Results for 'Climate Research'

963 found
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  1. First Aid for Climate Research with Second-order Science.W. Krauß - 2014 - Constructivist Foundations 10 (1):132-133.
    Open peer commentary on the article “On Climate Change Research, the Crisis of Science and Second-order Science” by Philipp Aufenvenne, Heike Egner & Kirsten von Elverfeldt. Upshot: On an epistemological level, Aufenvenne, Egner and von Elverfeldt argue convincingly for an increasing role for second-order science in climate research. However, the authors partially underestimate the already increasing role of reflexive critique in climate discourse, and they do not yet fully take into account the radical changes in (...)
     
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  2.  30
    Approaching a climatic research ettiquette.Timothy B. Leduc - 2007 - Ethics and the Environment 12 (2):45-70.
    : This paper examines the way in which climate change's complexity calls forth dialogue on various cross-cultural dimensions which resonate with its multi-dimensional reality. While the IPCC science and the Kyoto Protocol approach this inclusiveness, they ultimately limit the range of voices heard due to the continuation of cultural assumptions that are intertwined with many environmental issues. Following the Earth Charter as an alternative model of cross-cultural dialogue that can inform a methodological approach of climate change, this analysis (...)
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    Climate Research and Big Data.Benedikt Knüsel, Christoph Baumberger & Reto Knutti - 2023 - In Gianfranco Pellegrino & Marcello Di Paola (eds.), Handbook of the Philosophy of Climate Change. Springer. pp. 125-149.
    In recent years, the ability to gather and store information has increased dramatically, and the ability to make use of these increasing volumes of data has improved. This advent of big data has opened up new opportunities for scientific research, including for research on climate change. These changes are associated with a number of interesting philosophical questions. This chapter provides an introduction to these questions. It starts by first clarifying terminological issues concerning “big data” and related terms (...)
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  4.  62
    Applying big data beyond small problems in climate research.Benedikt Knüsel, Marius Zumwald, Christoph Baumberger, Gertrude Hirsch Hadorn, Erich M. Fischer, Reto Knutti & David M. Bresch - 2019 - Nature Climate Change 9 (March 2019):196-202.
    Commercial success of big data has led to speculation that big-data-like reasoning could partly replace theory-based approaches in science. Big data typically has been applied to ‘small problems’, which are well-structured cases characterized by repeated evaluation of predictions. Here, we show that in climate research, intermediate categories exist between classical domain science and big data, and that big-data elements have also been applied without the possibility of repeated evaluation. Big-data elements can be useful for climate research (...)
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  5.  60
    Uncertainties, Plurality, and Robustness in Climate Research and Modeling: On the Reliability of Climate Prognoses.Anna Leuschner - 2015 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 46 (2):367-381.
    The paper addresses the evaluation of climate models and gives an overview of epistemic uncertainties in climate modeling; the uncertainties concern the data situation as well as the causal behavior of the climate system. In order to achieve reasonable results nonetheless, multimodel ensemble studies are employed in which diverse models simulate the future climate under different emission scenarios. The models jointly deliver a robust range of climate prognoses due to a broad plurality of theories, techniques, (...)
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  6. Justice considerations in climate research.Caroline Zimm, Kian Mintz-Woo, Elina Brutschin, Susanne Hanger-Kopp, Roman Hoffmann, Kikstra Jarmo, Jihoon Min, Raya Muttarak, Keywan Riahi & Thomas Schinko - 2024 - Nature Climate Change 14 (1):22-30.
    Climate change and decarbonization raise complex justice questions that researchers and policymakers must address. The distributions of greenhouse gas emissions rights and mitigation efforts have dominated justice discourses within scenario research, an integrative element of the IPCC. However, the space of justice considerations is much larger. At present, there is no consistent approach to comprehensively incorporate and examine justice considerations. Here we propose a conceptual framework grounded in philosophical theory for this purpose. We apply this framework to (...) mitigation scenarios literature as proof of concept, enabling a more holistic and multidimensional investigation of justice. We identify areas of future research, including new metrics of service provisioning essential for human well-being. [Can be freely read by clicking the ReadCube link below.]. (shrink)
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  7.  18
    Vertical glaciology: The second discovery of the third dimension in climate research.Dania Achermann - 2020 - Centaurus 62 (4):720-743.
