General Philosophy of Science: Focal Issues: Focal Issues
Gabbay, Dov M.
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Table of contents
- Cover
- Table of Contentsv
- General Prefaceiii
- Introduction: Explication in Philosophy of Sciencevii
- 1 AN IMPORTANT, THOUGH LARGELY IMPLICIT, METHOD IN PHILOSOPHY OF SCIENCEvii
- 2 EXPLICATION OF CONCEPTS AND INTUITIONS IN SCIENCEviii
- 3 SURVEY OF CHAPTERSxvii
- 4 ACKNOWLEDGEMENTSxxii
- BIBLIOGRAPHYxxii
- List of Contributorsxxv
- Chapter 1 Laws, Theories and Research Programmes1
- INTRODUCTION1
- 1 OBSERVATIONAL LAWS AND PROPER THEORIES2
- 2 INTERMEZZO. THE STRUCTURALIST APPROACH TO THEORIES32
- 3 RESEARCH PROGRAMS AND RESEARCH STRATEGIES58
- CONCLUDING REMARKS90
- ACKNOWLEDGMENTS91
- BIBLIOGRAPHY91
- Chapter 2 Past and Contemporary Perspectives on Explanation97
- 0. INTRODUCTION97
- PART I: A (SELECTIVE) HISTORY OF EXPLANATION100
- 1 ARISTOTLE: EXPLANATION AS DEMONSTRATION100
- 2 DESCARTES: MECHANICAL EXPLANATION102
- 3 LEIBNIZ: POWERS AND TELEOLOGY105
- 4 NEWTON: DYNAMICAL EXPLANATION108
- 5 HUME: AGAINST THE METAPHYSICS OF EXPLANATION110
- 6 KANT: THE METAPHYSICAL GROUNDS OF EXPLANATION114
- 7 MILL: EXPLANATION AS UNIFICATION118
- PART II: UNDERSTANDING EXPLANATION121
- 8 THE LOGICAL POSITIVIST LEGACY121
- 9 NOMIC EXPECTABILITY123
- 10 ENTER CAUSATION125
- 11 CAUSAL HISTORIES130
- 12 (A BRIEF NOTE ON) LAWS OF NATURE132
- 13 UNIFICATION REVISITED135
- 14 MECHANISTIC EXPLANATION REVISITED141
- 15 EXPLANATION AS MANIPULATION147
- 16 STATISTICAL EXPLANATION152
- 17 STATISTICAL RELEVANCE157
- 18 DEDUCTIVE-NOMOLOGICAL-PROBABILISTIC EXPLANATION160
- 19 ON HISTORICAL AND TELEOLOGICAL EXPLANATION163
- 20 A CONCLUDING THOUGHT170
- ACKNOWLEDGEMENTS171
- BIBLIOGRAPHY171
- Chapter 3 Evaluation of Theories175
- 1 INTRODUCTION175
- 2 DIMENSIONS OF EVALUATION179
- 3 VIRTUES OF THEORIES182
- 4 CONFIRMATION195
- 5 ACCEPTANCE202
- 6 CONCLUDING REMARK213
- BIBLIOGRAPHY213
- Chapter 4 The Role of Experiments in the Natural Sciences: Examples from Physics and Biology219
- 1 EXPERIMENTAL RESULTS220
- 2 THE ROLES OF EXPERIMENT234
- 3 CONCLUSION269
- BIBLIOGRAPHY270
- Chapter 5 The Role of Experiments in the Social Sciences: The case of Economics275
- 1 FROM OBSERVATIONS TO EXPERIMENTS IN THE SOCIAL SCIENCES275
- 2 THE NOTION OF EXPERIMENTŽ USED IN THE SOCIAL SCIENCES: FROM THE TRADITIONAL APPROACH TO THE ENL278
- 3 THE DEVELOPMENT OF EXPERIMENTS IN THE SOCIAL SCIENCES: THE CASE OF ECONOMICS287
- 4 ROLE OF PREDICTION IN EXPERIMENTAL ECONOMICS: THE INFLUENCE OF GAME THEORY292
- 5 THE MEASURE OF PREDICTIVE SUCCESS: ACCURACY AND PRECISION295
- ACKNOWLEDGEMENTS298
- BIBLIOGRAPHY298
