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392Nonlocality and the aharonov-Bohm effectPhilosophy of Science 64 (1): 18-41. 1997.At first sight the Aharonov- Bohm effect appears nonlocal, though not in the way EPR/Bell correlations are generally acknowledged to be nonlocal. This paper applies an analysis of nonlocality to the Aharonov- Bohm effect to show that its peculiarities may be blamed either on a failure of a principle of local action or on a failure of a principle of separability. Different interpretations of quantum mechanics disagree on how blame should be allocated. The parallel between the Aharonov- Bohm effec…Read more
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81The Image of Eternity: Roots of Time in the Physical WorldPhilosophical Review 91 (4): 607. 1982.
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36Reduction, Time and Reality: Studies in the Philosophy of the Natural SciencesCambridge University Press. 1981.The contributors to this 1981 volume are all concerned with scientific realism, but each author questions or rejects aspects of the way it has traditionally been discussed. There are three main foci of attention - reduction, time and modality - and the analyses bring out complexities and difficulties obscured in the standard accounts of scientific realism. The papers are powerful and original, representing some of the best in modern philosophy of science, and each were specifically commissioned …Read more
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259Change without change, and how to observe it in general relativitySynthese 141 (3). 2004.All change involves temporal variation of properties. There is change in the physical world only if genuine physical magnitudes take on different values at different times. I defend the possibility of change in a general relativistic world against two skeptical arguments recently presented by John Earman. Each argument imposes severe restrictions on what may count as a genuine physical magnitude in general relativity. These restrictions seem justified only as long as one ignores the fact that ge…Read more
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1Quantum Measurement, Decoherence and Modal InterpretationsMinnesota Studies in the Philosophy of Science 17. 1998.
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116A pragmatist view of the metaphysics of entanglementSynthese 1-38. 2016.Quantum entanglement is widely believed to be a feature of physical reality with undoubted metaphysical implications. But Schrödinger introduced entanglement as a theoretical relation between representatives of the quantum states of two systems. Entanglement represents a physical relation only if quantum states are elements of physical reality. So arguments for metaphysical holism or nonseparability from entanglement rest on a questionable view of quantum theory. Assignment of entangled quantum …Read more
Tucson, Arizona, United States of America
Areas of Specialization
| Philosophy of Physical Science |
Areas of Interest
| Philosophy of Physical Science |
| General Philosophy of Science |
| Metaphysics |