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Titlebook: Electronic Structures in Solids; Lectures presented a E. D. Haidemenakis Book 1969 Springer Science+Business Media New York 1969 electronic

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https://doi.org/10.1007/978-1-4899-6537-0electronic structure; electronics; solid; structure; structures
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Innovation: Grundlagen und Grundbegriffe, potential barrier without acquiring enough energy to pass over the top. If our discussion is limited to the macroscopic potential barriers in the bulk of solids rather than those on the surface or in the atomic or crystal field, tunneling barriers, which we are familiar with, are classified into two categories:
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Innovationspolitische Designprozesseband structure of a variety of semiconductors and semimetals. Representative general reviews of this work have been given by Lax,. Dresselhaus and Dresselhaus,. and Smith.. The two classes of experiments are complementary and both may be necessary for a complete picture:
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https://doi.org/10.1007/978-3-8349-8392-3nductors. In particular, the changes in the polarization of the radiation which occur in longitudinal or transverse magnetic fields, for both the transmitted and reflected beams, offer a wide range of experimental possibilities. These have been extensively studied with infra-red radiation and, to a lesser degree, in the microwave region.
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https://doi.org/10.1007/978-3-658-29137-2ttering reveals systematic discrepancies. The discrepancies are different for the three families of reflections allowed by the structure, and they occur for all observable peaks. An explanation is suggested based on electron transfer.
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Innovationsprozesse zyklenorientiert managenband gap. In spite of being studied intensively for a long time, even in Germanium and Silicon, our knowledge of their behaviour is most imperfect. In these papers attention will be focussed primarily on these relatively simple materials.
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