Electronic ceramics in high temperature environments
Conference
·
OSTI ID:6613935
Simple thermodynamic means are described for understanding and predicting the influence of temperature changes in various environments on electronic properties of ceramics. Thermal gradients, thermal cycling and vacuum annealing are discussed, as well as the variations of activities and solubilities with temperature.
- Research Organization:
- California Univ., Berkeley (USA). Lawrence Berkeley Lab.
- DOE Contract Number:
- W-7405-ENG-48
- OSTI ID:
- 6613935
- Report Number(s):
- LBL-11821; CONF-801034-8; TRN: 81-004772
- Resource Relation:
- Conference: 33. ACS Pacific Coast meeting, San Francisco, CA, USA, 28 Oct 1980
- Country of Publication:
- United States
- Language:
- English
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Electronic ceramics in high-temperature environments
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OSTI ID:6613935
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Related Subjects
36 MATERIALS SCIENCE
CERAMICS
ELECTRONIC STRUCTURE
SEMICONDUCTOR MATERIALS
CHARGE CARRIERS
CHEMICAL COMPOSITION
DOPED MATERIALS
GALLIUM SULFIDES
LEAD SULFIDES
QUANTITY RATIO
TEMPERATURE DEPENDENCE
THERMODYNAMICS
TITANIUM BORIDES
TITANIUM CARBIDES
TITANIUM HYDRIDES
BORIDES
BORON COMPOUNDS
CARBIDES
CARBON COMPOUNDS
CHALCOGENIDES
GALLIUM COMPOUNDS
HYDRIDES
HYDROGEN COMPOUNDS
LEAD COMPOUNDS
MATERIALS
SULFIDES
SULFUR COMPOUNDS
TITANIUM COMPOUNDS
TRANSITION ELEMENT COMPOUNDS
360204* - Ceramics
Cermets
& Refractories- Physical Properties
CERAMICS
ELECTRONIC STRUCTURE
SEMICONDUCTOR MATERIALS
CHARGE CARRIERS
CHEMICAL COMPOSITION
DOPED MATERIALS
GALLIUM SULFIDES
LEAD SULFIDES
QUANTITY RATIO
TEMPERATURE DEPENDENCE
THERMODYNAMICS
TITANIUM BORIDES
TITANIUM CARBIDES
TITANIUM HYDRIDES
BORIDES
BORON COMPOUNDS
CARBIDES
CARBON COMPOUNDS
CHALCOGENIDES
GALLIUM COMPOUNDS
HYDRIDES
HYDROGEN COMPOUNDS
LEAD COMPOUNDS
MATERIALS
SULFIDES
SULFUR COMPOUNDS
TITANIUM COMPOUNDS
TRANSITION ELEMENT COMPOUNDS
360204* - Ceramics
Cermets
& Refractories- Physical Properties