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Titlebook: An Introduction to Hilbert Space and Quantum Logic; David W. Cohen Textbook 1989 Springer-Verlag New York Inc. 1989 Functionals.algebra.de

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楼主: 马用
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Textbook 1989s "quantum mechanics". The equations and their philosophical underpinnings were then collected into a model based on the mathematics of Hilbert space. From the Hilbert space model came the abstaction of "quantum logics". This book explores all three stages, but not in historical order. Instead, in a
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Experiments, Measure and Integration,ng it takes a marble to drop from a certain height. Then we record what happens after we do it—the coin comes up heads, we get burned, the marble takes 6 seconds to drop. What we record is called an outcome of the experiment. We identify an experiment by its outcome set, so we can write . = (heads,
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Subspaces in Hilbert Space,-up and spin-down. Of course, many physical experiments have outcome sets that are not finite. A measurement of energy, position, or momentum of a moving particle usually means obtaining an outcome from an infinite number of possibilities. In this chapter we shall learn about infinite dimensional Hi
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,State Space and Gleason’s Theorem,otions of pure states, mixtures of states, and physical properties. Next we define an observable on a logic, allowing us to consider physical experiments whose outcome sets are more general than the finite subsets of ℜ we saw in Chapter 1. We shall be guided by Lemma 1B.10, however, when we define t
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Spectrality, with a Hilbert space . and its projection logic, we defined an observable as a logic-valued function on the real Borel sets. Then through expected values every observable was shown to be associated with a member of . (H), and then every member of . (.) was associated with a Hermitian operator on .
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Carl Zeiss,P. Culmann,E. Wanderslebng it takes a marble to drop from a certain height. Then we record what happens after we do it—the coin comes up heads, we get burned, the marble takes 6 seconds to drop. What we record is called an outcome of the experiment. We identify an experiment by its outcome set, so we can write . = (heads,
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