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Publications by Hakim Naceur
Smoothed Finite Element Method Implemented in a Resultant Eight-Node Solid-Shell Element for Geometrical Linear Analysis
Computational Mechanics
Mechanical Engineering
Applied Mathematics
Computational Theory
Mathematics
Computational Mechanics
Computational Mathematics
Ocean Engineering
Fracture Mechanics in New Designed Power Module Under Thermo-Mechanical Loads
MATEC Web of Conferences
Materials Science
Engineering
Chemistry
Related publications
A Cell-Based Smoothed Finite Element Method for Kinematic Limit Analysis
International Journal for Numerical Methods in Engineering
Applied Mathematics
Numerical Analysis
Engineering
Assumed-Strain Solid–shell Formulation for the Six-Node Finite Element SHB6: Evaluation on Non-Linear Benchmark Problems
European Journal of Computational Mechanics
Mechanics of Materials
Modeling
Mechanical Engineering
Simulation
Electric Potential Approximations for an Eight Node Plate Finite Element
Computers and Structures
Materials Science
Mechanical Engineering
Civil
Structural Engineering
Simulation
Computer Science Applications
Modeling
Four- And Eight-Node Hybrid-Trefftz Quadrilateral Finite Element Models for Helmholtz Problem
Computer Methods in Applied Mechanics and Engineering
Mechanics of Materials
Mechanical Engineering
Computer Science Applications
Computational Mechanics
Astronomy
Physics
Discontinuous Hamiltonian Finite Element Method for Linear Hyperbolic Systems
Journal of Scientific Computing
Numerical Analysis
Applied Mathematics
Computational Theory
Engineering
Computational Mathematics
Mathematics
Theoretical Computer Science
Software
Dispersion Error Analysis of Stable Node-Based Finite Element Method for the Helmholtz Equation
Communications in Computational Physics
Astronomy
Physics
Analysis of Finite Element Methods for Linear Hyperbolic Problems
Lecture Notes in Computational Science and Engineering
Control
Combinatorics
Discrete Mathematics
Simulation
Engineering
Optimization
Modeling
Computational Mathematics
Investigation of Hydrodynamically Dominated Membrane Rupture, Using Smoothed Particle Hydrodynamics–Finite Element Method
Fluids
Transfer Processes
Fluid Flow
Condensed Matter Physics
Mechanical Engineering
Geometrical Nonlinear Analysis of Curved I-Girders Under Bending Using Mixed Finite Element Method.
Doboku Gakkai Ronbunshu