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Lecture
Thermal Detectors: Principles and Applications
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Untitled
Thermal Detectors: Understanding Bolometers and Their Applications
Covers the principles and applications of bolometers as thermal detectors, including their construction and integration in microbolometer arrays.
Drift Currents and Conductivity: Poisson's Equation in Semiconductors
Covers drift currents, conductivity, and the effects of scattering in semiconductors.
Semiconductor Junctions: Electric Fields and Currents
Covers semiconductor junctions, focusing on electric fields, current flow, and diode characteristics.
Diffusion Currents in Semiconductors: Principles and Equations
Covers diffusion currents in semiconductors, detailing their principles, equations, and interactions with drift currents.
Transport Properties in Semiconductors: Charge Dynamics and Conductivity
Covers the transport properties of semiconductors, focusing on charge dynamics, drift currents, and the relationship between mobility and conductivity.
Untitled
Thermopiles and Thermocouples: Principles and Applications
Explains the principles of thermocouples and thermopiles, focusing on their applications in thermoelectric devices and space exploration.
Hot Plate Experiment: Semiconductor Behavior Analysis
Covers the hot plate experiment and the behavior of silicon semiconductors under temperature gradients.
Temperature and thermal property measurements
Explores temperature measurement methods, thermal conductivity, and radiation, emphasizing practical applications and considerations.