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Insulators : types, properties and uses / Kevin L. Richardson, editor.
Material type:
- text
- computer
- online resource
- 9781611223965
- 1611223962
- 621.319/37 22
- TK3421
Contents:
INSULATORS: TYPES, PROPERTIES AND USES ; INSULATORS: TYPES, PROPERTIES AND USES ; CONTENTS ; PREFACE ; FERROMAGNETIC INSULATOR IN THE ELECTRON-DOPED MANGANITES ; ABSTRACT ; 1. INTRODUCTION ; 2. FMI IN THE OXYGEN DEFICIENCY LA0.9TE0.1MNOY MANGANITES ; 3. FMI IN THE A-SITE DOPING LA0.9TE0.1MNO3 ; 4. FMI IN THE MN-SITE DOPING LA0.85TE0.15MNO3 ; 5. FMI IN THE DIRECT MN-SITE DOPING OF LAMNO3 ; CONCLUSIONS; ACKNOWLEDGMENT ; REFERENCES; INSULATOR INSPECTION TECHNOLOGIES ; ABSTRACT ; 1. BUZZ METHOD ; 2. NEON LAMP-BASED DETECTION METHOD ; 3. POTENTIAL MEASUREMENT METHOD.
4. ELECTRIC FIELD MEASUREMENT METHOD 5. RESISTANCE MEASUREMENT METHOD; 6. FREQUENCY RESPONSE-BASED DETECTION METHOD; 7. INFRARED CAMERA DETECTION METHOD ; 8. CORONA CAMERA DETECTION METHOD ; 9. CORONA PULSE CURRENT MEASUREMENT METHOD ; 10. HIGH VOLTAGE PULSE-APPLIED DETECTION METHOD ; 11. MANUAL FAULTY INSULATOR DETECTORS ; 12. AUTOMATIC INSULATOR INSPECTION ROBOTS ; REFERENCES ; HIGH-K DIELECTRIC INSULATORS USED IN LOW-VOLTAGE ORGANIC FIELD-EFFECT TRANSISTORS; ABSTRACT; 1. INTRODUCTION ; 2. POLYMER MICROFIBER-BASED FET-CHANNEL-PATTERNING ; 3. SELF-CAPSULATED AMBIPOLAR ORGANIC FET.
4. LOW-VOLTAGE ORGANIC FETS BY USING HIGH-K INSULATORS 5. SRTIO3 NANOPARTICLES AND ELECTROPHORETIC DEPOSITION ; SUMMARY ; REFERENCES; QUANTUM NON-MAGNETIC STATES NEAR METAL-INSULATOR TRANSITION: A NEW CANDIDATE OF SPIN LIQUID STATE; Abstract; 1. Introduction; 2. The Generalized Hubbard Models; 2.0.1.2D -flux Hubbard model; 2.0.2. The Hubbard model on honeycomb lattice; 3. Metal-Insulator Transition; 4. Effective Nonlinear Model in the Insulator State; 5. Global Phase Diagram; 5.1. Large-N Approximation; 5.2. Global Phase Diagram of -flux Hubbard Model.