DIELECTRICS AND MULTIPHYSICAL COUPLINGS
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Objective: Present the essential notions of the field of dielectric as well as the main observed physical couplings (electromechanical, piezoelectric, electro-calorific, magnetoelectric, etc.)
Content:
DIELECTRICS:
I- Dielectrics:Theoretical bases
1. General
2- Polarization of dielectrics
3. Different types of polarization
4. Conduction and displacement currents in an insulator
5. Transient currents in insulators
6. Frequency response and dielectric losses of insulators
II- Dielectric properties of plastics
1. Dielectric behavior of polymers
2. Resistivity
3. Semiconductor and conductive polymers
4. Dielectric strength
MULTIPHYSICAL COUPLINGS
III- Piezoelectricity:
1. Piezoelectricity
2. Mechanical properties of a piezoelectric material
3. Piezoelectric materials.
4. Applications of piezoelectric materials
IV- Pyroelectricity:
1. Pyroelectricity
2. Applications of pyroelectric materials
3. Pyroelectric materials.
V- Ferroelectricity
1. Ferroelectricity and electronic applications
2. Ferroelectricity and optical applications
3. Progress on thin-film ferroelectric materials
VI- Magnetoelectricity:
1- General information on the magnetostrictive effect
2- Magnetoelectricity
VII- Application: Sensors
1. Definitions
2. Classification of sensors
3. Performance of a sensor
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