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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.
Image Processing II: Reconstruction from Projections
Explores image reconstruction in computer tomography from projections and absorption laws.
Tomography: Imaging and Applications
Explores principles and applications of tomography, including 3D microscopy techniques and atomic-level material reconstruction.
Ptychography: Techniques and Applications
Explores ptychography, a powerful imaging technique used in synchrotrons and x-ray free-electron lasers, covering its principles, applications, and experimental considerations.
X-ray Techniques and Applications
Explores synchrotrons, x-ray lasers, and phase-contrast tomography for soft matter imaging.
Introduction to X-rays and X-ray Sources: Part 3
Explores synchrotron radiation, X-ray sources, scientific achievements, and recent highlights in synchrotron science.
Bone Imaging
Explores the significance of bone imaging in biomechanics, covering various modalities and techniques for image acquisition and reconstruction.
X-ray Tomography: Principles and Applications
Explores x-ray tomography principles, including generation, interaction with matter, detection methods, and practical examples.
Tomography Techniques and Applications
Explores synchrotrons, x-ray lasers, phase-contrast tomography, fast tomography, and applications in metallic foams.
Synchrotron Radiation
Covers the properties of synchrotron radiation, including its emission by relativistic particles and its effect on the beam through radiation damping.