[PDF.97yp] Charged Semiconductor Defects: Structure, Thermodynamics and Diffusion (Engineering Materials and Processes)
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Charged Semiconductor Defects: Structure, Thermodynamics and Diffusion (Engineering Materials and Processes)
Edmund G. Seebauer, Meredith C. Kratzer
[PDF.tz17] Charged Semiconductor Defects: Structure, Thermodynamics and Diffusion (Engineering Materials and Processes)
Charged Semiconductor Defects: Structure, Edmund G. Seebauer, Meredith C. Kratzer epub Charged Semiconductor Defects: Structure, Edmund G. Seebauer, Meredith C. Kratzer pdf download Charged Semiconductor Defects: Structure, Edmund G. Seebauer, Meredith C. Kratzer pdf file Charged Semiconductor Defects: Structure, Edmund G. Seebauer, Meredith C. Kratzer audiobook Charged Semiconductor Defects: Structure, Edmund G. Seebauer, Meredith C. Kratzer book review Charged Semiconductor Defects: Structure, Edmund G. Seebauer, Meredith C. Kratzer summary
| #6691193 in Books | Springer London | 2008-11-26 | Original language:English | PDF # 1 | 9.21 x.75 x6.14l,1.40 | File type: PDF | 298 pages | ||From the Back Cover||The technologically useful properties of a solid often depend upon the types and concentrations of the defects it contains. Not surprisingly, defects in semiconductors have been studied for many years, in many cases with a view towards contr
Defects in semiconductors have been studied for many years, in many cases with a view toward controlling their behaviour through various forms of “defect engineering”. For example, in the bulk, charging significantly affects the total concentration of defects that are available to mediate phenomena such as solid-state diffusion. Surface defects play an important role in mediating surface mass transport during high temperature processing steps such as epita...
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