    The history of climate research in the 20th century has been characterised by a crucial shift from a geography-oriented, two-dimensional approach towards a physics-based, three-dimensional concept of climate. In the 1930s, the introduction of new technology, such as radiosondes, enabled climatologists to investigate the high atmosphere, which had previously been out of reach. This “conquest of the third dimension” challenged the surface-oriented, geographical notion of climate patterns and opened up climatology to a three-dimensional approach, which deeply (...)
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  8.  12
    Ethics, Economics and Policy: Report for the European Commission, Environment and Climate Research Programme.J. O'Neill - 2000 - Dg Xii Brussels.
  9.  23
    Researchers’ Perceptions of a Responsible Research Climate: A Multi Focus Group Study.Tamarinde Haven, H. Roeline Pasman, Guy Widdershoven, Lex Bouter & Joeri Tijdink - 2020 - Science and Engineering Ethics 26 (6):3017-3036.
    The research climate plays a key role in fostering integrity in research. However, little is known about what constitutes a responsible research climate. We investigated academic researchers’ perceptions on this through focus group interviews. We recruited researchers from the Vrije Universiteit Amsterdam and the Amsterdam University Medical Center to participate in focus group discussions that consisted of researchers from similar academic ranks and disciplinary fields. We asked participants to reflect on the characteristics of a responsible (...)
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  10.  60
    The case for climate engineering research: an analysis of the “arm the future” argument.Gregor Betz - 2012 - Climatic Change 111 (2):473-485.
    With the evidence for anthropogenic climate change piling up, suggesting that climate impacts of GHG emissions might have been underestimated in the past (Allison et al. 2009; WBGU 2009), and mitigation policies apparently lagging behind what many scientists consider as necessary reductions in order to prevent dangerous climate change, the debate about intentional climate change, or “climate engineering”, as we shall say in the following, has gained momentum in the past years. While efforts to technically (...)
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  11.  14
    A Heated Debate: Meta-Theoretical Studies on Current Climate Research and Public Understanding of Science.Maria M. Sojka - 2023 - transcript Verlag.
    Ever since climate change has been identified as one of the most significant challenges of humanity, climate change deniers have repeatedly tried to discredit the work of scientists. To show how these processes work, Maria M. Sojka examines three ideals about how science should operate. These ideals concern the understanding of uncertainties, the relationship between models and data, and the role of values in science. Their widespread presence in the public understanding of science makes it easy for political (...)
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  12.  28
    Global Policy and National Research: The International Shaping of Climate Research in Four European Union Countries. [REVIEW]Jan Nolin - 1999 - Minerva 37 (2):125-140.
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  13.  22
    Emotions and the Climate Crisis: A Research Agenda for an Affective Sustainability Science.Tobias Brosch & Disa Sauter - 2023 - Emotion Review 15 (4):253-257.
    Climate change and loss of biodiversity are advancing rapidly, making a transition to a more sustainable society one of the most pressing tasks facing humanity. This special section shines a spotlight on how emotions shape and are shaped by the climate and biodiversity crises, and how they intersect with pro-environmental behavior. To this end, leading sustainability scholars and policy makers articulate what they believe are the most important questions that emotion research should answer to support a sustainable (...)
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  14. On Climate Change Research, the Crisis of Science and Second-order Science.P. Aufenvenne, H. Egner & K. Elverfeldt - 2014 - Constructivist Foundations 10 (1):120-129.
    Context: This conceptual paper tries to tackle the advantages and the limitations that might arise from including second-order science into global climate change sciences, a research area that traditionally focuses on first-order approaches and that is currently attracting a lot of media and public attention. Problem: The high profile of climate change research seems to provoke a certain dilemma for scientists: despite the slowly increasing realization within the sciences that our knowledge is temporary, tentative, uncertain, and (...)
