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Ethics of Chemical Synthesis

Hyle 7 (2):103 - 124 (2001)

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  1. The notion of nature in chemistry.Joachim Schummer - 2003 - Studies in History and Philosophy of Science Part A 34 (4):705-736.
    If nature is by definition the object of the natural sciences, then the dichotomy ‘natural’ versus ‘chemical’, held by both chemists and nonchemists, suggests an idiosyncrasy of chemistry. The first part of the paper presents a selective historical analysis of the main notions of nature in chemistry, as developed in early Christian views of chemical crafts, alchemy, iatrochemistry, mechanical philosophy, organic chemistry, and contemporary drug research. I argue that the dichotomy as well as quasi-moral judgments of chemistry have been based (...)
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  • Nanotechnology, contingency and finitude.Christopher Groves - 2009 - NanoEthics 3 (1):1-16.
    It is argued that the social significance of nanotechnologies should be understood in terms of the politics and ethics of uncertainty. This means that the uncertainties surrounding the present and future development of nanotechnologies should not be interpreted, first and foremost, in terms of concepts of risk. It is argued that risk, as a way of managing uncertain futures, has a particular historical genealogy, and as such implies a specific politics and ethics. It is proposed, instead, that the concepts of (...)
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  • Creating a Sustainable Future: Some Philosophical and Educational Considerations for Chemistry Teaching.Amparo Vilches & Daniel Gil-Pérez - 2013 - Science & Education 22 (7):1857-1872.
  • Teaching Societal and Ethical Implications of Nanotechnology to Engineering Students Through Science Fiction.Joachim Schummer & Rosalyn W. Berne - 2005 - Bulletin of Science, Technology and Society 25 (6):459-468.
    Societal and ethical implications of nanotechnology have become a hot topic of public debates in many countries because both revolutionary changes and strong public concerns are expected from its development. Because nanotechnology is, at this point, mostly articulated in visionary and futuristic terms, it is difficult to apply standard methods of technology assessment and even more difficult to consider it in engineering ethics courses. In this article, the authors suggest using selected science fiction stories in the engineering ethics classroom to (...)
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  • Synthetic Biology: Drawing a Line in Darwin's Sand.Christopher J. Preston - 2008 - Environmental Values 17 (1):23-39.
    Maintaining the coherence of the distinction between nature and artefact has long been central to environmental thinking. By building genomes from scratch out of 'bio-bricks', synthetic biology promises to create biotic artefacts markedly different from anything created thus far in biotechnology. These new biotic artefacts depart from a core principle of Darwinian natural selection – descent through modification – leaving them with no causal connection to historical evolutionary processes. This departure from the core principle of Darwinism presents a challenge to (...)
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  • The Just War Theory and the Ethical Governance of Research.Ineke Malsch - 2013 - Science and Engineering Ethics 19 (2):461-486.
    This article analyses current trends in and future expectations of nanotechnology and other key enabling technologies for security as well as dual use nanotechnology from the perspective of the ethical Just War Theory (JWT), interpreted as an instrument to increase the threshold for using armed force for solving conflicts. The aim is to investigate the relevance of the JWT to the ethical governance of research. The analysis gives rise to the following results. From the perspective of the JWT, military research (...)
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  • Connecting the philosophy of chemistry, green chemistry, and moral philosophy.Jean-Pierre Llored & Stéphane Sarrade - 2015 - Foundations of Chemistry 18 (2):125-152.
    This paper aims to connect philosophy of chemistry, green chemistry, and moral philosophy. We first characterize chemistry by underlining how chemists: co-define chemical bodies, operations, and transformations; always refer to active and context-sensitive bodies to explain the reactions under study; and develop strategies that require and intertwine with a molecular whole, its parts, and the surroundings at the same time within an explanation. We will then point out how green chemists are transforming their current activities in order to act upon (...)
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  • Chemistry and Measurement: Some Philosophical Lessons.Jean-Pierre Llored - 2021 - Perspectives on Science 29 (6):782-801.
