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uploaded using the dedicated electronic form. helpdesk: petra.koudelova@fsv.cvut.cz Mathematical Modelling and Numerical Simulation of Flow, Transport and Phase Transitions Description: Investigation of free
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optimization of advanced reconstruction and control algorithms, combining numerical modeling, inverse problem techniques, and AI-driven approaches, together with experimental validation to improve imaging
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on the design, optimization, analytical and numerical evaluation of the performance and practical implementation of novel linear and non-linear backscatter-based identification and sensing transponders and
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based on nanocrystalline material. Starting from material treat gment and testing, analytical solution based on vector potential, through the numerical FEM model, physical model and prototype
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Description: The framework topics deal with experimental analysis, numeric simulations, and modeling of processes in individual biorefinery processing steps – pretreatment, waste to X conversion technology
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-Kovchegov equation (BK), an integro-diferential equation with divergent kernel. Since there is no analytic method for solving the BK equation, one has to do it numerically. Complementary to that, the particle
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data, numerical simulations, and data-driven approaches to uncover structure–property–process relationships and enable predictive modeling. Particular emphasis will be placed on state-of-the-art
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IT4Innovations National Supercomputing Center, VSB - Technical University of Ostrava | Czech | 23 days ago
. · apply numerical and theoretical methods to explore magnetic behavior at the atomistic level, · refine the project’s research objectives based on emerging findings, · independently propose and pursue
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IT4Innovations National Supercomputing Center, VSB - Technical University of Ostrava | Czech | 23 days ago
investigations focused on spin dynamics, · Perform numerical simulations to study: - ultrafast magnetization phenomena, - interactions with surface acoustic waves, - propagation of sound waves in the presence of a
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large-scale numerical simulations to design a laser-based optical system capable of efficiently generating electron-positron pairs through the collision of structured laser pulses. The research liesat