Technology: The Ontological Foundations of Shiva’s Ecofeminist Philosophy.Gregory Morgan Swer - 2020 - Comparative and Continental Philosophy 12 (2):1-14.
    This paper addresses the generally neglected topic of Vandana Shiva’s ontology. It is argued that there is a significant ontological component to Shiva’s ecofeminist philosophy and that this ontology underpins her ecological and feminist views. Shiva’s ontology provides a standpoint from which she can critique dichotomous ontologies of domination and oppression, and from which she can identify life-sustaining modes of existence. It is argued that this ontology is implicit in most of her works and is best grasped through the analysis (...)
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  29. From children’s literature to sustainability science and youth in scientific research.Quan-Hoang Vuong - 2019 - ASEAN Conference for Young Scientists 2019 2019:01-13.
    As the future of human development increasingly hinges on the need for sustainable education and science, this essay re-examines the imminent threats to humankind and the relevance of achieving the United Nations’ Sustainable Development Goals (SDGs) to science-technology research among today’s young scientists. It also discusses some socio-political and economic challenges to achieving sustainability and argues that developing sustainability science is difficult but not impossible. The hope lies in our current efforts to build productive and creative scientific (...)
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  30. What's Wrong with Science and Technology Studies? What Needs to Be Done to Put It Right?Nicholas Maxwell - 2015 - In R. Pisano & D. Capecchi (eds.), A Bridge Between Conceptual Frameworks: Sciences, Society and Technology Studies. Springer.
    After a sketch of the optimism and high aspirations of History and Philosophy of Science when I first joined the field in the mid 1960s, I go on to describe the disastrous impact of "the strong programme" and social constructivism in history and sociology of science. Despite Alan Sokal's brilliant spoof article, and the "science wars" that flared up partly as a result, the whole field of Science and Technology Studies is still adversely affected by social constructivist ideas. I (...)
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  31. “Ecology and Technological Enframement: Cities, Networks and the COVID-19 Pandemic” (Alice Cortés as second author).Matthew Crippen - 2022 - In Reclaiming the City.
    Though past commentators have attacked cities as corrupt, dirty places, it is almost too obvious to need stating that a sustainable future depends on them. This is because most people live in cities and because the streamlined use of urban space brings a wide range of efficiencies. Simultaneously, urban living and associated technologies may impact psychology such that people see humans and their cities as outside of nature, which has been shown to reduce concern for the wellbeing of the (...)
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  32. Book Review of Roisin Lally's Sustainability in the Anthropocene. [REVIEW]Casey Rentmeester - 2020 - Journal of the Pacific Association for the Continental Tradition 3.
    Róisín Lally’s Sustainability in the Anthropocene provides a wealth of essays on the philosophical meanings and implications of renewable technologies, as well as glimpses of novel ways toward a sustainable future that integrate deeply meaningful ways of being for humans. The edited collection features some of the most reputable thinkers in the philosophy of technology, such as Don Ihde, Babette Babich, and Trish Glazebrook, as well as some newcomers with novel perspectives that need to be taken into consideration (...)
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  33. Techno-moral change through solar geoengineering: How geoengineering challenges sustainability.Benjamin Paul Hofbauer - 2022 - Prometheus:82 - 97.
    This article brings a new perspective to the ethical debate on geoengineering through stratospheric aerosol injection (SAI), incorporating the emerging techno-moral change scholarship into the discussion surrounding sustainability. The techno-moral change approach can help us understand different ways in which technology might shape society. First, it helps highlight how values and norms are interrelated. Second, it shows that techno-moral change can happen even if the technology is in no way realized. Through the introduction of two techno-moral vignettes, two (...)
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  34. Squaring the Circle: In Quest for Sustainability.Gennady Shkliarevsky - 2015 - Systems Research and Behavioral Science 32 (6):629-49.
    Development has been themain strategy in addressing the problemof sustainability since at least the mid-1980s. The results of this strategy have been mixed, if not disappointing. In their objections to this approach, critics frequently invoke constraints imposed by physical reality of which the most important one is entropy production. They question the belief that technological innovations are capable of solving the problem of sustainability. Is development the right response to this problem and is the current course capable of attaining sustainability? (...)
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  35. Rebound effects of progress in information technology.Lorenz M. Hilty, Andreas Köhler, Fabian Schéele, Rainer Zah & Thomas Ruddy - 2006 - Poiesis and Praxis 4 (1):19-38.
    Information technology (IT) is continuously making astounding progress in technical efficiency. The time, space, material and energy needed to provide a unit of IT service have decreased by three orders of magnitude since the first personal computer (PC) was sold. However, it seems difficult for society to translate IT’s efficiency progress into progress in terms of individual, organizational or socio-economic goals. In particular it seems to be difficult for individuals to work more efficiently, for organizations to be more productive (...)
