Related lectures (38)
Charge Carriers in Organic Electronics: Solitons and Polarons
Discusses charge carriers in organic materials, focusing on solitons, polarons, and their implications for charge transport and device performance.
Plasma State: Properties and Effects
Covers the definition and properties of plasma, including ionization and collective effects.
Semiconductors: Basic Properties
Explores the basic properties of semiconductors, including conductivity, impurities, band gaps, and crystal structures.
Carrier Statistics and Fermi Energy
Covers the Fermi-Dirac function, carrier distribution, and band edges.
Weak Bond Model: Electronic Materials
Introduces the weak bond model for electronic materials, focusing on molecular orbitals and defect formation.
Semiconductor Physics: Carrier Transport and Recombination
Explores semiconductor physics under high electric fields, discussing carrier transport, recombination processes, and the impact of injection.
Semiconductor Absorption: Band-to-Band Process
Explores band-to-band absorption in semiconductors, defect bands impact, and color origins.
Inelastic Scattering in Transmission Electron Microscopy
Introduces inelastic scattering in transmission electron microscopy, focusing on electron energy-loss spectroscopy principles and applications.
Electronic Materials: Optical Properties
Explores electronic and optic properties of materials with lattice structures, including energy bands and band gaps.
Semiconductor Physics: Transistors and Diodes
Explores semiconductor physics, emphasizing transistors and diodes' behavior and operation.

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