Tools and Modes of Representation in the Laboratory Sciences [electronic resource] / edited by U. Klein.
Erişim Adresi
ISBN
9789401597371
Dil Kodu
İngilizce
Yer Numarası
DK/7173
Basım Bildirimi
1st ed. 2001.
Yayın Bilgisi
Dordrecht : Springer Netherlands : Imprint: Springer, 2001.
Fiziksel Niteleme
XVI, 264 p. online resource.
Dizi
Boston Studies in the Philosophy and History of Science, 2214-7942 ; 222
İçindekiler Notu
1. Chemical Atomism and the Evolution of Chemical Theory in the Nineteenth Century -- 2. The Creative Power of Paper Tools in Early Nineteenth-Century Chemistry -- 3. An Early History of Alexander Crum Brown’s Graphical Formulas -- 4. Conventionalities in Formula Writing -- 5. Paper Tools and Fictional Worlds: Prediction, Synthesis and Auxiliary Hypotheses in Chemistry -- 6. Aspects of Paper Tools in the Industrial-Academic Context: Constitutions and Structures of Aniline Dyes, 1860–1880 -- 7. Molecular Models and the Articulation of Structural Constraints in Chemistry -- 8. Paper Tools and Molecular Architecture in the Chemistry of Linus Pauling -- 9. Graphic Representations of the Periodic System of Chemical Elements -- 10. The Periodic Table: The Ultimate Paper Tool in Chemistry -- 11. A Principle Written in Diagrams: The Aufbau Principle for Molecules and Its Visual Representations, 1927–1932 -- 12. Fedoroff’s Translation of McClintock: The Uses of Chemistry in the Reorganization of Genetics -- 13. Mathematics, Representation and Molecular Structure -- 14. Affinity, Additivity and the Reification of the Bond.
Özet, vb.
constitutive of reference in laboratory sciences as cultural sign systems and their manipulation and superposition, collectively shared classifications and associated conceptual frameworks,· and various fonns of collective action and social institutions. This raises the question of how much modes of representation, and specific types of sign systems mobilized to construct them, contribute to reference. Semioticians have argued that sign systems are not merely passive media for expressing preconceived ideas but actively contribute to meaning. Sign systems are culturally loaded with meaning stemming from previous practical applications and social traditions of applications. In new local contexts of application they not only transfer stabilized meaning but also can be used as active resources to add new significance and modify previous meaning. This view is supported by several analyses presented in this volume. Sign systems can be implemented like tools that are manipulated and superposed with other types of signs to forge new representations. The mode of representation, made possible by applying and manipulating specific types of representational tools, such as diagrammatic rather than mathematical representations, or Berzelian fonnulas rather than verbal language, contributes to meaning and forges fine-grained differentiations between scientists' concepts. Taken together, the essays contained in this volume give us a multifaceted picture of the broad variety of modes of representation in nineteenth-century and twentieth-century laboratory sciences, of the way scientists juxtaposed and integrated various representations, and of their pragmatic use as tools in scientific and industrial practice.
Konu
Knowledge, Theory of.
Computer science __ Mathematics.
Artificial intelligence.
History.
Chemistry.
Epistemology.
Symbolic and Algebraic Manipulation.
Artificial Intelligence.
History.
Chemistry.
Computer science __ Mathematics.
Artificial intelligence.
History.
Chemistry.
Epistemology.
Symbolic and Algebraic Manipulation.
Artificial Intelligence.
History.
Chemistry.
Diğer Yazarlar
Kurum Adı
Eseri Alıntıla
Referansları kullanmadan önce gözden geçirmeniz ve varsa gerekli düzeltmeleri yapmanız önerilir.
