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  • 1
    ISBN: 9789401798228
    Language: English
    Pages: Online-Ressource (VI, 438 p. 52 illus, online resource)
    Series Statement: History, Philosophy and Theory of the Life Sciences 11
    Series Statement: SpringerLink
    Series Statement: Bücher
    Series Statement: Springer eBook Collection
    Series Statement: Humanities, Social Sciences and Law
    Parallel Title: Druckausg. Braillard, Pierre-Alain Explanation in biology
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    Keywords: Philosophy (General) ; Biology Philosophy ; Science Philosophy ; Philosophy
    Abstract: Patterns of explanation in biology have long been recognized as different from those deployed in other scientific disciplines, especially physics. Celebrating the diversity of explanatory models found in biology, this volume details their varying types as well as their relationships to one another. It covers the key current debates in the philosophy of biology over the nature of explanation, and its apparent diversity that stems from a variety of historical, causal, mechanistic, or mathmatical explanatory practices. Offering a wealth of fresh analyses on the nature of explanation in contemporary biology chapters examine aspects ranging from the role of mathematics in explaining cell development to the complexities thrown up by evolutionary-developmental biology, where explanation is altered by multidisciplinarity itself. They cover major domains such as ecology and systems biology, as well as contemporary trends, such as the mechanistic explanations spawned by progress in molecular biology. With contributions from researchers of many different nationalities, the book provides a many-angled perspective on a revealing feature of the discipline of biology
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  • 2
    Online Resource
    Online Resource
    Dordrecht : Springer
    ISBN: 9789400743458
    Language: English
    Pages: Online-Ressource (XVIII, 338 p. 9 illus, digital)
    Series Statement: Boston Studies in the Philosophy and History of Science 282
    Series Statement: SpringerLink
    Series Statement: Bücher
    Parallel Title: Buchausg. u.d.T. The mechanization of natural philosophy
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    Keywords: Philosophy (General) ; Biology Philosophy ; Philosophy of nature ; Science Philosophy ; Philosophy ; Philosophy (General) ; Biology Philosophy ; Philosophy of nature ; Science Philosophy ; Science ; Philosophy ; History ; 16th century ; Science ; Philosophy ; History ; 17th century ; Aufsatzsammlung ; Naturphilosophie ; Mechanismus ; Ideengeschichte 1550-1720
    Abstract: The Mechanisation of Natural Philosophy is devoted to various aspects of the transformation of natural philosophy during the 16th and 17th centuries that is usually described as mechanical philosophy .Drawing the border between the old Aristotelianism and the « new » mechanical philosophy faces historians with a delicate task, if not an impossible mission. There were many natural philosophers who actually crossed the border between the two worlds, and, inside each of these worlds, there was a vast spectrum of doctrines, arguments and intellectual practices. The expression mechanical philosophy is burdened with ambiguities. It may refer to at least three different enterprises: a description of nature in mathematical terms; the comparison of natural phenomena to existing or imaginary machines; the use in natural philosophy of mechanical analogies, i.e. analogies conceived in terms of matter and motion alone.However mechanical philosophy is defined, its ambition was greater than its real successes. There were few mathematisations of phenomena. The machines of mechanical philosophers were not only imaginary, but had little to do with the machines of mecanicians. In most of the natural sciences, analogies in terms of matter and motion alone failed to provide satisfactory accounts of phenomena.By the same authors: Mechanics and Natural Philosophy before the Scientific Revolution (Boston Studies in the Philosophy of Science 254).
    Description / Table of Contents: The Mechanization of Natural Philosophy; Preface; Contents; Contributors; Introduction; Part I: The Construction of Historical Categories; Chapter 1: Remarks on the Pre-history of the Mechanical Philosophy; 1.1 What Was the Mechanical Philosophy?; 1.2 The Mechanical Philosophy Before Boyle; 1.3 Bacon; 1.4 Galileo; 1.5 Mersenne; 1.6 Descartes/Gassendi/Hobbes: Mechanical Philosophers?; 1.7 Novatores, Latitudinarians, and the Construction of the Mechanical Philosophy; 1.8 A Broader Conception of Mechanism?; Chapter 2: How Bacon Became Baconian
    Description / Table of Contents: 2.1 The Meaning of Mechanical Operation in Bacon's Oeuvre2.2 Mechanical and Vital Readings of Bacon's Natural Philosophy in Seventeenth-Century England; 2.3 Conclusion; Chapter 3: An Empire Divided: French Natural Philosophy (1670-1690); 3.1 Introduction; 3.2 A Debate on Natural Philosophy; 3.3 On the Side of the New Philosophers; 3.3.1 The Methodology of Ontology: Beings Should Not Be Multiplied Without Necessity; 3.3.2 The Way of Physics: Physics Should Explain Phenomena, Namely, Give Efficient Causes; 3.3.3 Ontological Categories: The Bipartition Between Body and Soul Should Be Respected
