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  1. Time asymmetry and quantum equations of motion.T. E. Phipps - 1973 - Foundations of Physics 3 (4):435-455.
    Accepted quantum description is stochastic, yet history is nonstochastic, i.e., not representable by a probability distribution. Therefore ordinary quantum mechanics is unsuited to describe history. This is a limitation of the accepted quantum theory, rather than a failing of mechanics in general. To remove the limitation, it would be desirable to find a form of quantum mechanics that describes the future stochastically and the past nonstochastically. For this purpose it proves sufficient to introduce into quantum mechanics, by means of a (...)
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  • A new interpretation of time reversal.Sun-Tak Hwang - 1972 - Foundations of Physics 2 (4):315-326.
    A new interpretation of the time-reversal invariance principle is given. As a result, it is shown that microscopic dynamic reversibility has no basis in physics. The existing contradiction between one-way time and two-way time is reconciled. It is also pointed out that the common notion that clocks run backwards when time is reversed is wrong.
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  • Editorial preface.Henry Margenau & Wolfgang Yourgrau - 1970 - Foundations of Physics 1 (1):1-3.
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  • Comments on the dimensionality of time.R. Mirman - 1973 - Foundations of Physics 3 (3):321-333.
    Some brief remarks are made on the relation between the ordering and dimensionality properties of time and the laws of physics. Time is defined as the ordinal of the set of photographs describing the configuration of the Universe associated with each collision of a test particle. This set of pictures is ordered by a parameter which appears in simple physical laws, and it is these laws which determine the ordering. Time is one-dimensional because these snapshots can be ordered with a (...)
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  • (1 other version)The nature of physical theory.Victor Fritz Lenzen - 1931 - London,: Chapman & Hall.
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