Results for 'Solar Geoengineering'

142 found
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  1. 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 diametrically (...)
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  2. How to Argue about Solar Geoengineering.Britta Clark - 2023 - Journal of Applied Philosophy 1 (3):505-520.
    Should high‐income countries engage in solar geoengineering research and possible deployment? On the assumption that the speed of the energy transition will be insufficient to abate catastrophic climate impacts, research into solar geoengineering begins to look like a technically and socially feasible route to mitigate such impacts. But on the assumption that a rapid and relatively just energy transition is still within the realm of political possibility, research into solar geoengineering looks more like an (...)
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  3. Ethical and Technical Challenges in Compensating for Harm Due to Solar Radiation Management Geoengineering.Toby Svoboda & Peter Irvine - 2014 - Ethics, Policy and Environment 17 (2):157-174.
    As a response to climate change, geoengineering with solar radiation management has the potential to result in unjust harm. Potentially, this injustice could be ameliorated by providing compensation to victims of SRM. However, establishing a just SRM compensation system faces severe challenges. First, there is scientific uncertainty in detecting particular harmful impacts and causally attributing them to SRM. Second, there is ethical uncertainty regarding what principles should be used to determine responsibility and eligibility for compensation, as well as (...)
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  4. Geoengineering: A war on climate change?Andrew Lockley - 2016 - Journal of Evolution and Technology 26 (1):26-49.
    Geoengineering; specifically Solar Radiation Management ; has been proposed to effect rapid influence over the Earth’s climate system in order to counteract Anthropogenic Global Warming. This poses near-term to long-term governance challenges; some of which are within the planning horizon of current political administrations. Previous discussions of governance of SRM have focused primarily on two scenarios: an isolated “Greenfinger” individual; or state; acting independently ; versus more consensual; internationalist approaches. I argue that these models represent a very limited (...)
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  5. Geoengineering and Non-Ideal Theory.David R. Morrow & Toby Svoboda - 2016 - Public Affairs Quarterly 30 (1):85-104.
    The strongest arguments for the permissibility of geoengineering (also known as climate engineering) rely implicitly on non-ideal theory—roughly, the theory of justice as applied to situations of partial compliance with principles of ideal justice. In an ideally just world, such arguments acknowledge, humanity should not deploy geoengineering; but in our imperfect world, society may need to complement mitigation and adaptation with geoengineering to reduce injustices associated with anthropogenic climate change. We interpret research proponents’ arguments as an application (...)
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  6. Geoengineering, Agent-Regret, and the Lesser of Two Evils Argument.Toby Svoboda - 2015 - Environmental Ethics 37 (2):207-220.
    According to the “Lesser of Two Evils Argument,” deployment of solar radiation management (SRM) geoengineering in a climate emergency would be morally justified because it likely would be the best option available. A prominent objection to this argument is that a climate emergency might constitute a genuine moral dilemma in which SRM would be impermissible even if it was the best option. However, while conceiving of a climate emergency as a moral dilemma accounts for some ethical concerns about (...)
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  7. Response to Commentaries on ‘Ethical and Technical Challenges in Compensating for Harm Due to Solar Radiation Management Geoengineering’.Toby Svoboda & Peter Irvine - 2015 - Ethics, Policy and Environment 18 (1):103-105.
    We thank the commentators for their interesting and helpful feedback on our previously published target article (Svoboda and Irvine, 2014). One of our objectives in that article was to identify areas of uncertainty that would need to be addressed in crafting a just SRM compensation system. The commentators have indicated some possible ways of reducing such uncertainty. Although we cannot respond to all their points due to limitations of space, we wish to address here the more pressing criticisms the commentators (...)
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  8. The Ethics of Geoengineering: Moral Considerability and the Convergence Hypothesis.Toby Svoboda - 2012 - Journal of Applied Philosophy 29 (3):243-256.
    Although it could avoid some harmful effects of climate change, sulphate aerosol geoengineering (SAG), or injecting sulphate aerosols into the stratosphere in order to reflect incoming solar radiation, threatens substantial harm to humans and non-humans. I argue that SAG is prima facie ethically problematic from anthropocentric, animal liberationist, and biocentric perspectives. This might be taken to suggest that ethical evaluations of SAG can rely on Bryan Norton's convergence hypothesis, which predicts that anthropocentrists and non-anthropocentrists will agree to implement (...)