     
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  15. Climate Change, Pollution, Deforestation, and Mental Health: Research Trends, Gaps, and Ethical Considerations.Moritz E. Wigand, Cristian Timmermann, Ansgar Scherp, Thomas Becker & Florian Steger - 2022 - GeoHealth 6 (11):e2022GH000632.
    Climate change, pollution, and deforestation have a negative impact on global mental health. There is an environmental justice dimension to this challenge as wealthy people and high-income countries are major contributors to climate change and pollution, while poor people and low-income countries are heavily affected by the consequences. Using state-of-the art data mining, we analyzed and visualized the global research landscape on mental health, climate change, pollution and deforestation over a 15-year period. Metadata of papers were (...)
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  16. Climate science research is rigged: but what about economics?Walter Block - 2010 - Etica E Politica 12 (2):294-305.
    Recent discoveries have revealed that there is intellectual bias in the field of climate science; the present paper makes the case that this moral and intellectual rot has also affected the field of economics.
     
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  17. Addressing Climate Change in Responsible Research and Innovation: Recommendations for its Operationalization.Vincent Blok, I. Ligardo-Herrera, T. Gomez-Navorro & E. Inigo - 2018 - Sustainability 10 (10).
    Responsible Research and Innovation (RRI) has only lately included environmental sustainability as a key area for the social desirability of research and innovation. That is one of the reasons why just a few RRI projects and proposals include environmental sustainability, and Climate Change (CC) in particular. CC is one of the grand challenges of our time and, thus, this paper contributes to the operationalization of CC prevention in RRI. To this end, the tools employed against CC were (...)
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  18.  40
    Perceptions of Research Integrity Climate in Hungarian Universities: Results from A Survey among Academic Researchers.Anna Catharina Vieira Armond & Péter Kakuk - 2022 - Science and Engineering Ethics 28 (4):1-12.
    Research integrity climate is an important factor that influences an individual’s behavior. A strong research integrity culture can lead to better research practices and responsible conduct of research. Therefore, investigations on organizational climate can be a valuable tool to identify the strengths and weaknesses of each group and develop targeted initiatives. This study aims to assess the perceptions on integrity climate in three universities in Hungary. A cross-sectional study was conducted with PhD students, (...)
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  19.  51
    Ethical Climates in Organizations: A Review and Research Agenda.Alexander Newman, Heather Round, Sukanto Bhattacharya & Achinto Roy - 2017 - Business Ethics Quarterly 27 (4):475-512.
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  20.  25
    Climate Anxiety: A Research Agenda Inspired by Emotion Research.Anne M. van Valkengoed, Linda Steg & Peter de Jonge - 2023 - Emotion Review 15 (4):258-262.
    Climate anxiety refers to persistent, difficult-to-control apprehensiveness and worry about climate change. Research to better understand the prevalence, indicators, causes, and consequences of climate anxiety is needed, to which emotion researchers can make substantial contributions. First, emotion theory can inform an integrative and functional theory of climate anxiety, mapping interactions between its cognitive, emotional, behavioural, and physiological indicators. Second, appraisal theories can help to understand the reasons why people experience climate anxiety. Third, emotion researchers (...)
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  21. Toward ethical norms and institutions for climate engineering research.David R. Morrow, Robert E. Kopp & Michael Oppenheimer - 2009 - Environmental Research Letters 4.
    Climate engineering (CE), the intentional modification of the climate in order to reduce the effects of increasing greenhouse gas concentrations, is sometimes touted as a potential response to climate change. Increasing interest in the topic has led to proposals for empirical tests of hypothesized CE techniques, which raise serious ethical concerns. We propose three ethical guidelines for CE researchers, derived from the ethics literature on research with human and animal subjects, applicable in the event that CE (...)
     
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  22.  19
    Assessing the Organizational Climate for Translational Research with a New Survey Tool.Arno Simons, Nico Riedel, Ulf Toelch, Barbara Hendriks, Stephanie Müller-Ohlraun, Lisa Liebenau, Jens Ambrasat, Ulrich Dirnagl & Martin Reinhart - 2020 - Science and Engineering Ethics 26 (6):2893-2910.