Dijital Kaynak
MARC Görünümü
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490 1 |aBoston Studies in the Philosophy and History of Science,|x2214-7942 ;|v222
505 0 |a1. Chemical Atomism and the Evolution of Chemical Theory in the Nineteenth Century -- 2. The Creative Power of Paper Tools in Early Nineteenth-Century Chemistry -- 3. An Early History of Alexander Crum Brown’s Graphical Formulas -- 4. Conventionalities in Formula Writing -- 5. Paper Tools and Fictional Worlds: Prediction, Synthesis and Auxiliary Hypotheses in Chemistry -- 6. Aspects of Paper Tools in the Industrial-Academic Context: Constitutions and Structures of Aniline Dyes, 1860–1880 -- 7. Molecular Models and the Articulation of Structural Constraints in Chemistry -- 8. Paper Tools and Molecular Architecture in the Chemistry of Linus Pauling -- 9. Graphic Representations of the Periodic System of Chemical Elements -- 10. The Periodic Table: The Ultimate Paper Tool in Chemistry -- 11. A Principle Written in Diagrams: The Aufbau Principle for Molecules and Its Visual Representations, 1927–1932 -- 12. Fedoroff’s Translation of McClintock: The Uses of Chemistry in the Reorganization of Genetics -- 13. Mathematics, Representation and Molecular Structure -- 14. Affinity, Additivity and the Reification of the Bond.
520 |aconstitutive of reference in laboratory sciences as cultural sign systems and their manipulation and superposition, collectively shared classifications and associated conceptual frameworks,· and various fonns of collective action and social institutions. This raises the question of how much modes of representation, and specific types of sign systems mobilized to construct them, contribute to reference. Semioticians have argued that sign systems are not merely passive media for expressing preconceived ideas but actively contribute to meaning. Sign systems are culturally loaded with meaning stemming from previous practical applications and social traditions of applications. In new local contexts of application they not only transfer stabilized meaning but also can be used as active resources to add new significance and modify previous meaning. This view is supported by several analyses presented in this volume. Sign systems can be implemented like tools that are manipulated and superposed with other types of signs to forge new representations. The mode of representation, made possible by applying and manipulating specific types of representational tools, such as diagrammatic rather than mathematical representations, or Berzelian fonnulas rather than verbal language, contributes to meaning and forges fine-grained differentiations between scientists' concepts. Taken together, the essays contained in this volume give us a multifaceted picture of the broad variety of modes of representation in nineteenth-century and twentieth-century laboratory sciences, of the way scientists juxtaposed and integrated various representations, and of their pragmatic use as tools in scientific and industrial practice.
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650 0|aComputer science|xMathematics.
650 0|aArtificial intelligence.
650 0|aHistory.
650 0|aChemistry.
650 14|aEpistemology.
650 24|aSymbolic and Algebraic Manipulation.
650 24|aArtificial Intelligence.
650 24|aHistory.
650 24|aChemistry.
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020 |a9789401597371|9978-94-015-9737-1
024 7 |a10.1007/978-94-015-9737-1|2doi
041 |aeng
049 |aTürk Tarih Kurumu Kütüphanesi
050 4|aBD143-237
072 7|aHPK|2bicssc
072 7|aPHI004000|2bisacsh
072 7|aQDTK|2thema
082 04|a120|223
090 |aDK/7173
245 10|aTools and Modes of Representation in the Laboratory Sciences|h[electronic resource] /|cedited by U. Klein.
250 |a1st ed. 2001.
264 1|aDordrecht :|bSpringer Netherlands :|bImprint: Springer,|c2001.
300 |aXVI, 264 p.|bonline resource.