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  9. Towards Integrated Ethical and Scientific Analysis of Geoengineering: A Research Agenda.Nancy Tuana, Ryan L. Sriver, Toby Svoboda, Roman Olson, Peter J. Irvine, Jacob Haqq-Misra & Klaus Keller - 2012 - Ethics, Policy and Environment 15 (2):136 - 157.
    Concerns about the risks of unmitigated greenhouse gas emissions are growing. At the same time, confidence that international policy agreements will succeed in considerably lowering anthropogenic greenhouse gas emissions is declining. Perhaps as a result, various geoengineering solutions are gaining attention and credibility as a way to manage climate change. Serious consideration is currently being given to proposals to cool the planet through solar-radiation management. Here we analyze how the unique and nontrivial risks of geoengineering strategies pose (...)
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  10. Is Aerosol Geoengineering Ethically Preferable to Other Climate Change Strategies?Toby Svoboda - 2012 - Ethics and the Environment 17 (2):111-135.
    In this paper, I address the question of whether aerosol geoengineering (AG) ought to be deployed as a response to climate change. First, I distinguish AG from emissions mitigation, adaptation, and other geoengineering strategies. Second, I discuss advantages and disadvantages of AG, including its potential to result in substantial harm to some persons. Third, I critique three arguments against AG deployment, suggesting reasons why these arguments should be rejected. Fourth, I consider an argument that, in scenarios in which (...)
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  11. Towards a Just Solar Radiation Management Compensation System: A Defense of the Polluter Pays Principle.Robert K. Garcia - 2014 - Ethics, Policy and Environment 17 (2):178-182.
    In their ‘Ethical and Technical Challenges in Compensating for Harm Due to Solar Radiation Management Geoengineering’ (2014), Toby Svoboda and Peter Irvine (S&I) argue that there are significant technical and ethical challenges that stand in the way of crafting a just solar radiation management (SRM) compensation system. My aim in this article is to contribute to the project of addressing these problems. I do so by focusing on one of S&I’s important ethical challenges, their claim that the (...)
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  12. Moral hazards and solar radiation management: Evidence from a large-scale online experiment.Philipp Schoenegger & Kian Mintz-Woo - 2024 - Journal of Environmental Psychology 95:102288.
    Solar radiation management (SRM) may help to reduce the negative outcomes of climate change by minimising or reversing global warming. However, many express the worry that SRM may pose a moral hazard, i.e., that information about SRM may lead to a reduction in climate change mitigation efforts. In this paper, we report a large-scale preregistered, money-incentivised, online experiment with a representative US sample (N = 2284). We compare actual behaviour (donations to climate change charities and clicks on climate change (...)
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  13. Political legitimacy in decisions about experiments in solar radiation management.David R. Morrow, Robert E. Kopp & Michael Oppenheimer - 2013 - In William C. G. Burns & Andrew Strauss (eds.), Climate Change Geoengineering: Philosophical Perspectives, Legal Issues, and Governance Frameworks. Cambridge University Press.
    Some types of solar radiation management (SRM) research are ethically problematic because they expose persons, animals, and ecosystems to significant risks. In our earlier work, we argued for ethical norms for SRM research based on norms for biomedical research. Biomedical researchers may not conduct research on persons without their consent, but universal consent is impractical for SRM research. We argue that instead of requiring universal consent, ethical norms for SRM research require only political legitimacy in decision-making about global SRM (...)
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  14. Solar Radiation Management and Comparative Climate Justice.Toby Svoboda - 2016 - In Christopher J. Preston (ed.), Climate Justice and Geoengineering: Ethics and Policy in the Atmospheric Anthropocene. Rowman & Littlefield International. pp. 3-14.
    In line with Christopher Preston’s argument in the introduction to this volume, I argue here that, although it is helpful to identify potential injustices associated with SRM, it is also crucial both to evaluate how SRM compares to other available options and to consider empirical conditions under which deployment might occur. In arguing for this view, I rely on a distinction between two types of question: (1) whether SRM would produce just or unjust outcomes in some case and (2) whether (...)