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  36. Issues of shaping the students’ professional and terminological competence in science area of expertise in the sustainable development era.Olena Lavrentieva, Victoria Pererva, Oleksandr Krupskyi, Igor Britchenko & Sardar Shabanov - 2020 - The International Conference on Sustainable Futures: Environmental, Technological, Social and Economic Matters (ICSF 2020) 166 (2020):9.
    The paper deals with the problem of future biology teachers’ vocational preparation process and shaping in them of those capacities that contribute to the conservation and enhancement of our planet’s biodiversity as a reflection of the leading sustainable development goals of society. Such personality traits are viewed through the prism of forming the future biology teachers’ professional and terminological competence. The main aspects and categories that characterize the professional and terminological competence of future biology teachers, including terminology, nomenclature, term, (...)
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  37. ecomodernism and the libidinal economy: Towards a Critical Conception of Technology in the Bio‑Based Economy.Roel Veraart, Vincent Blok & Pieter Lemmens - 2023 - Philosophy and Technology.
    In this paper, we carry out a critical analysis of the concept of technology in the current design of the bio-based economy (BBE). Looking at the current status of the BBE, we observe a dominant focus on technological innovation as the principal solution to climatic instability. We take a critical stance towards this “ecomodernist” worldview, addressing its fundamental assumptions, and ofer an underarticulated explanation as to why a successful transition toward a sustainable BBE—i.e. one that fully operates within (...)
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  38. Epilogue: The Epistemic and Practical Circle in an Evolutionary, Ecologically Sustainable Society.Donato Bergandi - 2013 - In Bergandi, Donato (ed.), The Structural Links between Ecology, Evolution and Ethics The Virtuous Epistemic Circle. Springer. pp. 151-158.
    Abstract In a context of human demographic, technological and economic pressure on natural systems, we face some demanding challenges. We must decide 1) whether to “preserve” nature for its own sake or to “conserve” nature because nature is essentially a reservoir of goods that are functional to humanity’s wellbeing; 2) to choose ways of life that respect the biodiversity and evolutionary potential of the planet; and, to allow all this to come to fruition, 3) to clearly define the role of (...)
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  39. Reputation risks, value of losses and financial sustainability of commercial banks.Natalia Kunitsyna, Igor Britchenko & Igor Kunitsyn - 2018 - Entrepreneurship and Sustainability Issues 5 (4):943-955.
    Currently, under the conditions of permanent financial risks that hamper the sustainable economic growth in the financial sector, the development of evaluation and risk management methods both regulated by Basel II and III and others seem to be of special importance. The reputation risk is one of significant risks affecting reliability and credibility of commercial banks. The importance of reputation risk management and the quality of their assessment remain relevant as the probability of decrease in or loss of business (...)
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  40. (2009) Is human enhancement a sustainable agenda?Michel Puech - manuscript
    I try to find a path from recent philosophy of technology to the fundamental issues of sustainability - issues that I do not consider to be ultimate questions, but hints at the question of wisdom in a technological age. Basically, human enhancement involves a technophilic stance and a tendency to transhumanism. In contrast, sustainability issues are usually characterized by a moderate technophobic stance and a classical humanistic trend. But I believe that a new global set of common values is (...)
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  41. Path to the global sustainable development.Kirill Horoshilov - manuscript
    How would behave developed countries if they had “technologies of 22th century” And what is about developing countries?
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  42. How Could We Drink up the Sea? From Technological Nihilism to Dwelling in the Anthropocene.Casey Rentmeester - 2021 - Das Questoes 13 (1):12-29.
    Humans face wide ranging and global challenges in the Anthropocene, the most prominent of which is anthropogenic climate change. One initial pivot towards sustainability, particularly in my home country of the United States, has been to rely heavily on technological innovation powered most obviously by engineers. Using the climate activist Greta Thunberg's speech at the 2018 United Nations Climate Change Conference as my inspiration, I try to show how some of the technology based solutions only entrench what I call (...)
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  43. From language shift to language revitalization and sustainability. A complexity approach to linguistic ecology.Albert Bastardas-Boada - 2019 - Barcelona, Spain: Edicions de la Universitat de Barcelona.
    This book aims to contribute to the overall, integrated understanding of the processes of language contact and their evolution, be they the result of political or economic (dis)integrations or migrations or for technological reasons. Via an interdisciplinary, holistic approach, it also aims to aid the theoretical grounding of a unified, common sociolinguistic paradigm, based on an ecological and complexical perspective. This perspective is based on the fact that linguistic structures do not live in isolation from their social functions and must (...)