- Chapter 6 Ontological, Epistemological, and Methodological Positions303
- INTRODUCTION303
- 1 ONTOLOGICAL POSITIONS304
- 2 EPISTEMOLOGICAL POSITIONS329
- 3 METHODOLOGICAL POSITIONS354
- BIBLIOGRAPHY370
- Chapter 7 Reduction, Integration, and the Unity of Science: Natural, Behavioral, and Social Sciences377
- 1 A HISTORICAL LOOK AT UNITY377
- 2 FIELD GUIDE TO MODERN CONCEPTS OF REDUCTION AND UNITY383
- 3 KITCHER’S REVISIONIST ACCOUNT OF UNIFICATION399
- 4 CRITICS OF UNITY400
- 5 INTEGRATION INSTEAD OF UNITY403
- 6 REDUCTION VIA MECHANISMS405
- 7 CASE STUDIES IN REDUCTION AND UNIFICATION ACROSS THE DISCIPLINES414
- 8 CONCLUSIONS424
- ACKNOWLEDGEMENTS425
- BIBLIOGRAPHY425
- Chapter 8 Logical, Historical and Computational Approaches431
- 1 INTRODUCTION431
- 2 THE LOGICAL APPROACH OF THE VIENNA CIRCLE AND THEIR FOLLOWERS FROM THE 1920S TO THE 1950S432
- 3 THE CHALLENGE OF THE HISTORICAL APPROACH (C. 1960 TO THE MID 1970S)437
- 4 THE 1970S: SCIENCE AS PROBLEM SOLVING483
- 5 THE 1980S AND 1990S: LOGICAL AND COMPUTATIONAL MODELS FOR SCIENTIFIC INFERENCE AND DISCOVERY491
- 6 CONCLUSIONS506
- ACKNOWLEDGMENTS507
- BIBLIOGRAPHY508
- Chapter 9 Demarcating Science from Nonscience515
- 1 INTRODUCTION515
- 2 WHY DEMARCATION?516
- 3 HOW DEMARCATION?517
- 4 CHARACTERIZING FIELDS OF KNOWLEDGE522
- 5 UNSCIENTIFIC FIELDS544
- 6 PROTOSCIENCE AND HETERODOXY567
- 7 CONCLUSION570
- ACKNOWLEDGEMENTS571
- BIBLIOGRAPHY571
- Chapter 10 History of the Philosophy of Science. From Wissenschaftslogik (Logic of Science) to Philo577
- PRELIMINARY REMARKS577
- 1 THE EMERGENCE OF PHILOSOPHY OF SCIENCE: WISSENSCHAFTSLOGIKŽ (LOGIC OF SCIENCE) BEFORE 1938579
- 2 THE WIENER KREIS IN GREAT BRITAIN: EMIGRATION AND INTERACTION584
- 3 VIENNA, PARIS AND THE FRENCH CONNECTIONŽ: CONVENTIONALISM612
- 4 THE WIENER KREIS IN AMERICA: LOGICAL EMPIRICISM AND (NEO-)PRAGMATISM617
- 5 CONCLUDING REMARKS647
- ACKNOWLEDGEMENT649
- BIBLIOGRAPHY649
- Index659
Book details
- Vendor Elsevier S & T
- SKU 9780444515483
- ISBN-13 9780080548548
- Author Gabbay, Dov M.
- Category Science
- Subject Philosophy & Social Aspects
Do you have questions about this book?
Scientists use concepts and principles that are partly specific for their subject matter, but they also share part of them with colleagues working in different fields. Compare the biological notion of a 'natural kind' with the general notion of 'confirmation' of a hypothesis by certain evidence. Or compare the physical principle of the 'conservation of energy' and the general principle of 'the unity of science'. Scientists agree that all such notions and principles aren't as crystal clear as one might wish.