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  15. The Ethics of Climate Engineering: Solar Radiation Management and Non-Ideal Justice.Toby Svoboda - 2017 - Routledge.
    This book analyzes major ethical issues surrounding the use of climate engineering, particularly solar radiation management techniques, which have the potential to reduce some risks of anthropogenic climate change but also carry their own risks of harm and injustice. The book argues that we should approach the ethics of climate engineering via "non-ideal theory," which investigates what justice requires given the fact that many parties have failed to comply with their duty to mitigate greenhouse gas emissions. Specifically, it argues (...)
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  16. Climate Engineering From Hindu‐Jain Perspectives.Pankaj Jain - 2019 - Zygon 54 (4):826-836.
    Although Indic perspectives toward nature are now well documented, climate engineering discussions seem to still lack the views from Indic or other non‐Western sources. In this article, I will apply some of the Hindu and Jain concepts such as karma, nonviolence (Ahiṃsā ), humility (Vinaya ), and renunciation (Saṃnyāsa ) to analyze the two primary climate geoengineering strategies of solar radiation management (SRM) and carbon dioxide removal (CDR). I suggest that Indic philosophical and religious traditions such as Hinduism, (...)
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  17. Is Climate Change Morally Good from Non-Anthropocentric Perspectives?Toby Svoboda & Jacob Haqq-Misra - 2018 - Ethics, Policy and Environment 21 (2):215-228.
    Anthropogenic climate change poses some difficult ethical quandaries for non-anthropocentrists. While it is hard to deny that climate change is a substantial moral ill, many types of non-human organisms stand to benefit from climate change. Modelling studies provide evidence that net primary productivity (NPP) could be substantially boosted, both regionally and globally, as a result of warming from increased concentrations of greenhouse gases. The same holds for deployment of certain types of climate engineering, or large-scale, technological modifications of the global (...)
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  18. Secure and Scalable Data Mining Technique over a Restful Web Services.Solar Francesco & Oliver Smith - forthcoming - International Journal of Research and Innovation in Applied Science.
    Scalability, efficiency, and security had been a persistent problem over the years in data mining, several techniques had been proposed and implemented but none had been able to solve the problem of scalability, efficiency and security from cloud computing. In this research, we solve the problem scalability, efficiency and security in data mining over cloud computing by using a restful web services and combination of different technologies and tools, our model was trained by using different machine learning algorithm, and finally (...)
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  19. Tractable depth-bounded approximations to FDE and its satellites.A. Solares-Rojas & Marcello D'Agostino - 2023 - Journal of Logic and Computation 34 (5):815-855.
    FDE, LP and K3 are closely related to each other and admit of an intuitive informational interpretation. However, all these logics are co-NP complete, and so idealized models of how an agent can think. We address this issue by shifting to signed formulae, where the signs express imprecise values associated with two bipartitions of the corresponding set of standard values. We present proof systems whose operational rules are all linear and have only two structural branching rules that express a generalized (...)
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  20. Restful Web Services for Scalable Data Mining.Solar Cesc - forthcoming - International Journal of Research and Innovation in Applied Science.
    Scalability, efficiency, and security had been a persistent problem over the years in data mining, several techniques had been proposed and implemented but none had been able to solve the problem of scalability, efficiency and security from cloud computing. In this research, we solve the problem scalability, efficiency and security in data mining over cloud computing by using a restful web services and combination of different technologies and tools, our model was trained by using different machine learning algorithm, and finally (...)
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  21. Towards Tractable Approximations to Many-Valued Logics: the Case of First Degree Entailment.Alejandro Solares-Rojas & Marcello D’Agostino - 2022 - In Igor Sedlár (ed.), The Logica Yearbook 2021. College Publications. pp. 57-76.
    FDE is a logic that captures relevant entailment between implication-free formulae and admits of an intuitive informational interpretation as a 4-valued logic in which “a computer should think”. However, the logic is co-NP complete, and so an idealized model of how an agent can think. We address this issue by shifting to signed formulae where the signs express imprecise values associated with two distinct bipartitions of the set of standard 4 values. Thus, we present a proof system which consists of (...)
