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Related lectures (31)
Seismic Hazard: Understanding Earthquakes
MOOC: A Resilient Future: Science and Technology for Disaster Risk Reduction
Explores the origin of earthquakes, plate tectonics, seismic activity, and hazard.
Geodetic References: Coordinates and Systems
MOOC: Elements of Geomatics
Explores geodetic references, coordinate systems, the geoid, and reference systems for accurate measurements.
Electron Diffraction: Basics and Applications
Covers the fundamentals of electron diffraction and its applications in understanding crystal structures and symmetry, including lattice vectors, lattice planes, and dark-field imaging techniques.
Crystal Structures: Miller Indices and Atom Arrangement
Explores crystal structures, Miller indices, X-ray diffraction, and solid microstructures.
Inside the powder diffraction pattern: XRD1
MOOC: Cement Chemistry and Sustainable Cementitious Materials
Explores powder diffraction patterns, covering peak positions, intensities, widths, shapes, and texture analysis.
Magnitude/Intensity: Earthquake Measurement and Effects
Explores earthquake measurement through magnitude and intensity scales, focusing on ground movement effects and energy release.
Earthquake in Greece
Discusses the earthquake in Tyrnavos, Thessaly, Greece, covering seismic engineering aspects, macroseismic intensity, peak ground acceleration, and seismic events.
Crystal Structures: Arrangement and Diffraction
Explores crystal structures, unit cells, Miller indices, and X-ray diffraction principles.
TEM imaging with diffraction contrast
Covers the basics of electron diffraction, diffraction theory, image formation, and X-ray diffraction techniques.
Macromolecular Crystallography: Techniques and Applications
Explores macromolecular crystallography techniques using synchrotrons and x-ray lasers for large molecules.
Diffraction exercises
Covers exercises on electron diffraction to identify crystal structures and analyze diffraction patterns accurately.
Multiple beam scattering in electron diffraction
MOOC: Transmission Electron Microscopy for Materials Sciences
Explores multiple beam scattering in electron diffraction, focusing on zone axis diffraction patterns and theoretical approaches.
Crystallography Fundamentals
Introduces crystallography basics, covering crystal structures, diffraction patterns, and atomic arrangements.
Synchrotrons and X-ray Techniques
Covers crystal diffraction basics, unit cells, lattice constants, and Miller indices.
Additional Transformations from/to ECEF
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Explores additional transformations between geocentric and geodetic systems, map projections, and vertical reference systems.
Geoid References: Geoid
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Explores the geoid, gravity conditions, geoid elevation, and reference systems.
Electron Diffraction: Basics & Applications
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Explores electron diffraction basics, including Bragg's law, reciprocal lattice, and applications like crystal phase discrimination.
Electron Diffraction: Basics & Applications
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Covers the basics of electron diffraction, explaining contrast in TEM images and its applications in material analysis.
Geodesy Bases: Coordinate Systems, Geoid, and Ellipsoid
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Explores geodesy basics, covering coordinate systems, geoid, and ellipsoid representations on a flat plane.
Electron Diffraction: Basics & Applications
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Explores electron diffraction fundamentals, crystal symmetry, and advanced techniques for materials analysis.
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