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Titlebook: Advanced Visual Quantum Mechanics; Bernd Thaller Textbook 2005 Springer-Verlag New York 2005 Dirac equation.EPR paradox.mechanics.quantum

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Markus Wehland,Daniela Grimm Ph.D. physics. More results will be presented from a slightly more abstract point of view in Chapter 4..We start by describing the connection between angular momentum and magnetic moment according to classical electrodynamics. Then we proceed to discuss the Stern-Gerlach experiment, which can only be exp
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https://doi.org/10.1007/978-88-470-1658-3erposition of these states. Compared to a classical bit, a qubit has a significantly higher complexity (a continuum of possible states versus two distinct states 0 and 1). But nevertheless, because the state space is just two-dimensional, the measurement of any observable can produce at most two dif
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https://doi.org/10.1007/978-88-470-1658-3-particle system we consider the Schrödinger equation for two free particles. This shows us how to construct two-particle states as products of one-particle states (Section 5.1). An abstract formulation of this method is given by the tensor product of Hilbert spaces. The Hilbert space of a composite
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H. L. Ploegh,E. J. Baas,P. J. F. M. Derhaagn this chapter, we restrict our attention to free particles moving in one space dimension, leaving the more general case to the next chapter. In one dimension, relativistic particles are described by wave functions with two components, which are comparatively easy to visualize and, nevertheless, sho
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