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X-ray Techniques and Applications
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Related lectures (32)
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Introduction to X-rays and X-ray Sources: Part 2
Compares synchrotrons and X-ray free-electron lasers, emphasizing their brightness for scientific experiments.
Enhancing and Shaping Radiation from High-Energy Particles with Nanophotonics
Delves into enhancing and tailoring radiation from high-energy particles using nanophotonic structures.
Interactions of X-rays with Matter: Insights and Calculations
Explores x-ray interactions with matter, covering cross-sections, Lambert-Beer law, and attenuation lengths.
Synchrotrons and X-ray Techniques
Covers synchrotrons, x-ray techniques, and variations on tomography methods with practical examples.
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.
Basis of contrast for x-ray imaging
Explains linear attenuation coefficient, photon absorption, scattering, and typical attenuation coefficients for materials.
X-ray Tomography Practical: Introduction
Covers practical aspects of X-ray tomography, including photon interaction and sample intensity measurement.
Synchrotrons and X-ray Imaging
Explores synchrotrons, X-ray imaging techniques, nanomagnetism, and biological structures at multiple length scales.
Phase-Contrast Tomography: Techniques and Applications
Explores phase-contrast imaging techniques and applications in various samples.
Synchrotron Radiation
Covers the properties of synchrotron radiation, including its emission by relativistic particles and its effect on the beam through radiation damping.