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  22.  77
    Secure and Scalable Data Mining Technique over a Restful Web Services.Solar Cesc - manuscript
    Scalability, efficiency, and security had been a persistent problem over the years in data mining, several techniques had been proposed and implemented but none had been able to solve the problem of scalability, efficiency and security from cloud computing. In this research, we solve the problem scalability, efficiency and security in data mining over cloud computing by using a restful web services and combination of different technologies and tools, our model was trained by using different machine learning algorithm, and finally (...)
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  23. Tractable depth-bounded approximations to some propositional logics. Towards more realistic models of logical agents.A. Solares-Rojas - 2022 - Dissertation, University of Milan
    The depth-bounded approach seeks to provide realistic models of reasoners. Recognizing that most useful logics are idealizations in that they are either undecidable or likely to be intractable, the approach accounts for how they can be approximated in practice by resource-bounded agents. The approach has been applied to Classical Propositional Logic (CPL), yielding a hierarchy of tractable depth-bounded approximations to that logic, which in turn has been based on a KE/KI system. -/- This Thesis shows that the approach can be (...)
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  24. En defensa de la democracia: los discursos antidemocráticos ante el Tribunal Europeo de Derechos Humanos.José Ignacio Solar Cayón - 2012 - Rivista Internazionale di Filosofia Del Diritto 89 (4):519-561.
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  25. Valentina Bulo y la experiencia del placer. [REVIEW]Carolina Solar Andrade - 2019 - Mutatis Mutandis: Revista Internacional de Filosofía 14.
    El texto se compone de cuatro capı́tulos en los que la autora va degustando el concepto de placer desde sus formas más simples e inmediatas, hasta que pronto sorprende con gradaciones que preparan un recorrido temporal en cuyos parajes va deslindando relaciones entre el sentimiento y sensación de placer, y sus distintos modos de ser, con otros sentimientos, como la fruición, el goce, el gusto; el dolor y el miedo; la angustia, el aburrimiento, la indignación. La filósofa transeúnte continúa su (...)
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  26. Desafı́os del estallido social para la filosofı́a y las humanidades.David Nicolás Rojas Lizama, Carolina Llanos, Carolina Solar, Felipe Núñez, Alfredo Muñoz & Fabián Olave - 2019 - Mutatis Mutandis: Revista Internacional de Filosofía 14.
    El estallido social en Chile desafı́a a las humanidades a abordar un fenómeno social inédito por sus formas, a través de un ejercicio reflexivo situado más allá de las tomas de posición en el debate público. Si bien, ha habido un sinnúmero de académicos del espectro nacional que han asumido posturas claras en esta coyuntura, las respuestas y justificaciones contingentes dejan incólumes otras dudas sobre cuestiones de principio. Sabı́amos que Chile vivı́a en una democracia de baja intensidad, con instituciones ancladas (...)
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  27. Geoengineering in a Climate of Uncertainty.Megan Blomfield - 2015 - In Jeremy Moss (ed.), Climate Change and Justice. Cambridge University Press.
    Against the background of continuing inadequacy in global efforts to address climate change and apparent social and political inertia, ever greater interest is being generated in the idea that geoengineering may offer some solution to this problem. I do not take a position, here, on whether or not geoengineering could ever be morally justifiable. My goal in this paper is more modest – but also has broader implications. I aim to show that even if some form of (...) might be ethically acceptable in certain specific circumstances, lab-based research into such techniques could nevertheless have morally problematic consequences. I support this claim by explaining that our current state of uncertainty regarding how the impacts of geoengineering interventions could be geographically distributed may help to promote international agreement on fair rules for the governance of geoengineering. In these circumstances of scientific uncertainty, international actors also face uncertainty regarding who the winners and losers could be with respect to potential rules of geoengineering governance, thereby obstructing the pursuit of self-interest in the selection of such rules. Instead of a research first approach, then, we have reason to take a governance first approach – ensuring that fair international institutions to regulate geoengineering activities are established before further research is conducted into how the costs and benefits of such interventions could be distributed. (shrink)
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  28. Aerosol Geoengineering Deployment and Fairness.Toby Svoboda - 2016 - Environmental Values 25 (1):51-68.
