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MULTI-POPULATION GENETIC ALGORITHM FOR CRYSTAL STRUCTURES SOLUTION FROM X-RAY POWDER DIFFRACTION DATA diffraction data by methods of global optimization. A common problem of these methods is a deterioration

Catalytic characteristics of NASICON-type phosphates with rare earth elements in ethanol conversion performed using XRD, IR spectroscopy, SEM, BET and BJH methods. Structural data indicated

Genetic Algorithm for Automated X-Ray Diffraction Full-Profile Analysis of Electrolyte Composition on Aluminium Smelters–6 different phases with variable microcrystalline structure. One further diffraction method is the Rietveld

Influence of rare-earth doping on the structural and dielectric properties of orthoferrite La0.50R0.50FeO3 ceramics synthesized under high pressure using X-ray diffraction, SEM, EDS, and dielectric spectroscopy methods. The La0.50R0.50FeO3 ceramics

Titanosilicalites (MFI-type): Composition, statistical and local structure, catalytic properties methods of analysis to determine the content of titanium ions in the framework. The full-profile Rietveld

Multipopulation Genetic Algorithm for Determining Crystal Structures Using Powder Diffraction DataA method for the automatic determination of crystal structures using powder diffraction data

Application of evolutionary rietveld method based XRD phase analysis and a self-configuring genetic algorithm to the inspection of electrolyte composition in aluminum electrolysis baths by the Rietveld method, which does not require the creation of multiphase reference samples and is able to take

Combined control of aluminum bath composition by X-ray diffraction and X-ray fluorescence analysis: Combined control of aluminum bath by XRD and XRF analysis compared to an accuracy of non‐automated analysis by Rietveld method. Combined application of the two X

Мультипопуляционный генетический алгоритм моделирования кристаллической структуры из рентгенодифракционных данных cluster. The local optimization is performed periodically by the full-profile structure analysis (Rietveld

Combined control of aluminum bath composition by X‐ray diffraction and X‐ray fluorescence analysis compared to an accuracy of non‐automated analysis by Rietveld method. Combined application of the two X

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