336 |atext|btxt|2rdacontent
337 |acomputer|bc|2rdamedia
338 |aonline resource|bcr|2rdacarrier
347 |atext file|bPDF|2rda
490 1 |aBoston Studies in the Philosophy and History of Science,|x2214-7942 ;|v222
505 0 |a1. Chemical Atomism and the Evolution of Chemical Theory in the Nineteenth Century -- 2. The Creative Power of Paper Tools in Early Nineteenth-Century Chemistry -- 3. An Early History of Alexander Crum Brown’s Graphical Formulas -- 4. Conventionalities in Formula Writing -- 5. Paper Tools and Fictional Worlds: Prediction, Synthesis and Auxiliary Hypotheses in Chemistry -- 6. Aspects of Paper Tools in the Industrial-Academic Context: Constitutions and Structures of Aniline Dyes, 1860–1880 -- 7. Molecular Models and the Articulation of Structural Constraints in Chemistry -- 8. Paper Tools and Molecular Architecture in the Chemistry of Linus Pauling -- 9. Graphic Representations of the Periodic System of Chemical Elements -- 10. The Periodic Table: The Ultimate Paper Tool in Chemistry -- 11. A Principle Written in Diagrams: The Aufbau Principle for Molecules and Its Visual Representations, 1927–1932 -- 12. Fedoroff’s Translation of McClintock: The Uses of Chemistry in the Reorganization of Genetics -- 13. Mathematics, Representation and Molecular Structure -- 14. Affinity, Additivity and the Reification of the Bond.
520 |aconstitutive of reference in laboratory sciences as cultural sign systems and their manipulation and superposition, collectively shared classifications and associated conceptual frameworks,· and various fonns of collective action and social institutions. This raises the question of how much modes of representation, and specific types of sign systems mobilized to construct them, contribute to reference. Semioticians have argued that sign systems are not merely passive media for expressing preconceived ideas but actively contribute to meaning. Sign systems are culturally loaded with meaning stemming from previous practical applications and social traditions of applications. In new local contexts of application they not only transfer stabilized meaning but also can be used as active resources to add new significance and modify previous meaning. This view is supported by several analyses presented in this volume. Sign systems can be implemented like tools that are manipulated and superposed with other types of signs to forge new representations. The mode of representation, made possible by applying and manipulating specific types of representational tools, such as diagrammatic rather than mathematical representations, or Berzelian fonnulas rather than verbal language, contributes to meaning and forges fine-grained differentiations between scientists' concepts. Taken together, the essays contained in this volume give us a multifaceted picture of the broad variety of modes of representation in nineteenth-century and twentieth-century laboratory sciences, of the way scientists juxtaposed and integrated various representations, and of their pragmatic use as tools in scientific and industrial practice.
532 8 |aAccessibility summary: This PDF is not accessible. It is based on scanned pages and does not support features such as screen reader compatibility or described non-text content (images, graphs etc). However, it likely supports searchable and selectable text based on OCR (Optical Character Recognition). Users with accessibility needs may not be able to use this content effectively. Please contact us at accessibilitysupport@springernature.com if you require assistance or an alternative format.
532 8 |aInaccessible, or known limited accessibility
532 8 |aNo reading system accessibility options actively disabled
532 8 |aPublisher contact for further accessibility information: accessibilitysupport@springernature.com
650 0|aKnowledge, Theory of.
650 0|aComputer science|xMathematics.
650 0|aArtificial intelligence.
650 0|aHistory.
650 0|aChemistry.
650 14|aEpistemology.
650 24|aSymbolic and Algebraic Manipulation.
650 24|aArtificial Intelligence.
650 24|aHistory.
650 24|aChemistry.
700 1 |aKlein, U.|eeditor.|4edt|4http://id.loc.gov/vocabulary/relators/edt
710 2 |aSpringerLink (Online service)
773 0 |tSpringer Nature eBook
776 08|iPrinted edition:|z9781402001000
776 08|iPrinted edition:|z9789048158591
776 08|iPrinted edition:|z9789401597388
830 0|aBoston Studies in the Philosophy and History of Science,|x2214-7942 ;|v222
856 40|uhttps://doi.org/10.1007/978-94-015-9737-1
912 |aZDB-2-SHU
912 |aZDB-2-SXPR
912 |aZDB-2-BAE
950 |aHumanities, Social Sciences and Law (SpringerNature-11648)
950 |aPhilosophy and Religion (R0) (SpringerNature-43725)
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