MSE585 F20 Lecture 13 Module 3 - XRD Scan Conditions
MSE585 F20 Lecture 3 Module 3 - Light Microscopy Instrumentation
MSE585 F20 Lecture 18 Module 2 - EM Lenses & Probe Size
MSE585 F20 Lecture 18 Module 3 - Electron-Specimen Interactions
MSE585 F20 Lecture 13 Module 2 - Practical Aspects of XRD
MSE585 F20 Lecture 13 Module 4 - XRD Distortions: Peak Broadening
MSE 585 F20 Lecture 18 Module 5 - SEM Scanning
MSE585 F20 Lecture 14 Module 3 - Example of Indexing Cubic Structures
MSE585 F20 Lecture 9 Module 3 - Reciprocal Lattices Part 1
MSE585 F20 Lecture 9 Module 5 - Reciprocal Lattices Part 3
MSE585 F20 Lecture 13 Module 1 - Bragg-Brentano Geometry
MSE585 F20 Lecture 9 Module 1 - Centering Translations & Bravais Lattices
MSE585 F20 Lecture 18 Module 6 - SEM Depth of Field
MSE585 F20 Lecture 7 Module 4 - Example Problems of Points, Directions and Planes
Menno Fraters: Computing Crystal/Lattice preferred orientation in ASPECT
Crystals, Symmetry and Tensors - Lecture 9a (Matrix Representation of symmetry operation-I)
Diffractometers and Detectors
Part 3: Defocus and Its Effects - G. Jensen
Lecture 13: Nucleation Mass balance and X-Ray Scattering
MSE585 F20 Lecture 9 Module 6 - Reciprocal Lattices Part 4