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  • 1
    Online Resource
    Online Resource
    Dordrecht : Springer Science+Business Media B.V
    ISBN: 9789048136865
    Language: English
    Pages: Online-Ressource (digital)
    Series Statement: Studies in History and Philosophy of Science 25
    Series Statement: SpringerLink
    Series Statement: Bücher
    Parallel Title: Buchausg. u.d.T.
    Keywords: Philosophy (General) ; Science Philosophy ; Philosophy ; Philosophy (General) ; Science Philosophy
    Abstract: It was in 1660s England, according to the received view, in the Royal Society of London, that science acquired the form of empirical enquiry we recognize as our own: an open, collaborative experimental practice, mediated by specially-designed instruments, supported by civil discourse, stressing accuracy and replicability. Guided by the philosophy of Francis Bacon, by Protestant ideas of this worldly benevolence, by gentlemanly codes of decorum and by a dominant interest in mechanics and the mechanical structure of the universe, the members of the Royal Society created a novel experimental prac
    Description / Table of Contents: pt. 1. The body as object -- pt. 2. The body as instrument -- pt. 3. Embodied minds.
    Note: Includes bibliographical references and index
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  • 2
    ISBN: 9789401722230
    Language: English
    Pages: Online-Ressource (XIII, 251 p) , online resource
    Edition: Springer eBook Collection. Humanities, Social Sciences and Law
    Series Statement: Boston Studies in the Philosophy of Science 229
    Series Statement: Boston Studies in the Philosophy and History of Science 229
    Parallel Title: Erscheint auch als
    Parallel Title: Erscheint auch als
    Parallel Title: Erscheint auch als
    Keywords: Humanities ; Science Philosophy ; Technology Philosophy ; Philosophy and science. ; Physics. ; Observations, Astronomical. ; Philosophy. ; History ; Astronomy—Observations. ; Physics—Philosophy. ; Science—Philosophy. ; Technology—Philosophy.
    Abstract: This book is a historical-epistemological study of one the most consequential idea of early modern celestial mechanics: Robert Hooke's proposal to "compoun[d] the celestial motions of the planets of a direct motion by the tangent & an attractive motion towards a central body," a proposal which Isaac Newton adopted and realized in his Principia. Hooke's Programme was revolutionary both cosmologically and mathematically. It presented "the celestial motions," the proverbial symbol of stability and immutability, as a process of continuous change, and prescribed only parameters of rectilinear motions and rectilinear attractions for calculating their closed curved orbits. Yet the traces of Hooke's construction of his Programme for the heavens lead through his investigations in such earthly disciplines as microscopy, practical optics and horology, and the mathematical tools developed by Newton to accomplish it appear no less local and goal-oriented than Hooke's lenses and springs. This transgression of the boundaries between the theoretical, experimental and technological realms is reminiscent of Hooke's own free excursions in and out of the circles occupied by gentlemen-philosophers, university mathematicians, instrument makers, technicians and servants. It presents an opportunity to examine the social and epistemological distinctions, relations and hierarchies between those realms and their inhabitants, and compels a critical assessment of the philosophical categories they embody
    Description / Table of Contents: IntroductionPart A: The Historical Question. 1. Gallileo's Challenge. 2. The Correspondence. 3. Hooke's Programme -- Part B: The Historiographic Difficulty. 4. Hooke vs. Newton. 5. The Genius vs. The Mechanic. 1. Inflection. Introduction: The Bad Ending -- Part A: The Novelty. 1. Hooke's Programme. 2. Setting the Question Right -- Part B: Employing Inflection. 3. Inflection. 4. Application as Manipulation.-- Part C: Producing Inflection in the Workshop. 5. Construction. 6. Implementation. 7. Tentative Conclusion -- 1.st Interlude: Practice. 1. Introduction - Methodological Lessons. 2. Hacking. 3. The Realism Snare. 2. Power -- Part A: 1. Introduction. 2. De Potentia Restitutiva, or: Of Spring -- Part B: 3. Horology. 4. The Spring Watch. 5. Springs and Forces -- Part C: 6. The Origins of the Vibration Theory. 7. Of Spring again. 8. Springs as a Topos. 9. A Clockwork Theory of Matter and Power -- 2.nd Interlude: Representation. 1. Rorty. 2. 'Knowledge Of and 'Knowledge That'. 3. Hacking and Rorty. 3. Newton's Synthesis. 1. Introduction. 2. Newton Before and After. 3. Hooke's Programme. Notes. Introduction. 1. Inflection. 1st Interlude: Practice. 2. Clocks, Pendulums and Springs -- 2.nd Interlude: Representation. 3. Newton's Synthesis -- Bibliography -- Index.
