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Lecture
Electron Microscopy: In Situ
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Dynamical Scattering: Bend Contours
Explains the dynamical scattering effect of bend contours in TEM images of crystalline samples.
Radiation-Matter Interaction: Electron Microscopy Introduction
Covers the principles and techniques of electron microscopy, focusing on the interaction between radiation and matter.
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Explores principles and applications of tomography, including 3D microscopy techniques and atomic-level material reconstruction.
Transmission Electron Microscopy: Imaging and Diffraction
Explores the operation of a Transmission Electron Microscope, covering imaging modes and lens effects.
TEM Lenses: Condenser, Objective, and Projector
Explores the roles of condenser, objective, and projector lenses in a TEM.
Transmission Electron Microscopy: basics
Covers the principles, applications, and components of Transmission Electron Microscopy (TEM), including imaging modes and advanced techniques.
Introduction to TEM
Covers the basics of transmission electron microscopy, including components, operation, imaging modes, diffraction analysis, and the interaction of high-energy electrons with matter.
Imaging modes in TEM
Explores imaging modes in TEM, covering electron-matter interactions, diffraction patterns, image formation, contrast principles, and detector configurations.
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Electron Microscopy: EDS and ESEM
Explores EDS and ESEM principles, x-ray detection, ionization efficiency, Moseley's law, and ESEM sample environments.