    If deployed, aerosol geoengineering (AG) could involve unfairness to both present and future parties. I discuss three broad risks of unfairness that an AG deployment policy might carry: (1) causing disproportionate harm to those least responsible for climate change, (2) burdening future parties with the costs and risks of AG, and (3) excluding some interested parties from contributing to AG decision-making. Yet despite these risks, it may be too hasty to reject AG deployment as a potential climate change policy. (...)
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  29. The Public and Geoengineering Decision-Making.Pak-Hang Wong - 2013 - Techné: Research in Philosophy and Technology 17 (3):350-367.
    In response to the Royal Society report’s claim that “the acceptability of geo­engineering will be determined as much by social, legal, and political issues as by scientific and technical factors” (Geoengineering the Climate: Science, Governance and Uncertainty [London: Royal Society, 2009], ix), a number of authors have suggested the key to this challenge is to engage the public in geoengineering decision-making. In effect, some have argued that inclusion of the public in geoengineering decision-making is necessary for any (...)
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  30. Consenting to Geoengineering.Pak-Hang Wong - 2016 - Philosophy and Technology 29 (2):173-188.
    Researchers have explored questions concerning public participation and consent in geoengineering governance. Yet, the notion of consent has received little attention from researchers, and it is rarely discussed explicitly, despite being prescribed as a normative requirement for geoengineering research and being used in rejecting some geoengineering options. As it is noted in the leading geoengineering governance principles, i.e. the Oxford Principles, there are different conceptions of consent; the idea of consent ought to be unpacked more carefully (...)
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  31. Sulfate Aerosol Geoengineering: The Question of Justice.Toby Svoboda, Klaus Keller, Marlos Goes & Nancy Tuana - 2011 - Public Affairs Quarterly 25 (3):157-180.
    Some authors have called for increased research on various forms of geoengineering as a means to address global climate change. This paper focuses on the question of whether a particular form of geoengineering, namely deploying sulfate aerosols in the stratosphere to counteract some of the effects of increased greenhouse gas concentrations, would be a just response to climate change. In particular, we examine problems sulfate aerosol geoengineering (SAG) faces in meeting the requirements of distributive, intergenerational, and procedural (...)
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  32. Solar Power Plant Location Selection Problem by using ELECTRE-III Method in Pythagorean Neutrosophic Programming Approach (A case study on Green Energy in India).Rajesh Kumar Saini, Ashik Ahirwar Ahirwa & Florentin Smarandache - unknown
    India dropped its target of 500 GW of renewable energy capacity fossil fuel sources by 2030. Its responsibilities the United Nations Framework Convention Climate Change [UNFCCC],and reducing radiations by one billion tonnes by the end of the decade at the COP26 conference, held in Glasgow in November 2022. Researchers are continually searching for inexhaustible and reasonable energy sources. Solar energy is one of the greenest sources of energy and is also one of the cleanest. The most important factor in (...)
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  33. Compensation for Geoengineering Harms and No-Fault Climate Change Compensation.Pak-Hang Wong, Tom Douglas & Julian Savulescu - 2014 - The Climate Geoengineering Governance Working Papers.
    While geoengineering may counteract negative effects of anthropogenic climate change, it is clear that most geoengineering options could also have some harmful effects. Moreover, it is predicted that the benefits and harms of geoengineering will be distributed unevenly in different parts of the world and to future generations, which raises serious questions of justice. It has been suggested that a compensation scheme to redress geoengineering harms is needed for geoengineering to be ethically and politically acceptable. (...)
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  34. Geoengineering Governance, the Linear Model of Innovation, and the Accompanying Geoengineering Approach.Pak-Hang Wong & Nils Markusson - 2015 - The Climate Geoengineering Governance Working Papers.
    This paper aims to address the lack of critique of the linear model in geoengineering governance discourse, and to illustrate different considerations for a geoengineering governance framework that is not based on a linear model of technology innovation. Finally, we set to explore a particular approach to geoengineering governance based on Peter-Paul Verbeek’s notion of ‘technology accompaniment’.
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  35. Distributive Justice, Geoengineering and Risks.Pak-Hang Wong - 2014 - The Climate Geoengineering Governance Working Papers.
