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Exploring Synchrotron and XFEL Radiation: Applications and Techniques
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X-rays: From Discovery to Applications
Explores the historical perspective, properties, and applications of X-rays, including diffraction, atomic resolution, and spectral colors of elements.
Basic concepts of photons and x-rays
Explores the interaction of x-rays with matter, matching photon energy, and ionizing radiation.
Inelastic Scattering in Transmission Electron Microscopy
Introduces inelastic scattering in transmission electron microscopy, focusing on electron energy-loss spectroscopy principles and applications.
Introduction to X-rays and X-ray Sources: Part 3
Explores synchrotron radiation, X-ray sources, scientific achievements, and recent highlights in synchrotron science.
Electron Diffraction: Basics & Applications
Explores electron diffraction fundamentals, crystal symmetry, and advanced techniques for materials analysis.
Introduction to X-rays and X-ray Sources
Covers the basics of x-rays, including generation, interactions, and applications in imaging and scattering techniques.
Analytical Electron Microscopy: Spectroscopy and Microanalysis
Explores Analytical Electron Microscopy techniques for chemical analysis using EELS and EDX.
Principles of Lasers: Optical Tweezers
Explores the principles of lasers, including lasing transitions and optical tweezers, with applications in various fields.
Interactions of X-rays with Tissue: Rayleigh & Compton
Explains the interactions of x-rays with tissue, emphasizing Rayleigh and Compton scattering.
Instrumental Chemistry Examples
Covers instrumental chemistry techniques like X-ray diffraction and mass spectrometry for analyzing biological compounds.