    Promoting translational research as a means to overcoming chasms in the translation of knowledge through successive fields of research from basic science to public health impacts and back is a central challenge for research managers and policymakers. Organizational leaders need to assess baseline conditions, identify areas needing improvement, and to judge the impact of specific initiatives to sustain or improve translational research practices at their institutions. Currently, there is a lack of such an assessment tool addressing (...)
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  23. A Research Agenda for Climate Justice.Ivo Wallimann-Helmer (ed.) - 2019
     
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  24.  49
    Relationships Between the Survey of Organizational Research Climate (SORC) and Self-Reported Research Practices.A. Lauren Crain, Brian C. Martinson & Carol R. Thrush - 2013 - Science and Engineering Ethics 19 (3):835-850.
    The Survey of Organizational Research Climate (SORC) is a validated tool to facilitate promotion of research integrity and research best practices. This work uses the SORC to assess shared and individual perceptions of the research climate in universities and academic departments and relate these perceptions to desirable and undesirable research practices. An anonymous web- and mail-based survey was administered to randomly selected biomedical and social science faculty and postdoctoral fellows in the United States. (...)
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  25.  58
    Development and Validation of the Survey of Organizational Research Climate (SORC).Brian C. Martinson, Carol R. Thrush & A. Lauren Crain - 2013 - Science and Engineering Ethics 19 (3):813-834.
    Development and targeting efforts by academic organizations to effectively promote research integrity can be enhanced if they are able to collect reliable data to benchmark baseline conditions, to assess areas needing improvement, and to subsequently assess the impact of specific initiatives. To date, no standardized and validated tool has existed to serve this need. A web- and mail-based survey was administered in the second half of 2009 to 2,837 randomly selected biomedical and social science faculty and postdoctoral fellows at (...)
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  26.  82
    Ethical Aspects of the Mitigation Obstruction Argument against Climate Engineering Research.David R. Morrow - 2014 - Philosophical Transactions of the Royal Society A 372:20140062.
    Many commentators fear that climate engineering research might lead policy-makers to reduce mitigation efforts. Most of the literature on this so-called ‘moral hazard’ problem focuses on the prediction that climate engineering research would reduce mitigation efforts. This paper focuses on a related ethical question: Why would it be a bad thing if climate engineering research obstructed mitigation? If climate engineering promises to be effective enough, it might justify some reduction in mitigation. Climate (...)
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  27.  43
    Perceptions of Ethical Climate and Research Pressures in Different Faculties of a University: Cross-Sectional Study at the University of Split, Croatia.Mario Malički, Vedran Katavić, Domagoj Marković, Matko Marušić & Ana Marušić - 2019 - Science and Engineering Ethics 25 (1):231-245.
    We determined the prevailing ethical climate at three different schools of a single university, in order to explore possible differences in the ethical climate related to different research fields: the School of Electrical Engineering, Mechanical Engineering, and Naval Architecture; the School of Humanities and Social Sciences; and the School of Medicine. We used the Ethical Climate Questionnaire to survey the staff at the three schools, and used the research integrity and organizational climate survey for (...)
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  28. Measures of Mentoring, Department Climate, and Graduate Student Preparedness in the Responsible Conduct of Psychological Research.Sabrina J. Goodman, Kaori Kubo Germano, Adam L. Fried & Celia B. Fisher - 2009 - Ethics and Behavior 19 (3):227-252.
    Drawing upon two independent national samples of 201 and 241 psychology graduate students, this article describes the development and psychometric evaluation of 4 Web-based student self-report scales tapping student socialization in the responsible conduct of research (RCR) with human participants. The Mentoring the Responsible Conduct of Research Scale (MRCR) is composed of 2 subscales assessing RCR instruction and modeling by research mentors. The 2 subscales of the RCR Department Climate Scale (RCR-DC) assess RCR department policies and (...)
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  29. Climate Justice in Interdisciplinary Research.Ivo Wallimann-Helmer, Christian Huggel, Markus Ohndorf & Dominic Roser - 2015 - Climatic Change 133.