    It is generally recognised that the potential positive and negative impacts of geoengineering will be distributed unevenly both geographically and temporally. The question of distributive justice in geoengineering thus is one of the major ethical issues associated with geoengineering. Currently, the question of distributive justice in geoengineering is framed in terms of who gets what (potential) benefits and harms from geoengineering, i.e. it is about the distribution of the outcomes of geoengineering. In this paper, (...)
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  36. (2 other versions)Climate Justice and Geoengineering: Ethics and Policy in the Atmospheric Anthropocene.Christopher J. Preston (ed.) - 2016 - Rowman & Littlefield International.
    A collection of original and innovative essays that compare the justice issues raised by climate engineering to the justice issues raised by competing approaches to solving the climate problem.
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  37.  49
    Solar radiation modification is risky, but so is rejecting it: a call for balanced research.Claudia Wieners, Benjamin P. Hofbauer, Iris de Vries, Matthias Honegger, Daniele Visioni, Hermann Russchenberg & Tyler Felgenhauer - 2023 - Oxford Open Climate Change 3 (1).
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  38. Design and evaluation of solar parabolic trough collector system integrated with conventional oil boiler.Mustefa Jibril, Fiseha Bogale Kibret, Venkata Ramayya & Balewgize Amare Zeru - 2021 - ARCHIVES OF ELECTRICAL ENGINEERING 70 (3):657-673.
    In this paper an attempt has been made towards the design and evaluation of a solar parabolic trough collector (PTC) system integrated with a conventional oil boiler (COB) to increase the energy utilization effectiveness and reduce the environmental emission of the existing conventional oil boiler in the Kombolcha textile factory, in Ethiopia. The factory uses 8500 ton/annum of heavy fuel oil to generate 26 ton/hour of pressurized hot water at 140C temperature which causes an increase in greenhouse gas emissions, (...)
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  39. Response to Pitkanen’s Solar System Model: Towards Gross-Pitaevskiian description of Solar System and Galaxies and more evidence of chiral superfluid vortices.Victor Christianto, Florentin Smarandache & Yunita Umniyati - manuscript
    In a new paper in recent issue of this journal (PSTJ), Prof. M. Pitkanen describes a solar system model inspired by spiral galaxies. While we appreciate his new approach, we find it lacks substantial discussion on the nature of vortices and chirality in galaxy. Therefore we submit a viewpoint that Gross-Pitaevskii model can be a more complete description of both solar system and also spiral galaxies, especially taking into account the nature of chirality and vortices in galaxies. In (...)
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  40.  37
    Systemic risks and solar climate engineering research. Integrating technology ethics into the governance of systemic risks.Benjamin P. Hofbauer - 2023 - Journal of Risk Research 26 (12):1383-1395.
    The paper explores how the framework of systemic risks can help govern the risks imposed through solar climate engineering research. The central argument is that a systemic perspective of risk is a useful tool for analysing and assessing the risks imposed through Stratospheric Aerosol Injection (SAI) research. SAI is a form of climate engineering that could cool the planet by enhancing its albedo through the injection of aerosols into the stratosphere. Researching such a technology creates systemic risks with a (...)
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  41. The Freedom of Solar Systems.Mathis Koschel - forthcoming - Hegel Bulletin:1-30.
    This essay discusses how, for Hegel, freedom can be realized in nature in a rudimentary fashion in solar systems. This solves a problem in Kant’s account of freedom, namely, the problem that Kant only gives a negative argument for why freedom is not impossible but does not give a positive account of how freedom is real. I give a novel account of Kant’s negative argument. Then, I show how, according to Hegel, solar systems can be considered as exhibiting (...)
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  42. Maintenance Required: The Ethics of Geoengineering and Post-Implementation Scenarios.Pak-Hang Wong - 2014 - Ethics, Policy and Environment 17 (2):186-191.
    The ethics of geoengineering has gained momentum in recent academic debate. The current debates, however, is typically framed in terms of (i) the first-order question about the moral permissibility of geoengineering, and (ii) the second-order question about the distributive and compensatory issues associated with geoengineering. Both (i) and (ii) are central to decision-making about geoengineering, but they have not cover all ethical issues related to geoengineering. I argue that a preoccupation with (i) and (ii) may (...)
