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Lecture
Synchrotrons and X-ray Techniques
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X-ray Techniques and Applications
Explores synchrotrons, x-ray techniques, ptychography, and nondestructive chip architecture study using PyXL.
Tomography: Imaging and Applications
Explores principles and applications of tomography, including 3D microscopy techniques and atomic-level material reconstruction.
Imaging modes in TEM
Explores imaging modes in TEM, covering electron interactions, diffraction, contrast formation, and astigmatism correction.
Beamlines: Secondary Optics Part 1
Explores applications of micron and submicron focusing, crystallography, and tomographic reconstructions in beamlines, as well as the need for secondary optics and different types of lenses.
Microscopy: Imaging Systems and Techniques
Covers the fundamentals of microscopy, including lens functioning, image creation, and advanced techniques like fluorescence and super resolution.
Generation of medical x-rays
Explores the generation of medical x-rays, including Bremsstrahlung and characteristic x-rays.
Principle of x-ray detection II: Photomultiplier Tubes
Explores the use of Photomultiplier Tubes for noiseless amplification and improving spatial resolution.
Image Processing II: Reconstruction from Projections
Explores image reconstruction in computer tomography from projections and absorption laws.
Fourier Transforms in Tomography: Inversion Techniques
Covers the application of Fourier transforms in tomography, focusing on the Radon transform and its inversion techniques.
X-ray Imaging
Explores X-ray imaging techniques in synchrotron science, covering various scales and structural complexities of materials.