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Lecture
Tomography Techniques and Applications
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Quantifying Synchrotron Radiation: Coherence and Applications
Explores coherence in synchrotron radiation, types of coherence, and the impact of emittance on coherent fraction.
X-ray Imaging
Explores X-ray imaging techniques in synchrotron science, covering various scales and structural complexities of materials.
Beamlines: Elements of front ends and optics
Covers the essential components of beamlines in synchrotrons and x-ray lasers.
Nexray: Advancements in X-ray Technology
Explores advancements in miniaturized x-ray sources and detectors for improved medical imaging and non-destructive testing.
Transmission Electron Microscopy: Advanced Techniques
Explores advanced techniques in transmission electron microscopy, focusing on phase contrast imaging and camera settings.
Surface X-ray Diffraction II
Explores synchrotrons, x-ray lasers, relaxations, reconstructions, and superstructure rods in surface x-ray diffraction techniques.
Gamma and Neutron Radiography
Explores the principles and applications of gamma and neutron radiography in industrial settings, highlighting the advantages of using neutrons and discussing special techniques and industrial applications.
Introduction to X-rays and X-ray Sources
Covers the basics of x-rays, including generation, interactions, and applications in imaging and scattering techniques.
Synchrotron: Quantum Physics and X-ray Technology
Explores the history of quantum physics, the challenges in constructing x-ray sources, and the use of synchrotron radiation.
Diffraction-limited storage rings
Explores diffraction-limited storage rings, electron emittance, coherent fraction, and scientific benefits of advanced x-ray techniques.