    How do chemists assign numbers to chemicals properties? What do these numbers refer to? To answer these questions, we will first point out both the context-dependence of chemicals and the epistemic limitations of chemistry. We will then investigate how chemists use various procedures to stabilize measurements and how they use mixtures of samples as “references” in order to determine the amount of different chemicals in a sample. This study will enable us to query how it is possible for chemists to (...)
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  • Logic of Choice or Logic of Care? Uncertainty, Technological Mediation and Responsible Innovation.Christopher Groves - 2015 - NanoEthics 9 (3):321-333.
    The regulation of innovation reflects a specific imaginary of the role of governance that makes it external to the field it governs. It is argued that this decision and rule-based view of regulation is insufficient to deal with the inescapable uncertainties that are produced by innovation. In particular, relying on risk-based knowledge as the basis of regulation fails to deal sufficiently both with the problem that innovation ensures the future will not resemble the past, and with the problem that the (...)
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  • Future ethics: Risk, care and non-reciprocal responsibility.Christopher Groves - 2009 - Journal of Global Ethics 5 (1):17 – 31.
    As the number of intrinsically unknowable technologically produced risks global society faces continues to grow, it is evident that the question of our responsibilities towards future people is of urgent importance. However, the concepts with which this question is generally approached are, it is argued, deficient in comprehending the nature of these risks. In particular, the individualistic language of rights presents severe difficulties. An alternative understanding of responsibility is required, which, it is argued, can be developed from phenomenological and feminist (...)
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  • On morality and chemistry.Hauke Fürstenwerth - 2003 - Poiesis and Praxis 2 (1):53-71.
    Cartesian separation and enlightenment have led to a widespread conceptual separation of science and technology. Consequently a certain philosophical tradition holds pure science as a metaphysical striving for irrefutable truth that is morally neutral and only ( dirty?) applications as morally accountable. An opposite extreme position holds scientists responsible for everything that is done with their discoveries. Based on an interpretation of science to be a social construct and the observation that moral criteria are the results of social processes the (...)
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  • Investigating Consistencies, Inconsistencies, and the Meaning of the Ceteris Paribus Clause in Chemistry.Jean-Pierre Llored - 2017 - Humana Mente 10 (32):53-74.
    Chemists do not aim at testing preconceptions or theoretical hypotheses only; they first and foremost produce and determine the object of chemical investigation: they learn through making. They never cease to create and stabilize heterogeneous devices, methods, models, and theories in order to act upon the world. Chemical bodies cannot be studied in isolation; their properties constitutively depend on what surrounds and acts upon them. Starting from the specificity of chemical practices, this paper investigates the meaning of consistency, inconsistency, and (...)
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  • Bibliography of studies on nanoscience and nanotechnology.Joachim Schummer - 2004 - In Baird D. (ed.), Discovering the Nanoscale. Ios. pp. 311--316.
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  • Philosophie der chemie: Rück- und ausblicke.Joachim Schummer - manuscript
    Philosophie ist konkret und abstrakt. Sie ist konkret im Gespür für Probleme, die jeden – oder jeden in einem bestimmten Bereich – betreffen. Sie ist abstrakt in der kritischen Formulierung und Lösung von Problemen, indem sie von besonderen Bedingungen und Voreingenommenheiten abstrahiert. Philosophie erfordert Kreativität, Phantasie und die Bereitschaft zu Unkonventionellem in der Wahl der Problemzugangsweisen. Wie alle Wissenschaften ist sie als Methode lehr- und entwickelbar, sofern ein gewisses Talent vorhanden ist. Philosophie beginnt dort, wo Wissenschaftler nicht mehr weiter fragen. (...)
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  • Naturverhältnisse in der modernen wirkstoff-forschung.Joachim Schummer - manuscript
    Summary: Complementary to normative ethics of technology, the paper analyses the normative implications of human relations to nature on technology assessment by three different descriptive approaches. Historically, I determine the roots of normative relations to nature in alchemy. Historiographic-critically, I investigate how normative ideas of progress result from putting these relations to nature in a historical line. From the point of view of methodology of technology, I finally take the example of current drug research to show how different relations to (...)
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