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Lecture
Microscopy: Resolution
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Related lectures (31)
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Microscopy Resolution: Understanding Diffraction Patterns
Explores microscopy resolution through diffraction patterns of various apertures and the use of spatial filters.
Fourier Optics: Wavefront Analysis
Explores Fourier optics, diffraction principles, Fourier analysis, and the application of Fourier transform in optics.
Diffraction: Fraunhofer and Fourier Transform
Covers the concepts of diffraction and Fourier transform relationship in Fraunhofer regime.
Diffraction Basics II: Rules and Applications
Explores the rules of interference and diffraction patterns, including Young's experiment and Bragg's law.
Fourier transforms: Light-matter interaction
Explores Fourier and Laplace transforms in materials science, focusing on light-matter interaction, diffraction patterns, and crystal properties.
Spatial Frequencies and Wave Propagation
Explores spatial frequencies, wave propagation, diffraction phenomena, and optical filtering techniques.
Microscopy Resolution: Understanding Rayleigh Criteria
Explains microscopy resolution using Abbe's theory and Rayleigh criterion.
Fourier Transform: Diffusion Equation
Explores the derivation of the diffusion equation using Fourier transforms and discusses the significance of Dirac delta functions in mathematical analysis.
Reciprocal Lattice: Diffraction Basics III
Explores the reciprocal lattice, diffraction patterns, and atomic structure extraction.
Transmission Electron Microscopy: Imaging and Diffraction
Explores the operation of a Transmission Electron Microscope, covering imaging modes and lens effects.