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  1. The concepts of influences and of attributes as seen in connection with Bell's theorem.B. D'Espagnat - 1981 - Foundations of Physics 11 (3-4):205-234.
    With regard to the notion of cause—or more generally of influence—the various methods of proof of Bell's theorem do not all have the same bearing. The differences between two of these methods are analyzed, with regard to both their conceptual basis and their conclusions. It is shown that both methods give valuable information but, not too surprisingly, the one that is based on the more detailed and specific definition of the concept of influences, and that makes use of the concept (...)
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  • A derivation of local commutativity from macrocausality using a quantum mechanical theory of measurement.W. M. de Muynck & J. P. H. W. van den Eijnde - 1984 - Foundations of Physics 14 (2):111-146.
    A theory of the joint measurement of quantum mechanical observables is generalized in order to make it applicable to the measurement of the local observables of field theory. Subsequently, the property of local commutativity, which is usually introduced as a postulate, is derived by means of the theory of measurement from a requirement of mutual nondisturbance, which, for local observables performed at a spacelike distance from each other, is interpreted as a requirement of macrocausality. Alternative attempts at establishing a deductive (...)
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