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X-ray Techniques and Applications
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Related lectures (32)
Surface X-ray Diffraction I
Explores Surface X-ray Diffraction (SXRD) basics, goals, CTRS, and experimental stability for surface 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.
Introduction to X-rays and X-ray Sources: Part 3
Explores synchrotron radiation, X-ray sources, scientific achievements, and recent highlights in synchrotron science.
Thin Films: Growth and Interfaces
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Explores dislocation motion, thin film growth models, and interface nature in modern technology.
Polarized Light: Reflection and Lenses
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Explores circular polarized waves, reflection, lenses, and human vision optics.
Wave-Matter Interaction: Diffraction and Diffusion Phenomena
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Discusses wave-matter interactions, focusing on diffraction and diffusion phenomena, including principles of reflection, refraction, and the significance of X-ray interactions.
Electron Diffraction: Basics & Applications
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Explores electron diffraction fundamentals, crystal symmetry, and advanced techniques for materials analysis.
Dislocations: Glide vs. Climb
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Explores the mechanisms of glide and climb motion for dislocations and different types of interfaces in materials.
Radiative Properties of Surfaces
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Explores relations between surface radiative properties, predictions from electromagnetic wave theory, and view factors for diffuse surfaces.
Optical Fiber Sheath: Advantages and Principles
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Explores the benefits of sheathing optical fibers and fundamental wave propagation principles.
Radiative Properties of Surfaces
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Explores relations between surface radiative properties, predictions from wave theory, and view factors for complex configurations.
STEM and EDX
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Covers STEM and EDX principles, X-ray generation, quantification methods, and analytical TEM applications.
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