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  30.  55
    Peer-reviewed climate change research has a transparency problem. The scientific community needs to do better.Adam Pollack, Jentry E. Campbell, Madison Condon, Courtney Cooper, Matteo Coronese, James Doss-Gollin, Prabhat Hegde, Casey Helgeson, Jan Kwakkel, Corey Lesk, Justin Mankin, Erin Mayfield, Samantha Roth, Vivek Srikrishnan, Nancy Tuana & Klaus Keller - manuscript
    Mission-oriented climate change research is often unverifiable. Therefore, many stakeholders look to peer-reviewed climate change research for trustworthy information about deeply uncertain and impactful phenomena. This is because peer-review signals that research has been vetted for scientific standards like reproducibility and replicability. Here we evaluate the transparency of research methodologies in mission-oriented computational climate research. We find that only five percent of our sample meets the minimal standard of fully open data and (...)
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  31.  14
    The Geopolitics of Climate Knowledge Mobilization: Transdisciplinary Research at the Science–Policy Interface(s) in the Americas.Fabián Mendez, Nicole L. Klenk & Katie Meehan - 2018 - Science, Technology, and Human Values 43 (5):759-784.
    Climate change and sustainability science have become more international in scope and transdisciplinary in nature, in response to growing expectations that scientific knowledge directly informs collective action and transformation. In this article, we move past idealized models of the science–policy interface to examine the social processes and geopolitical dynamics of knowledge mobilization. We argue that sociotechnical imaginaries of transdisciplinary research, deployed in parallel to “universal” regimes of evidence-based decision-making from the global North, conceal how international collaborations of scientists (...)
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  32.  37
    Climate Change, Business, and Society: Building Relevance in Time and Space.Christopher Wright, Sheena Vachhani, George Ferns & Daniel Nyberg - 2022 - Business and Society 61 (5):1322-1352.
    Climate change is one of the most pressing issues facing humanity and has become an area of growing focus in Business & Society. Looking back and reviewing climate change discussion within this journal highlights the importance of time and space in addressing the climate crisis. Looking forward, we extend existing research by theorizing and politicizing the co-implication of time and space through the concept of “space-time.” To illustrate this, we employ the logical structure of “the trace” (...)
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  33.  55
    Ethical climate in nursing environment: A scoping review.Janika Koskenvuori, Olivia Numminen & Riitta Suhonen - 2019 - Nursing Ethics 26 (2):327-345.
    Background:In the past two decades, interest in the concept of ethical climate and in its research has increased in healthcare. Ethical climate is viewed as a type of organizational work climate, and defined as the shared perception of ethically correct behavior, and how ethical issues should be handled in the organization. Ethical climate as an important element of nursing environment has been the focus of several studies. However, scoping reviews of ethical climate research (...)
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  34.  37
    Mentoring and the impact of the research climate.Professor Glyn C. Roberts, Maria Kavussanu & Robert L. Sprague - 2001 - Science and Engineering Ethics 7 (4):525-537.
    In this article, we focus on the mentoring process, and we argue that the internal and external pressures extant at research universities may create a research culture that may be antithetical to appropriate mentoring. We developed a scale based on motivation theory to determine the perceived research culture in departments and research laboratories, and a mentoring scale to determine approaches to mentoring graduate students. Participants were 610 faculty members across 49 departments at a research oriented (...)
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  35.  20
    Normative Uncertainty in Solar Climate Engineering Research Governance.Benjamin Hofbauer - 2024 - Ethics, Policy and Environment 27 (3):451-470.
    This paper explores what kind of uncertainty a research program governing solar climate engineering through Stratospheric Aerosol Injection (SAI) needs to account for. Specifically, it tries to answer two central issues with regards to SAI research and it’s ethical evaluation: One, what irreducible uncertainties remain throughout the decision-process, and, two, how do these remaining uncertainties affect the ethical evaluation of SAI research. The main assumption is that decisions on SAI research governance will be made under (...)
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  36.  98
    Climate justice discussions need new participants and new audiences.Kian Mintz-Woo, Caroline Zimm, Elina Brutschin, Susanne Hanger-Kopp, Jarmo Kikstra, Shonali Pachauri, Keywan Riahi & Thomas Schinko - forthcoming - Nature Climate Change.