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  • 3
    Online Resource
    Online Resource
    Dordrecht : Springer
    ISBN: 9789400748071
    Language: English
    Pages: Online-Ressource (VI, 313 p. 30 illus., 5 illus. in color) , digital
    Edition: Online-Ausg. Springer eBook Collection. Humanities, Social Sciences and Law Electronic reproduction; Available via World Wide Web
    Series Statement: International Archives of the History of Ideas Archives internationales d'histoire des idées 208
    DDC: 180-190
    RVK:
    Keywords: Philosophy (General) ; Science History ; Science Philosophy ; History ; Aufsatzsammlung
    Abstract: This volume examines the New Science of the 17th century in the context of Baroque culture, analysing its emergence as an integral part of the high culture of the period. The collected essays explore themes common to the new practices of knowledge production and the rapidly changing culture surrounding them, as well as the obsessions, anxieties and aspirations they share, such as the foundations of order, the power and peril of mediation and the conflation of the natural and the artificial. The essays also take on the historiographical issues involved: the characterization of culture in general and culture of knowledge in particular; the use of generalizations like ‘Baroque’ and the status of such categories; and the role of these in untangling the historical complexities of the tumultuous 17th century. The canonical protagonists of the ‘Scientific Revolution’ are considered, and so are some obscure and suppressed figures: Galileo side by side with Scheiner;Torricelli together with Kircher; Newton as well as Scilla.   The coupling of Baroque and Science defies both the still-triumphalist historiographies of the Scientific Revolution and the slight embarrassment that the Baroque represents for most cultural-national histories of Western Europe. It signals a methodological interest in tensions and dilemmas rather than self-affirming narratives of success and failure, and provides an opportunity for reflective critique of our historical categories which is valuable in its own right.
    Description / Table of Contents: Science in the Age of Baroque; Contents; Chapter 1: Baroque Modes and the Production of Knowledge; Introduction: The Great Opposition; The Papers 2 : Shades of Baroque; Conclusion: Dilemmas and Anxieties; Notes; References; Part I: Order; Chapter 2: What Was the Relation of Baroque Culture to the Trajectory of Early Modern Natural Philosophy?; Introduction: Thinking About "Baroque Science"; Constructing the Category of Natural Philosophy-Natural Philosophising as Culture and Process
    Description / Table of Contents: Phases and Stages in the 'Scientific Revolution' Seen as an Unfolding Process in the Field of Natural PhilosophisingThe Dynamics and Rules of Natural Philosophical Contestation During the 'Crisis Within a Crisis' Phase; Articulation on Subordinate Disciplines: Grammar and Specific Utterance; Find or Steal Discoveries, Novelties or Facts, Including Experimental Ones; Bend or Brake Aristotle's Rules About Mathematics and Natural Philosophy: The Gambit of 'Physico-mathematics'; "Hot Spots" of Articulation Contest: Additional Causes and Effects of a Field in Crisis
    Description / Table of Contents: The Mechanics of Responding to 'Outside' Challenges and OpportunitiesRecruitment of Baroque Behaviours, Norms and Identities?; An Additional, Surprising, Conjectural Finding; Conclusion; References; Chapter 3: "Bent and Directed Towards Him": A Stylistic Analysis of Kircher's Sunflower Clock; Kircher's Sunflower Clock Reassessed; The Baroque Style; The Problem of Style; The Baroque Problem; A Stylistic Analysis; Clocks; Magnetism; Sunflowers; A Baroque Instrument; Conclusion; References; Chapter 4: From Divine Order to Human Approximation: Mathematics in Baroque Science; Kepler and Newton
