Faculty of Applied Science 

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Nhân sự
Monday, 08 October 2012 15:35

Phòng Thí nghiệm Vật lý Tính toán

 

GS. TS. VÕ VĂN HOÀNG
Trưởng PTN Vật lý Tính Toán
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Lĩnh vực quan tâm : Computer simulation of the liquid and amorphous materials, nanomaterials, quasicrystals and monoatomic layer materials (graphene, silicene …)

 

TS. ĐỖ NGỌC SƠN
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Lĩnh vực quan tâm: Hóa lý tính toán (Computational Physical Chemistry), Khoa học vật liệu tính toán (Computational Materials Science), Mô hình hóa và mô phỏng các môi trường đậm đặc (Modeling and Numerical Simulation of Condensed Matters).

 

TS. TRẦN THỊ THU HẠNH
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TS. NGUYỄN THỊ THÚY HẰNG
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Lĩnh vực quan tâm: Bremsstrahlung in two dimensional (2D) Coulomb potential - Emitting processes in two dimensional Hidro atom in presence effect Aharono-Bohm - Molecular dynamics simulation of heterogeneous melting of crystals - Simulation of melting/cooling of 2D materials.

   

Cán bộ mời giảng

 

PGS. TS. NGUYỄN XUÂN HÙNG
Đại học Việt Đức
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Lĩnh vực quan tâm : Robust and efficient computational technology, Composite structures, Smart materials and structures, Limit and shakedown analysis, Error estimation and adaptivity, Isogeometric analysis, Optimization algorithms: Sequence quadratic and second-order cone programming, Computational Fracture and Damage Mechanics, Multi-scale homogenization computation, Real-time computations

 

PGS. TS. NGUYỄN THỜI TRUNG
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Lĩnh vực quan tâm: Advanced mathematics, applied functional analysis and variational principles in mechanics. Numerical methods (FEM, BEM, S-FEM, Meshfree) for 2D, 3D structures, plates and shells, Numerical methods for stiffened plates and shells. Numerical methods for structures subjected to fracture, fatigue (X-FEM). Reliability-based optimization (structures, topology). Intelligent optimization (Neuron Network + optimization). Reliability of structures in multiple physical environments (FORM, SORM, Monte Carlo). Geometrical nonlinear analysis and material nonlinear analysis (visco-plasticity). Analysis of structures using smart materials (composite, FGM, piezo,…). Analysis of interaction problems in multiphysical environments (fluid, solid, soil, …). Numerical methods for multiscale problems. Numerical methods for problems with moving boundaries or large deformation (ALE, IBM, …). Limit and shakedown analysis of structures (2D, 3D, plates, shells), and soil foundation. Wavelet analysis for detection of cracks and flaws. Numerical methods for Structural Health Monitoring (SHM).

 

TS. TRẦN NGUYỄN VY QUỲNH
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