    Description / Table of Contents: 3.3.4 The Social Twist3.4 On the Side of the Old Philosophers; 3.4.1 The Methodology of Ontology: The Multiplication of Corpuscles and the Missing Metaphysical Supplement; 3.4.2 The Way of Physics: One Should Not Indulge in Hypotheses, Ignore Experiments and Use Empty Words; 3.4.3 The Ontological Categories and the Controversy Over Animal Souls; 3.4.4 Another Social Twist; 3.5 Conclusions; Part II: Matter, Motion, Physics and Mathematics; Chapter 4: Matter and Form in Sixteenth-Century Spain: Some Case Studies; 4.1 Introduction; 4.2 The Corpuscular Theories of the Physician d'Olesa
    Description / Table of Contents: 4.2.1 Elements, Minima and Qualities4.2.2 The Problem of Mixture; 4.2.3 A Corpuscular Theory of Light and Vision; 4.3 The Absence of a Tradition; 4.3.1 The Hypothesis of Menéndez Pelayo; 4.3.2 The Salamacan Physician Gomez Pereira; 4.3.3 The Salamacan Physician Francisco Valles; 4.4 Conclusion; Chapter 5: The Composition of Space, Time and Matter According to Isaac Newton and John Keill; 5.1 Introduction; 5.2 The Isomorphism of Space, Time and Matter in Early Modern Natural Philosophy; 5.3 The Evolution of Newton's Views on the Composition of Space, Time and Matter
    Description / Table of Contents: 5.4 The Isomorphism of Space, Time and Matter According to John Keill5.5 Conclusion; Chapter 6: Beeckman, Descartes and Physico-Mathematics; 6.1 Beeckman; 6.1.1 Persistence of Motion; 6.1.2 Persistence of the Form of a Motion; 6.1.3 Conservation in the Exchange of Motion; 6.1.4 Isoperimetric Figures; 6.2 Descartes; 6.2.1 Persistence of Motion; 6.2.2 Communication of Motion; 6.2.3 Persistence and Direction; 6.3 Physico-Mathematics; Chapter 7: Between Mathematics and Experimental Philosophy: Hydrostatics in Scotland About 1700; 7.1 Between Mathematics and Experimental Philosophy
    Description / Table of Contents: 7.2 The Mathematical Hydrostatics of Wallis, Gregorie, and Newton
    Note: Description based upon print version of record
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  • 3
    ISBN: 9789400717879
    Language: English
    Pages: Online-Ressource (XI, 399 p. 50 illus, digital)
    Series Statement: Yearbook of Nanotechnology in Society 3
    Series Statement: SpringerLink
    Series Statement: Bücher
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    Keywords: Science Philosophy ; Neurosciences ; Neurology ; Neurobiology ; Engineering ; Science Philosophy ; Neurowissenschaften
    Abstract: I. Introduction and key resources -- 1. Nanotechnology, the brain, and the future: Anticipatory governance via end-to-end real-time technology assessment Jason Scott Robert, Ira Bennett, and Clark A. Miller -- 2. The complex cognitive systems manifesto Richard P. W. Loosemore -- 3. Analysis of bibliometric data for research at the intersection of nanotechnology and neuroscience Christina Nulle, Clark A. Miller, Harmeet Singh, and Alan Porter -- 4. Public attitudes toward nanotechnology-enabled human enhancement in the United States Sean Hays, Michael Cobb, and Clark A. Miller -- 5. U.S. news coverage of neuroscience nanotechnology: How U.S. newspapers have covered neuroscience nanotechnology during the last decade Doo-Hun Choi, Anthony Dudo, and Dietram Scheufele -- 6. Nanoethics and the brain Valerye Milleson -- 7. Nanotechnology and religion: A dialogue Tobie Milford -- II. Brain repair -- 8. The age of neuroelectronics Adam Keiper -- 9. Cochlear implants and Deaf culture Derrick Anderson -- 10. Healing the blind: Attitudes of blind people toward technologies to cure blindness Arielle Silverman -- 11. Ethical, legal and social aspects of brain-implants using nano-scale materials and techniques Francois Berger et al. -- 12. Nanotechnology, the brain, and personal identity Stephanie Naufel -- III. Brain enhancement -- 13. Narratives of intelligence: the sociotechnical context of cognitive enhancement Sean Hays -- 14. Towards responsible use of cognitive-enhancing drugs by the healthy Henry T. Greeley et al. -- 15. The opposite of human enhancement: Nanotechnology and the blind chicken debate Paul B. Thompson -- 16. Anticipatory governance of human enhancement: The National Citizens’ Technology Forum Patrick Hamlett, Michael Cobb, and David Guston a. Arizona site report b. California site report c. Colorado site reportd. Georgia site report e. New Hampshire site report f. Wisconsin site report -- IV. Brain damage -- 17. A review of nanoparticle functionality and toxicity on the central nervous system Yang et al. -- 18. Recommendations for a municipal health and safety policy for nanomaterials: A Report to the City of Cambridge City Manager Sam Lipson -- 19. Museum of Science Nanotechnology Forum lets participants be the judge Mark Griffin -- 20. Nanotechnology policy and citizen engagement in Cambridge, Massachusetts: Local reflexive governance Shannon Conley.-
    Abstract: Our brain is the source of everything that makes us human: language, creativity, rationality, emotion, communication, culture, politics. The neurosciences have given us, in recent decades, fundamental new insights into how the brain works and what that means for how we see ourselves as individuals and as communities. Now - with the help of new advances in nanotechnology - brain science proposes to go further: to study its molecular foundations, to repair brain functions, to create mind-machine interfaces, and to enhance human mental capacities in radical ways. This book explores the convergence of these two revolutionary scientific fields and the implications of this convergence for the future of human societies. In the process, the book offers a significant new approach to technology assessment, one which operates in real-time, alongside the innovation process, to inform the ways in which new fields of science and technology emerge in, get shaped by, and help shape human societies
    URL: Cover
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