57.1 Introduction 57.2 Classification of Magnetooptic Effects David Young Faraday Rotation or Magnetic Circular Birefringence.Cotton- Rockwell Semiconductor Systemns Mouton Effect or Magnetic Linear Birefringence. Kerr Effects
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56.1 Introduction 56.2 Physical Sensors Temperature Sensors.Displacement and Force. Optical Radiation 56.3 Chemical Sensors Ion-Selective Electrode. Gas Chromatograph 56.4 Biosensors
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55.1 Introduction 55.2 Dielectric Losses 55.3 Dielectric Breakdown 55.4 Insulation Aging R.Bartnikas 55.5 Dielectric Materials Institut de Recherche Gases. Insulating Liquids. Solid Insulating Materials
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54.1Introduction 54.2 Polar Dielectrics Roger W.Whatmore 54.3 The Pyroelectric Effect Cranfield University 54.4 Pyroelectric Materials and Their Selection 54.1 Introduction
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53.1 Introduction Terry P. Orlando 53.2 General Electromagnetic Properties Massachusetts Institute of 53.3 Superconducting Electronics Technology 53.4 Types of Superconductors 53.1 Introduction The fundamental idea behind all of superconductorsu' properties is that superconductivity is quantum
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52.1 Introduction 52.2 Theoretical Background Alexander C. Ehrlich 52.3 Relation to the Electronic Structure-(i) ot >1
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51.1 Introduction 51.2 Equation of State 51.3 Effect of Crystal Point Group on 51.4 Geometric Corrections and Elastoresistance Tensor 51.5 Multivalley Semiconductors 51.6 Longitudinal Piezoresistivity II, and Maximum Sensitivity
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50.1 Introduction 50.2 Defining Equations Piezoelectricity and Electrostriction. Electrostriction and V. Sundar and Compliance Matrices Magnitudes and Signs of Electrostrictive R.E. Newnham Coefficients
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49.1 Introduction 49.2 Mechanical Characteristics Applications. Structure of Ferroelectric and Piezoelectric Materials 49.3 Ferroelectric Materials K. F.Etzold Electrical Characteristics
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48.1 Introduction 48.2 Propagation in Solids 48.3 Piezoelectric Excitation Gerald. Farnell 48.4 One-Dimensional Propagation McGill University 48.5Transducers 48.1 Introduction
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