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Heat Treated Boron-doped Monocrystalline Germanium Deformed and Physical and Mechanical Properties

By Chubinidze, George

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Book Id: WPLBN0003841655
Format Type: PDF eBook :
File Size:
Reproduction Date: 2015

Title: Heat Treated Boron-doped Monocrystalline Germanium Deformed and Physical and Mechanical Properties  
Author: Chubinidze, George
Language: Georgian
Subject: Georgian, Boris Termiuli Processing, Chemical Engineering
Collections: National Library of Georgia
Publication Date:
Publisher: Library of Georgia


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Chubinidze, G. (2013). Heat Treated Boron-doped Monocrystalline Germanium Deformed and Physical and Mechanical Properties. Retrieved from

Table of Contents
TOC: List of Drawings; List of tables; Introduction; 1.Literaturuli Review; 1.1. Monocrystalline Germanium Dislocation Structure and Physical Mechanical Characteristics; 1.2. Ge and Ge-Si Single Crystals With Dislocation Mobility; 1.3. Dislocation Monocrystalline Germanium in Electrical Activity; 2. Results and Discussion; 2.1. Germanium Crystals Massive Reception and Research Methods; 2.1.1. Germanium Crystals Massive Reception; 2.1.2. Microstructure Research Methods; 2.1.3. Electrophysical Characteristics of Measurement Methods; 2.1.4. Micro-Determination; 2.1.5. Study Dilatometric Method of thermal Expansion; 2.1.6. internal Friction and Shear Modulus Measurement Method; 2.2. .Germaniumis Massive Crystal Microstructure; 2.3. Boron Doping Effect on the Electrophysical Properties of Germanium Crystals Massive; 2.4. Boron-Doped Germanium Crystal Micro; 2.5. Germanium Crystals Massive thermal Expansion; 2.6. Germanium Crystals Massive Physical and Mechanical Properties; 2.6.1. Low-Temperature Polycrystalline Germanium internal Friction Spectrum; 2.6.2. Boris Impact of Monocrystalline Germanium Low-Temperature Spectra of internal Friction and Shear Modulus; 2.6.3. Germanium Crystals Massive Strukturulad- Sensitive Mechanical Properties; 2.6.4. Boron-Doped Monocrystalline Germanium Dinamiurimekanikuri Properties; 2.6.5. Boron-Doped Monocrystalline Germanium in Relaxation Processes; Conclusion; the References Should Be.


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