Results 1 to 10 of 10, sorted by name.
M. Jesus Dianez-Millan (Instituto de Ciencia de Materiales, CSIC- Universidad de Sevilla, Spain) General scientific interests: ceramics, charge density, chemical crystallography, databases, electron diffraction, electron microscopy, hydrogen bonding, materials science, natural products, organic compounds, Rietveld method, small molecules, structure determination, synchrotron radiation, teaching and education, X-ray diffraction. Detailed scientific research interests: lattice energy, organic structure. | ||||
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Efthimia G. Doni (Dept. of Physics, Aristotle University of Thessaloniki, Greece) Detailed scientific research interests: lattice symmetries, structure and energy of crystal interfaces, triple junctions. | ||||
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Eugenia Estop (Departament de Geologia, Universitat Autònoma de Barcelona, Spain) General scientific interests: diffuse scattering, disorder, imaging, materials science, neutron scattering, phase transitions, polymorphism, powder diffraction, Rietveld method, symmetry, teaching and education, texture, twinning, X-ray diffraction. Detailed scientific research interests: background in powder diffraction, intermolecular interactions, lattice energy, molecular alloys, molecular motion, molecular packing, molecular thermal vibration, phase diagrams, rigid-body analysis, solid-state NMR. | ||||
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M. Dolores Estrada (Univ. Sevilla, Dep. Física de la Materia Condensada, Appdo. 1065, Spain) Detailed scientific research interests: crystal structure determination, lattice energy, X-ray diffractometry. | ||||
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![]() | Leslie Glasser (Applied Chemistry, Curtin University of Technology, Australia) General scientific interests: computing, crystal engineering, hydrogen bonding, inorganic compounds, materials science, minerals, molecular modelling, phase transitions, teaching and education. Detailed scientific research interests: computer modelling, computer-aided education, lattice energy. | |||
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Alexandr M. Golubev (Department of Chemistry, Moscow N. E. Bauman State Technical University, Russian Federation) General scientific interests: crystal chemistry, disorder, inorganic compounds, structure determination, teaching and education. Detailed scientific research interests: inorganic crystal chemistry, ionic conductivity, lattice energy, quasicrystals, superstructures. | ||||
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![]() | Thomas Christian Hansen (Science Division / Diffraction Group, Institut Max von Laue-Paul Langevin, France) General scientific interests: ceramics, chemical crystallography, computing, crystal chemistry, data collection and processing, diffuse scattering, disorder, geochemistry, glasses, high pressure, inorganic compounds, instrumentation, magnetism, materials science, minerals, neutron scattering, oxides, phase transitions, powder diffraction, Rietveld method, structure determination, superconductors, teaching and education, texture, time-resolved studies, zeolites. Detailed scientific research interests: ab initio structure determination, lattice energy calculation, Monte-Carlo simulation, position-sensitive detectors. | |||
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Hans Preut (Fachbereich Chemie, Universität Dortmund, Germany) General scientific interests: chemical crystallography, organic compounds, organometallic compounds, residual stress, small molecules. Detailed scientific research interests: history of X-ray crystallography, lattice energy calculation, postage stamps and crystallography, service crystallography. | ||||
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John Sinclair Reid (Aberdeen University, Department of Physics, Meston Building, United Kingdom) General scientific interests: diffuse scattering. Detailed scientific research interests: absorption correction, energy-dispersive analysis, lattice dynamics. | ||||
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Martin U. Schmidt (Institute of Inorganic and Analytical Chemistry, Goethe-University Frankfurt, Germany) General scientific interests: computing, disorder, organic compounds, powder diffraction, Rietveld method. Detailed scientific research interests: calculation and prediction of molecular crystal structures, crystallization of almost unsoluble organic compounds, determination of organic crystal structures from X-ray powder data, disorder in organic crystals, lattice energy optimizations, organic pigments, pharmaceuticals, structure-property relationships. | ||||
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