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Lecture
Spatial Resolution in Optics
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Electron Microscopy: TEM
Explores Transmission Electron Microscopy (TEM), covering diffraction patterns, image formation, and contrast mechanisms.
Transmission Electron Microscopy: Imaging and Diffraction
Explores the operation of a Transmission Electron Microscope, covering imaging modes and lens effects.
Microscopy Resolution: Understanding Rayleigh Criteria
Explains microscopy resolution using Abbe's theory and Rayleigh criterion.
Beamlines: Elements of Front Ends and Optics
Explores the basic elements of optics theory, edge diffraction, and limits to focusing light.
Microscopy Resolution: Understanding Diffraction Patterns
Explores microscopy resolution through diffraction patterns of various apertures and the use of spatial filters.
Electron Microscopy Components
Covers electron microscope components, vacuum systems, aberrations, detectors, and specimen holders.
Human Vision: Optics and Perception
Explores human vision optics, eye structure, image formation, magnification, and wave divergence.
Concept of a Telescope
Covers the principle and types of telescopes, historical examples, resolution factors, and interferometers.
Transmission Electron Microscopy
Covers the principles and applications of Transmission Electron Microscopy, including imaging, diffraction, contrast mechanisms, and in situ techniques.
Fourier Optics: Wavefront Analysis
Explores Fourier optics, diffraction principles, Fourier analysis, and the application of Fourier transform in optics.