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Titlebook: Advances in Quantum Phenomena; Enrico G. Beltrametti,Jean-Marc Lévy-Leblond Book 1995 Springer Science+Business Media New York 1995 electr

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Advances in Quantum Phenomena978-1-4615-1975-1Series ISSN 0258-1221
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0258-1221 Overview: 978-1-4613-5813-8978-1-4615-1975-1Series ISSN 0258-1221
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Mohamed Lahby,Ala Al-Fuqaha,Yassine Malehith this small unit of length by electron interferometry. In fact, extremely interesting electron-interference experiments, though limited in number, were carried out in the 1950s to 1970s to measure inner and contact potentials,. magnetic fluxons,. and others..
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https://doi.org/10.1007/978-981-10-6529-3c structures. The whole theory of electrons in a periodic potential applies directly to the problem of electromagnetic waves. As a matter of fact this result is general and independent of the special physical meaning of the waves considered, and it must be the same for elastic, electromagnetic, and Schrödinger waves.
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Introduction devoted to the endless discussion of the foundational problems of quantum theory, when it struck their minds that physics, after all, was also an experimental science. Maybe, they thought to themselves, our very understanding of quantum concepts would gain from more thoroughly taking into account t
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Experiments with Single Atoms, Molecules or Photonserve their behaviour directly. Among many other feats, one can now “see” the individual atoms at the surface of a metal with a scanning tunneling microscope (STM). or an atomic force microscope (ATM)., one can manipulate a single DNA molecule with “optical tweezers”., one can confine an isolated ion
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Interferometry with Particles of Non-Zero Rest Mass: Topological Experimentsting from this viewpoint, a convenient unified formalism for the phase shifts which arise in particle interferometry is developed. This formalism is based on a covariant form of Hamilton‘s action principle and Lagrange‘s equations of motion. It will be shown that this Lorentz invariant formalism yie
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