Related lectures (33)
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Explores electric fields, conductors, Gauss' law, charge distribution, and induction.
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Introduces the weak bond model for electronic materials, focusing on molecular orbitals and defect formation.
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Explores transport, recombination, dark conductivity, and photoconductivity in electronic materials, emphasizing the significance of recombination mechanisms in semiconductors.
Diffusion in Compound Alloys
Covers diffusion in compound alloys, chemical diffusion, ionic crystals, and defects.
Efficient Data Clustering
Covers efficient data exploitation through clustering methods and the optimization of market returns using asset clustering.
Defects: Structure and Stability
Explores the structure and stability of defects in crystals, emphasizing their impact on material properties.
Real Surfaces: Defects and Reconstructions
Explores the difference between ideal and real surfaces, defects, and surface reconstructions.
Defect Creation in Large Area Electronic Materials
Explores defect creation in large area electronic materials, focusing on amorphous silicon and discussing doping efficiency, estimated defect density, and light-induced defects.
Defects in 2D Materials
Explores common defects in 2D materials, their impact, mitigation strategies, and positive applications.
Statistical Mechanical Resistance: Ceramics
Covers statistical mechanical resistance in ceramics, including Weibull statistic and stable cracking behavior in compression.

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