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  43. Emerging Next Generation Solar Cells Route to High Efficiency and Low Cost.Md Samiul Islam Sadek, Dr M. Junaebur Rashid & Dr Zahid Hasan Mahmood - 2017 - International Journal of Trend in Scientific Research and Development 1 (4):140-152.
    Generation of clean energy is one of the main challenges of the 21st century. Solar energy is the most abundantly available renewable energy source which would be supplying more than 50 of the global electricity demand in 2100. Solar cells are used to convert light energy into electrical energy directly with an appeal that it does not generate any harmful bi products, like greenhouse gasses. The manufacturing of solar cells is actually based on the types of semiconducting (...)
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  44. Techno-fixing non-compliance - Geoengineering, ideal theory and residual responsibility.Martin Sand, Benjamin Paul Hofbauer & Joost Alleblas - 2023 - Technology in Society 73.
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  45. Does the solar system compute the laws of motion?Douglas Ian Campbell & Yi Yang - 2019 - Synthese 198 (4):3203-3220.
    The counterfactual account of physical computation is simple and, for the most part, very attractive. However, it is usually thought to trivialize the notion of physical computation insofar as it implies ‘limited pancomputationalism’, this being the doctrine that every deterministic physical system computes some function. Should we bite the bullet and accept limited pancomputationalism, or reject the counterfactual account as untenable? Jack Copeland would have us do neither of the above. He attempts to thread a path between the two horns (...)
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  46. Geometric model of gravity, counterfactual solar mass, and the Pioneer anomalies.Andrew Holster - manuscript
    This study analyses the predictions of the General Theory of Relativity (GTR) against a slightly modified version of the standard central mass solution (Schwarzschild solution). It is applied to central gravity in the solar system, the Pioneer spacecraft anomalies (which GTR fails to predict correctly), and planetary orbit distances and times, etc (where GTR is thought consistent.) -/- The modified gravity equation was motivated by a theory originally called ‘TFP’ (Time Flow Physics, 2004). This is now replaced by the (...)
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  47. The Importance of Alternative Solar Energy Sources and the Advantages and Disadvantages of Using Solar Panels in this Process.Tulakov Jakhongir Turakul Ugli - 2019 - International Journal of Engineering and Information Systems (IJEAIS) 3 (4):70-78.
    Abstract: This article reviews and analyzes the advantages and disadvantages of alternative solar energy and the use of solar panels in this process. The solar energy that is falling on the photoelements under a certain angle depends on environmental climax, season, and location. Atmospheric changes also lead to changes in the transverse and direct rays of light, which does not change the light, spectrum and intensity of falling light. These changes will change the principle of operation of (...)
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  48.  39
    Governing Prometheus: Ethical Reflections On Risk & Uncertainty In Solar Climate Engineering Research.Benjamin P. Hofbauer - 2024 - Dissertation, Delft University of Technology
    This thesis explores the ethical challenges that a potential research program for solar climate engineering via Stratospheric Aerosol Injection (SAI) could incur. These ethical challenges are comprised of epistemic hurdles in relation to the research process, as well as societal questions of justice and the value of nature. The thesis proposes a variety of tools and approaches to assess and possibly govern the risks and uncertainties invoked by the research of SAI and its societal implications. The methodological approach is (...)
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  49. Comparing the Motion of Solar System with Water Droplet Motion to Predict the Future of Solar System.Areena Bhatti - 2019 - Conference Paper Abstract.
    The geometric arrangement of planet and moon is the result of a self-organizing system. In our solar system, the planets and moons are constantly orbiting around the sun. The aim of this theory is to compare the motion of a solar system with the motion of water droplet when poured into a water body. The basic methodology is to compare both motions to know how they are related to each other. The difference between both systems will be that (...)
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  50. Worlds in Collision: The Stability of the Solar System.Bhakti Madhava Puri - 2013 - The Harmonizer.
    Sir Isaac Newton (1642–1727) discovered a problem in theoretical physics that is still unresolved to this day. He recognized that the periodic forces of gravity produced by the planets of the solar system degrade their orbits over long time spans, to produce either collisions of planets, ejections of planets into interstellar space, or incineration in the Sun. Although the calculated effects may be small for a given instant of time, over millions of years those small effects accumulate to produce (...)
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