    This Correspondence argues in response to Coolsaet et al. (2024) that there is an important role to play for stance-independent justice discussions that are not tied to specific social, political or critical perspectives. These can be valuable for climate research audiences, but also as a basis upon which to critically debate and research injustices.
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  37.  79
    The Role of Community Participation in Climate Change Assessment and Research.Clement Loo - 2014 - Journal of Agricultural and Environmental Ethics 27 (1):65-85.
    There is currently a gap between assessment and intervention in the literature concerned with climate change and food. While intervention is local and context dependent, current assessments are usually global and abstract. Available assessments are useful for understanding the scale of the effects of climate change and they are ideal for motivating arguments in favor of mitigation and adaptation. However, adaptation projects need assessments that can provide data to support their efforts. This requires the adoption of a more (...)
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  38. The Optimum Climate for Industrial Research.D. Charles 3rd - forthcoming - Science and Society.
     
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  39. Environmental influences on ethical decision making: Climate and environmental predictors of research integrity.Michael D. Mumford, Stephen T. Murphy, Shane Connelly, Jason H. Hill, Alison L. Antes, Ryan P. Brown & Lynn D. Devenport - 2007 - Ethics and Behavior 17 (4):337 – 366.
    It is commonly held that early career experiences influence ethical behavior. One way early career experiences might operate is to influence the decisions people make when presented with problems that raise ethical concerns. To test this proposition, 102 first-year doctoral students were asked to complete a series of measures examining ethical decision making along with a series of measures examining environmental experiences and climate perceptions. Factoring of the environmental measure yielded five dimensions: professional leadership, poor coping, lack of rewards, (...)
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  40. Objectivity and a comparison of methodological scenario approaches for climate change research.Elisabeth A. Lloyd & Vanessa J. Schweizer - 2014 - Synthese 191 (10):2049-2088.
    Climate change assessments rely upon scenarios of socioeconomic developments to conceptualize alternative outcomes for global greenhouse gas emissions. These are used in conjunction with climate models to make projections of future climate. Specifically, the estimations of greenhouse gas emissions based on socioeconomic scenarios constrain climate models in their outcomes of temperatures, precipitation, etc. Traditionally, the fundamental logic of the socioeconomic scenarios—that is, the logic that makes them plausible—is developed and prioritized using methods that are very subjective. (...)
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  41.  34
    Mentoring and the impact of the research climate.Glyn C. Roberts, Maria Kavussanu & Robert L. Sprague - 2001 - Science and Engineering Ethics 7 (4):525-537.
    In this article, we focus on the mentoring process, and we argue that the internal and external pressures extant at research universities may create a research culture that may be antithetical to appropriate mentoring. We developed a scale based on motivation theory to determine the perceived research culture in departments and research laboratories, and a mentoring scale to determine approaches to mentoring graduate students. Participants were 610 faculty members across 49 departments at a research oriented (...)
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  42. The epistemic climate of Mrs. M's science lesson about the woodlands as an ecosystem: a classroom-based research study.Florian C. Feucht - 2017 - In Gregory J. Schraw, Jo Brownlee & Lori Olafson (eds.), Teachers' personal epistemologies: evolving models for informing practice. Charlotte, NC: Information Age Publishing, Inc,..
     
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  43.  23
    Community partnered participatory research in southeast louisiana communities threatened by climate change: The c-learn experience.Benjamin F. Springgate, Olivia Sugarman, Kenneth B. Wells, Lawrence A. Palinkas, Diana Meyers, Ashley Wennerstrom, Arthur Johnson, Catherine Haywood, Daniel Sarpong & Richard Culbertson - 2021 - American Journal of Bioethics 21 (10):46-48.
    Community Partnered Participatory Research is grounded in the ethical principle of respect for persons participating in the research enterprise. The critical importance of respect for person...
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  44. Climate Change Conceptual Change: Scientific Information Can Transform Attitudes.Michael Andrew Ranney & Dav Clark - 2016 - Topics in Cognitive Science 8 (1):49-75.
