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Related lectures (9)
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Surface Energy and Semiconductor Nanostructures
Explores surface energy, semiconductor surface reconstruction, band schemes, and donor deactivation in silicon nanostructures.
Field Mapping in Semiconductor Devices
Explores field mapping in semiconductor devices using advanced electron microscopy techniques.
Doping in Semiconductors: Energy Band Models
Covers the impact of doping on semiconductor properties and energy levels.
Semiconductor Physics: Band Formation and Experiments
Covers semiconductor band formation and presents experiments demonstrating charge carrier behavior and wave-particle duality in electrons.
Defects in 2D Materials
Explores common defects in 2D materials, their impact, mitigation strategies, and positive applications.
Free Electrons and Holes (Electronics)
Explores the manipulation of charge carriers in semiconductors to generate electric fields.
Fermi Levels: Temperature Effects on Semiconductor Behavior
Covers the impact of temperature on Fermi levels in doped semiconductors, analyzing behavior at 300 K, 600 K, and 77 K.
Optical Properties of Semiconductors
Explores the optical properties of semiconductors, including absorption spectrum changes and exciton physics.
Grain Growth & Liquid Phase Sintering
Explores grain growth, dopants effect, pore evolution, and liquid phase sintering in ceramics.
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