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International Workshop on Mathematical Theory, Methods and Application in Materials Simulation
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International Workshop on Mathematical Theory, Methods and Application in Materials Simulation
About
Speakers
Schedule
Program
Contact Us
INS
Speakers
Xiaoyu Chong
Kunming University of Science and Technology
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【Online】高通量第一性原理计算耦合相图热力学:模型构建及工程应用
Shuyang Dai
Wuhan University
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Comparative study of atomistic-based stress evaluation
Rui Du
Soochow University
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Improved Gauss-Seidel projection methods for micromagnetic simulations
Zhenlin Guo
Beijing Computational Science Research Center
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A diffuse domain method for solving PDEs in complex domain
Guanghui Hu
University of Macau
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Towards efficient simulations of KS/TDKS models in a unified framework
Kai Jiang
Xiangtan University
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【Online】Computing Quasiperiodic Systems
Wei Jiang
Wuhan University
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Phase field approach for simulating solid-state dewetting problems
Mingjie Liao
Shanghai Jiao Tong University
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Adaptive QM/MM Coupling Methods for Crystalline Defects
Yu Liu
Institute of Applied Physics and Computational Mathematics
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【Online】强关联电子体系第一性原理DFT+DMFT计算方法简介
Guisen Liu
Shanghai Jiao Tong University
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Coupled crystal plasticity finite element with phase field method in modeling the plastic deformation of metallic materials
Qiang Ma
Sichuan Univesity
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High-order multi-scale asymptotic analysis and computation of axisymmetric piezoelectric problem for composite structures
Chaoyu Quan
Southern University of Science and Technology
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A domain decomposition method for the Poisson-Boltzmann solvation model
Yangshuai Wang
Shanghai Jiao Tong University
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The Applications of Data-Driven Interatomic Potentials to QM/MM Coupling Methods
Zhenli Xu
Shanghai Jiao Tong University
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Random-Batch Ewald Algorithm
Zhijian Yang
Wuhan University
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Boundary Condition for Dislocation Dynamic Simulation in BCC Crystal
Luchan Zhang
The Hong Kong University of Science and Technology
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【Online】Dynamics of Grain Boundaries with Microscopic Constraints
Linfeng Zhang
Beijing Institute of Big Data Research
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Efficient sampling of high-dimensional free energy landscapes using adaptive reinforced dynamics