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  44. What motivates farmers to adopt low-carbon agricultural technologies? Empirical evidence from thousands of rice farmers in Hubei province, central China.Linli Jiang, Haoqin Huang, Surong He, Haiyang Huang & Yun Luo - 2022 - Frontiers in Psychology 13:983597.
    Low-carbon agriculture is essential for protecting the global climate and sustainable agricultural economics. Since China is a predominantly agricultural country, the adoption of low-carbon agricultural technologies by local farmers is crucial. The past literature on low-carbon technologies has highlighted the influence of demographic, economic, and environmental factors, while the psychological factors have been underexplored. A questionnaire-based approach was used to assess the psychological process underlying the adoption of low-carbon agricultural technologies by 1,114 Chinese rice farmers in this paper, and (...)
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  45. Mobile Money as a Sustainable Alternative for SMEs in Less Developed Financial Markets.Robertson K. Tengeh & Frank Sylvio Gahapa Talom - 2020 - Journal of Open Innovation: Technology, Market and Complexity 6 (16).
    Despite the many advantages that mobile money o ers to Small and Medium-sized Enterprises (SMEs) relative to traditional banking services, the majority of stakeholders of this platform have not yet maximised its use owing to several concerns not limited to trust, awareness, and even cost. To examine the factors justifying the adoption and usage of Mobile Money Services (MMS) among SMEs, the types of Mobile Money Services used by these SMEs, and the interdependences between these variables, this study adopted an (...)
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  46. Leading innovations and investments into the new energy technologies.Anetta Zielińska, Igor Britchenko & Piotr Jarosz - 2018 - Advances in Social Science, Education and Humanities Research. – Atlantis Press: Proceedings of the 2nd International Conference on Social, Economic and Academic Leadership (ICSEAL 2018) 217:320-324.
    This paper focuses on the novel and leading innovations and investments into the new energy technologies. Energy issues, including sustainability, energy security and energy dependency are probably one of the most crucial and critical issues that humanity must face at the moment. Recent global challenges, such as climate change and the rise of the “green” energy (represented by the increasing deployment of the renewable energy sources (RES)), as well as distributed energy generation and platform energy markets (e.g. peer-to-peer (P2P) markets (...)
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  47. The NET effect: Negative emissions technologies and the need–efficiency trade-off.Kian Mintz-Woo - 2023 - Global Sustainability 6:e5.
    Non-technical summary: -/- When developing and deploying negative emissions technologies (NETs), little attention has been paid to where. On the one hand, one might develop NETs where they are likely to contribute most to global mitigation targets, contributing to a global climate solution. On the other hand, one might develop NETs where they can help support development on a regional basis, justified by regional demands. I defend these arguments and suggest that they reflect the values of efficiency and responding to (...)
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  48. How Does Culture Connect and Contribute to the Sustainable Development? - A Literature Review.W. U. Chaoqun - unknown
    Today, the world is facing many global crises and challenges. In order to limit negative environmental and social impacts, human being had put forward the concept of sustainable development, set goals and taken actions to advance the process of sustainable development. However, scholars’ research on sustainable development mainly focuses on the three major aspects: economy, society and environment/ecology. Only a few articles talked about culture and sustainable development. In order to further promote the development of human (...)
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  49. The role of ontologies for sustainable, semantically interoperable and trustworthy EHR solutions.Bernd Blobel, Dipak Kalra, Marc Koehn, Ken Lunn, Peter Pharow, Pekka Ruotsalainen, Stefan Schulz & Barry Smith - 2009 - Studies in Health Technology and Informatics 150:953-957.
    As health systems around the world turn towards highly distributed, specialized and cooperative structures to increase quality and safety of care as well as efficiency and efficacy of delivery processes, there is a growing need for supporting communication and collaboration of all parties involved with advanced ICT solutions. The Electronic Health Record (EHR) provides the information platform which is maturing towards the eHealth core application. To meet the requirements for sustainable, semantically interoperable, and trustworthy EHR solutions, different standards and (...)
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  50. A Review of Data-Intensive Approaches for Sustainability: Methodology, Epistemology, Normativity, and Ontology.Vivek Anand Asokan - 2020 - Sustainability Science 15.
    With the growth of data, data-intensive approaches for sustainability are becoming widespread and have been endorsed by various stakeholders. To understand their implications, in this paper data-intensive approaches for sustainability will be explored by conducting an extensive review. The current data-intensive approaches are defined as an amalgamation of traditional data-collection methods, like surveys and data from monitoring networks, with new data-collection methods that involve new information communication technology. Based on a comprehensive review of the current dataintensive approaches for sustainability, (...)
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