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Titlebook: Electrons in Metals and Semiconductors; R. G. Chambers Book 1990 R.G. Chambers 1990 Potential.atoms.density.dynamics.electron.electrons.he

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Electrons in a periodic potential,An electron moving through the periodic potential .(.) must satisfy the Schrödinger equation
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The dynamics of Bloch electrons,In Chapter 2 we were concerned only with free electrons, for which . = ., and we assumed that the effect of fields . and . on an electron moving with velocity . was given by the Lorentz force equation
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Electrical conductivity of metals,Now that we have looked at the effect of electric fields and of collisions separately, we can look at the effect of the two together, and see how they determine the conductivity and other transport properties. We consider metals in this and the following three chapters, and then turn to semiconductors.
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https://doi.org/10.1007/978-94-009-0423-1Potential; atoms; density; dynamics; electron; electrons; heat; metals; model; physics; semiconductor
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Physics and Its Applicationshttp://image.papertrans.cn/e/image/306496.jpg
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Multiple GPS Track Information Fusion,y tiny crystals form, and these then grow together to form a solid polycrystalline mass. By cooling slowly and carefully, one can instead grow large single crystals, and single crystals of silicon, for example, have long been the starting material for the semiconductor industry.
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https://doi.org/10.1007/978-3-658-38316-9he wave-functions .(.) for an electron moving in any periodic potential .(.) But in practice, the equations can be solved at all easily only if most of the coefficients . are small (compared with ε., say). In the NFE approximation we assume that they are . small, so that the solution wave-functions
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