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Lecture
X-ray Spectroscopy: Fundamentals and Applications
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Related lectures (32)
Synchrotrons and X-ray Techniques
Explores synchrotrons, x-ray techniques, and electron microscopy applications.
X-ray Spectroscopies: Fundamentals
Explores inelastic mean free path, universal curve, electron spin, and spin-orbit coupling in X-ray spectroscopies.
Spin-orbit interaction and topological materials
Explores spin-orbit interaction, topological materials, spin interference, and spin polarization in quantum physics.
Wigglers and Undulators: Tuning Photon Energy and Polarization
Covers tuning photon energy, selecting desired energy, varying polarization, APPLE undulators, and rapid switching.
Spectroscopy: Electronic Properties and Techniques
Explores energy spectroscopy techniques like XPS and UPS, Auger spectroscopy, surface sensitivity, and graphene band structure.
Photoelectron Spectroscopies: Techniques and Applications
Explores the photoelectric effect and various photoemission spectroscopies for chemical analysis and electronic structure determination.
Analytical Electron Microscopy: Spectroscopy and Microanalysis
Explores Analytical Electron Microscopy techniques for chemical analysis using EELS and EDX.
A Voyage Through Time: History of Optics and Scientific Method
Explores the historical development of optics, the scientific method, and the arrow of time, highlighting major paradigm shifts and the cultural differences between religion and science.
Enzymatic Catalysis & Inhibition
Explores enzymatic catalysis mechanisms and inhibition dynamics in catalysis and polymerization.
X-ray Spectroscopies: Dipole Transitions
Explores dipole transitions, symmetry rules, HOMOS, LUMOS, and Fermi's Golden Rule in X-ray spectroscopies.
Energy Dispersive X-ray Microanalysis: Fundamentals and Applications
Covers the fundamentals and applications of Energy Dispersive X-ray Microanalysis, explaining how it works and its challenges.
Chemical Kinetics: Reactions and Catalysis
Explores chemical kinetics, enzyme catalysis, and factors affecting reaction rates in biological systems.
Energy Dispersive X-ray Spectroscopy
Covers the principles and applications of Energy Dispersive X-ray Spectroscopy (EDX) in elemental analysis and quantification methods in SEM.
3D EDX: Challenges and Applications
Explores the challenges and applications of 3D EDX, including limitations, resolution, and quantification enhancement techniques.
X-ray Absorption and Emission Spectroscopy
Explores the relationship between XAS and XES, discussing energy balance and applications.
X-ray Techniques and Applications
Explores synchrotrons, x-ray free-electron lasers, and x-ray emission spectroscopies.
Synchrotron-Based Spectroscopic Techniques
Explores synchrotron-based spectroscopic techniques and their applications in local chemistry, magnetic structures, and electronic structures.
Catalysis: History and Modern Challenges
Explores the history of catalysis, Nobel Prizes in the field, types of catalysis, and modern challenges.
Circular Dichroism Spectroscopy
Explores circular dichroism spectroscopy principles, applications, and structural analysis of biomolecules.
Enzymes: Basic Concepts and Kinetics
Delves into enzymes' basic concepts, kinetics, and catalytic strategies for reaction acceleration.
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