An important task of the philosophy of the special sciences, such as philosophy of physics, of biology and of economics, to mention only a few of the many flourishing examples, is the clarification of such subject specific concepts and principles. Similarly, an important task of 'general' philosophy of science is the clarification of concepts like 'confirmation' and principles like 'the unity of science'. It is evident that clarfication of concepts and principles only makes sense if one tries to do justice, as much as possible, to the actual use of these notions by scientists, without however following this use slavishly. That is, occasionally a philosopher may have good reasons for suggesting to scientists that they should deviate from a standard use. Frequently, this amounts to a plea for differentiation in order to stop debates at cross-purposes due to the conflation of different meanings.
While the special volumes of the series of Handbooks of the Philosophy of Science address topics relative to a specific discipline, this general volume deals with focal issues of a general nature.
After an editorial introduction about the dominant method of clarifying concepts and principles in philosophy of science, called explication, the first five chapters deal with the following subjects. Laws, theories, and research programs as units of empirical knowledge (Theo Kuipers), various past and contemporary perspectives on explanation (Stathis Psillos), the evaluation of theories in terms of their virtues (Ilkka Niiniluto), and the role of experiments in the natural sciences, notably physics and biology (Allan Franklin), and their role in the social sciences, notably economics (Wenceslao Gonzalez).
In the subsequent three chapters there is even more attention to various positions and methods that philosophers of science and scientists may favor: ontological, epistemological, and methodological positions (James Ladyman), reduction, integration, and the unity of science as aims in the sciences and the humanities (William Bechtel and Andrew Hamilton), and logical, historical and computational approaches to the philosophy of science (Atocha Aliseda and Donald Gillies).
The volume concludes with the much debated question of demarcating science from nonscience (Martin Mahner) and the rich European-American history of the philosophy of science in the 20th century (Friedrich Stadler).
- Comprehensive coverage of the philosophy of science written by leading philosophers in this field
- Clear style of writing for an interdisciplinary audience
- No specific pre-knowledge required
An important task of the philosophy of the special sciences, such as philosophy of physics, of biology and of economics, to mention only a few of the many flourishing examples, is the clarification of such subject specific concepts and principles. Similarly, an important task of 'general' philosophy of science is the clarification of concepts like 'confirmation' and principles like 'the unity of science'. It is evident that clarfication of concepts and principles only makes sense if one tries to do justice, as much as possible, to the actual use of these notions by scientists, without however following this use slavishly. That is, occasionally a philosopher may have good reasons for suggesting to scientists that they should deviate from a standard use. Frequently, this amounts to a plea for differentiation in order to stop debates at cross-purposes due to the conflation of different meanings.
While the special volumes of the series of Handbooks of the Philosophy of Science address topics relative to a specific discipline, this general volume deals with focal issues of a general nature.
After an editorial introduction about the dominant method of clarifying concepts and principles in philosophy of science, called explication, the first five chapters deal with the following subjects. Laws, theories, and research programs as units of empirical knowledge (Theo Kuipers), various past and contemporary perspectives on explanation (Stathis Psillos), the evaluation of theories in terms of their virtues (Ilkka Niiniluto), and the role of experiments in the natural sciences, notably physics and biology (Allan Franklin), and their role in the social sciences, notably economics (Wenceslao Gonzalez).
In the subsequent three chapters there is even more attention to various positions and methods that philosophers of science and scientists may favor: ontological, epistemological, and methodological positions (James Ladyman), reduction, integration, and the unity of science as aims in the sciences and the humanities (William Bechtel and Andrew Hamilton), and logical, historical and computational approaches to the philosophy of science (Atocha Aliseda and Donald Gillies).
The volume concludes with the much debated question of demarcating science from nonscience (Martin Mahner) and the rich European-American history of the philosophy of science in the 20th century (Friedrich Stadler).
- Comprehensive coverage of the philosophy of science written by leading philosophers in this field
- Clear style of writing for an interdisciplinary audience
- No specific pre-knowledge required
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