Foundations of PhysicsSpringer Science & Business Media, 13 бер. 2013 р. - 312 стор. This is not an introduction to physics but an analysis of its founda tions. Indeed, the aims of this book are: (1) to analyze the form and content of some of the key ideas of physics; (2) to formulate several basic physical theories in an explicit and orderly (i. e. , axiomatic) fashion; (3) to exhibit their presuppositions and discuss some of their philosoph ical implications; (4) to discuss some of the controversial issues, and (5) to debunk certain dusty philosophical tenets that obscure the under standing of physics and hinder its progress. To the extent to which these goals are attained, the volume can serve as a companion to studies in theoretical physics aiming at deepening the understanding of the logical structure and the physical meaning of our science. In order to keep the book slender, whole fields of basic physical research had to be excluded - chiefly many-body physics, quantum field theories, and elementary particle theories. A large coverage was believed to be less important than a comparatively detailed analysis and reconstruction of three representative monuments: classical mechan ics, general relativity, and quantum mechanics, as well as their usually unrecognized presuppositions. The reader is invited to join the project and supply some of the many missing chapters - or to rewrite the present ones entirely. |
Зміст
| 1902 | |
Predicates | |
Hypotheses | |
Theory Checking | |
Continuum Mechanics | |
Physical Probabilities | |
General Systems Theory | |
Classical Mechanics | |
Theories | |
Classical Field Theories | |
Special Relativity | |
General Relativity | |
Quantum Heuristics | |
Specific Postulates | |
Debated Questions | |
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Загальні терміни та фрази
assumptions axiom system axiomatic basic body BUNGE characterize classical mechanics classical physics components concept concerning consequences conservation constitutive constitutive equations coordinate system covariant definition differentiable manifold dynamical e.m. field e.m. signals elementary empirical entail equivalence Euclidean exists experimental field equations field theory force formal formulas foundations function geometry given gravitational field hamiltonian heuristic hypotheses independent inertial frame introduced invariant lagrangian law of motion law statements logical Lorentz covariant Lorentz transformation Mario Bunge mass mathematical matter measurement mechanics metric momentum Moreover object observer occur operationalist p-complete particle particular philosophical physical meaning physical system physical theory Poisson brackets postulates predictions presupposes primitives principle properties protophysics quantons quantum real number reference frame relation relative relativistic Remarks represents semantical space spacetime specific symbols tensor testable theoretical truth variables vector velocity wave