    Description / Table of Contents: Kepler and PerfectionNewton and the Moving Aphelia; Kepler's ISL; The ISL After Kepler; Newton's ISL; Conclusion; References; Part II: Vision; Chapter 5: "The Quality of Nothing:" Shakespearean Mirrors and Kepler's Visual Economy of Science; Introduction; Shakespearean Mirrors and the End of Renaissance Science; Kepler's Astronomical Speculations, Aristotelian Metabasis and Renaissance Imagination; Keplerian Shadows on a Wall; Towards Baroque Modes of Observation; References; Chapter 6: Agostino Scilla: A Baroque Painter in Pursuit of Science; Introduction; The Making of a Learned Painter
    Description / Table of Contents: From Messina to RomeThe Genesis of a Scientific Conversation; Seeing Fossils Like a Painter; References; Chapter 7: What Exactly Was Torricelli's "Barometer?"; Introduction; "Torricelli's Barometer:" The Extant Sources; Rethinking Torricelli's Esperienza of 1644; Torricelli's Mercury Esperienza as Baroque Performance; Conclusion; References; Chapter 8: William Harvey and the Way of the Artisan; Introduction; Harvey's Way of Inquiry; The Problem of Inquiry; The Priority of Experience; The Way of the Artisan; The Particular; Apprenticeship and Experience; Artisans and Trust
    Description / Table of Contents: William Harvey and the Way of the Artisan
    Description / Table of Contents: 1. Ofer Gal and Raz Chen Morris: Baroque Modes and the Production of Knowledge -- A. Order -- 2. John Schuster: What Was the Relation of Baroque Culture to the Trajectory of Early Modern Natural Philosophy? -- 3. Koen Vermeir: “Bent And Directed Towards Him:” A Baroque Perspective on Kircher’s Sunflower Clock -- 4. Ofer Gal: From Divine Order to Human Approximation: Mathematics in Baroque Science -- B. Vision -- 5. Raz Chen-Morris: “The Quality of Nothing,” Or Kepler's Visual Economy of Science -- 6. Paula Findlen: Agostino Scilla:  A Baroque Painter in Pursuit of Science -- 7. J.B. Shank: What Exactly Was “Torricelli’s Barometer?” -- 8. Alan Salter: William Harvey and the Way of the Artisan -- C. Excess -- 9. John Gascoigne: Crossing the Pillars of Hercules: Francis Bacon, the Scientific Revolution and the New World -- 10. Nicholas Dew: The Hive and the Pendulum: Universal Metrology and Baroque Science.-11. Victor Boantza: Chymical Philosophy and Boyle’s Incongruous Philosophical Chymistry.-12 Rivka Feldhay: The Simulation of Nature and the Dissimulation of the Law on a Baroque Stage: Galileo and the Church Revisited​.
    Note: Description based upon print version of record , Electronic reproduction; Available via World Wide Web
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  • 4
    Online Resource
    Online Resource
    Dordrecht [u.a.] : Springer
    ISBN: 9789400773837
    Language: English
    Pages: 1 Online-Ressource (VIII, 191 S.)
    Series Statement: Studies in History and Philosophy of Science 30
    Series Statement: Studies in History and Philosophy of Science
    Parallel Title: Erscheint auch als
    DDC: 306.09
    Keywords: Geschichte 1450-1650 ; Geschichte 1400-1900 ; Wissenschaftstransfer ; Reise ; Gelehrter ; Neuzeit ; Erkenntnis ; Wissen ; Aufsatzsammlung ; Reise ; Wissen ; Erkenntnis ; Neuzeit ; Geschichte 1450-1650 ; Gelehrter ; Reise ; Wissenschaftstransfer ; Geschichte 1400-1900
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