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Related lectures (30)
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Quantum Mechanics: Energy Levels
Explores energy levels of particles, hydrogen-like atoms, quantum numbers, molecular bonding, and vibrational states.
Transmission Electron Microscopy
Covers the principles and applications of Transmission Electron Microscopy, including imaging, diffraction, contrast mechanisms, and in situ techniques.
Electron Microscopy: TEM
Explores Transmission Electron Microscopy (TEM), covering diffraction patterns, image formation, and contrast mechanisms.
Untitled
Molecular Energy and Photons
Covers molecular energy, photons, and their interactions in the electromagnetic spectrum.
Atomic Structure: Real Atom
Explores the real atom, electron distribution rules, molecular and band structure computation methods, and the Born-Oppenheimer approximation.
Tomography: Principles and Applications
Explores the principles and applications of tomography, showcasing examples of direct tomography and advanced imaging techniques.
Microscopy in situ and TEM Q&A
Explores in situ electron microscopy applications, traction experiments, environmental effects, XRD, and EDS.
Kinetic Theory of Gases: Microscopic Pressure and RMS Velocity
Explores the kinetic theory of gases, focusing on microscopic pressure and RMS velocity.
Dynamical Scattering: Bend Contours
Explains the dynamical scattering effect of bend contours in TEM images of crystalline samples.