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Study of real structure of the matter by X-ray, neutron and electron diffraction, transmission and scanning electron microscopy.
Kinematic theory of diffraction by real crystals and classification of lattice defects.
Elements of electron diffraction. Classification of stresses and their determination. Textures.
Study of crystallite size, shape and distribution.
Grain boundaries - small-angle, high-angle, twinned. Fracture surfaces. Grain misorientation.
Lattice defects - dislocation - density, Burgers vector, type, stacking faults, antiphase boundaries.
Point defects and precipitates.
Last update: T_KFES (23.05.2003)
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The subject is termianted by the oral exam. The requirements for the exam correspond to the syllabus/handout which was presented at the lectures. Last update: Janeček Miloš, prof. RNDr., CSc. (08.06.2019)
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Jens Als-Nielsen, Des McMorrow: Elements of Modern X-Ray Physics, Wiley 2011 Ullrich Pietsch, Vaclav Holy, Tilo Baumbach: High-Resolution X-Ray Scattering: From Thin Films to Lateral Nanostructures, Springer 2004 Last update: Mikšová Kateřina, Mgr. (14.05.2019)
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Study of real structure of the matter by X-ray, neutron and electron diffraction, transmission and scanning electron microscopy. Kinematic theory of diffraction by real crystals and classification of lattice defects. Elements of electron diffraction. Classification of stresses and their determination. Textures. Study of crystallite size, shape and distribution. Grain boundaries - small-angle, high-angle, twinned. Fracture surfaces. Grain misorientation. Lattice defects - dislocation - density, Burgers vector, type, stacking faults, antiphase boundaries. Point defects and precipitates. Last update: T_KFES (23.05.2005)
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