    Of this article's seven experiments, the first five demonstrate that virtually no Americans know the basic global warming mechanism. Fortunately, Experiments 2–5 found that 2–45 min of physical–chemical climate instruction durably increased such understandings. This mechanistic learning, or merely receiving seven highly germane statistical facts, also increased climate-change acceptance—across the liberal-conservative spectrum. However, Experiment 7's misleading statistics decreased such acceptance. These readily available attitudinal and conceptual changes through scientific information disconfirm what we term “stasis theory”—which some researchers and (...)
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  45.  80
    Ethical Climate in Government and Nonprofit Sectors: Public Policy Implications for Service Delivery.David Cruise Malloy & James Agarwal - 2010 - Journal of Business Ethics 94 (1):3-21.
    An important factor that leads governments to engage in public service contracts with nonprofit organizations is the belief that they share similar ethical and value orientations that will allow governments to reduce monitoring costs. However the notion of the existence of similarities in ethical climate has not been systematically examined. The purpose of this paper is to investigate the ethical climate in government and nonprofit sectors and to determine the extent to which similarities (and differences) exist in ethical (...)
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  46.  68
    Reconciling justice and attribution research to advance climate policy.Christian Huggel, Ivo Https://Orcidorg Wallimann-Helmer, Dáithí Stone & Wolfgang Cramer - 2016 - .
    The Paris Climate Agreement is an important step for international climate policy, but the compensation for negative effects of climate change based on clear assignment of responsibilities remains highly debated. From both a policy and a science perspective, it is unclear how responsibilities should be defined and on what evidence base. We explore different normative principles of justice relevant to climate change impacts, and ask how different forms of causal evidence of impacts drawn from detection and (...)
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  47. Climate Change, Nuclear Economics, and Conflicts of Interest.Kristin Shrader-Frechette - 2011 - Science and Engineering Ethics 17 (1):75-107.
    Merck suppressed data on harmful effects of its drug Vioxx, and Guidant suppressed data on electrical flaws in one of its heart-defibrillator models. Both cases reveal how financial conflicts of interest can skew biomedical research. Such conflicts also occur in electric-utility-related research. Attempting to show that increased atomic energy can help address climate change, some industry advocates claim nuclear power is an inexpensive way to generate low-carbon electricity. Surveying 30 recent nuclear analyses, this paper shows that industry-funded (...)
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  48. Global Climate Change and Aesthetics.Emily Brady - 2022 - Environmental Values 31 (1):27-46.
    What kinds of issues does the global crisis of climate change present to aesthetics, and how will they challenge the field to respond? This paper argues that a new research agenda is needed for aesthetics with respect to global climate change (GCC) and outlines a set of foundational issues which are especially pressing: (1) attention to environments that have been neglected by philosophers, for example, the cryosphere and aerosphere; (2) negative aesthetics of environment, in order to grasp (...)
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  49.  77
    Understanding climate phenomena with data-driven models.Benedikt Knüsel & Christoph Baumberger - 2020 - Studies in History and Philosophy of Science Part A 84 (C):46-56.
    In climate science, climate models are one of the main tools for understanding phenomena. Here, we develop a framework to assess the fitness of a climate model for providing understanding. The framework is based on three dimensions: representational accuracy, representational depth, and graspability. We show that this framework does justice to the intuition that classical process-based climate models give understanding of phenomena. While simple climate models are characterized by a larger graspability, state-of-the-art models have a (...)
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  50. Climate Justice Perspectives and Experiences of Nurses and Their Community Partners.Jessica LeClair, Alex Dudek & Susan Zahner - 2025 - Nursing Inquiry 32 (1):e12690.
    The global climate crisis is an immediate threat, causing inequitable health impacts across different populations. Climate justice connects the causes and effects of climate change to structural injustices in society. Nurses and community‐based organizations (CBOs) partner in promoting justice and health equity. The purpose of this article is to describe how nurses and their CBO partners envision, perceive, and experience climate justice in the communities they serve. Participants were recruited via a screening survey sent to nursing (...)
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