Finite element method

An energy absorption comparison of square, circular, and elliptic steel and aluminum tubes under impact loading

Mechanical Engineering / Structural Engineering / Finite element method / Impact / Energy absorption / Axial Crushing

Pore effect on macroscopic physical properties: Composite elasticity determined using a two-dimensional buffer layer finite element method model

Finite element method / Multidisciplinary / Geophysical / Physical Properties / Functional Form / Elastic Constant / Compression test / Elastic Constant / Compression test

Ultradirective antenna via transformation optics

Engineering / Applied Physics / Finite element method / Finite Element / Finite Element Analysis / Numerical Simulation / Mathematical Sciences / Physical sciences / Directional Antenna / Electromagnetic Field / Galerkin Method / Radiation Pattern / Numerical Simulation / Mathematical Sciences / Physical sciences / Directional Antenna / Electromagnetic Field / Galerkin Method / Radiation Pattern

Elliptic reconstruction and a posteriori error estimates for fully discrete linear parabolic problems

Applied Mathematics / Finite element method / Finite Element / Higher Order Thinking / Parabolic Wave Equation / Adaptive Mesh Refinement / Time Dependent / Numerical Analysis and Computational Mathematics / Point of View / Finite Element Approximation / Direct Method / Exact solution methods / Order of Convergence / Adaptive Mesh Refinement / Time Dependent / Numerical Analysis and Computational Mathematics / Point of View / Finite Element Approximation / Direct Method / Exact solution methods / Order of Convergence

Multiplicative Jacobian Energy Decomposition method for fast porous visco-hyperelastic soft tissue model

Algorithms / Finite element method / Porosity / Computer Simulation / Liver / Animals / Viscosity / Computational Efficiency / Hardness / Real Time / Swine / Reproducibility of Results / Adomian decomposition method / Elastic Modulus / Soft Tissue / Sensitivity and Specificity / X ray Computed Tomography / Animals / Viscosity / Computational Efficiency / Hardness / Real Time / Swine / Reproducibility of Results / Adomian decomposition method / Elastic Modulus / Soft Tissue / Sensitivity and Specificity / X ray Computed Tomography

Optimal Experimental Design For Parameter Estimation In Biological Signal Transduction Modeling

Environmental Engineering / Civil Engineering / Algorithms / Analytical Chemistry / Research Design / Signal Processing / Food Engineering / Water resources / Kinetics / Systems Biology / Fluorescence Microscopy / Heat Transfer / Finite element method / Cell Signaling / Confocal Microscopy / Finite Element / Applied Economics / Numerical Method / Parameter estimation / Biological Sciences / Optimal Control theory / Mathematical Sciences / Mice / Animals / Iterative Design / Kinase inhibitor / Solute transport / PARTIAL DIFFERENTIAL EQUATION / Inverse Problem / Thermal Conductivity / Heat Conduction / Heat Capacity / Information Content / Inverse Modeling / Thermophysical Properties / Simulation Study / Food Sciences / Differential equation / Optimal Design / Cell communication / Boundary Condition / Water Flow / Experimental Data / Kinetic Parameter / Second Messengers / Mean-variance / Ordinary Differential Equation / Unsaturated Zone / Parameter Uncertainty / Signal Processing / Food Engineering / Water resources / Kinetics / Systems Biology / Fluorescence Microscopy / Heat Transfer / Finite element method / Cell Signaling / Confocal Microscopy / Finite Element / Applied Economics / Numerical Method / Parameter estimation / Biological Sciences / Optimal Control theory / Mathematical Sciences / Mice / Animals / Iterative Design / Kinase inhibitor / Solute transport / PARTIAL DIFFERENTIAL EQUATION / Inverse Problem / Thermal Conductivity / Heat Conduction / Heat Capacity / Information Content / Inverse Modeling / Thermophysical Properties / Simulation Study / Food Sciences / Differential equation / Optimal Design / Cell communication / Boundary Condition / Water Flow / Experimental Data / Kinetic Parameter / Second Messengers / Mean-variance / Ordinary Differential Equation / Unsaturated Zone / Parameter Uncertainty

L-band emission of rough surfaces: Comparison between experimental data and different modeling approaches

Remote Sensing / Finite element method / Numerical Simulation / Electromagnetic Scattering / Heterogeneous media / Numerical Model / Numerical computation / Experimental Data / Numerical Model / Numerical computation / Experimental Data

Error estimates for low-order isoparametric quadrilateral finite elements for plates

Numerical Analysis / Finite element method / Finite Element / Integration / Interpolation / Numerical Analysis and Computational Mathematics / Plate Theory / Formulas de interpolación / Numerical Analysis and Computational Mathematics / Plate Theory / Formulas de interpolación

Electromechanical model of excitable tissue to study reentrant cardiac arrhythmias

Finite element method / Cellular mechanotransduction / Humans / Computer Simulation / Animals / Feedback / Large Deformation Mechanics / Cardiac Arrhythmias / Finite Difference Method / Action Potentials / Body Surface Potential Mapping / Biochemistry and cell biology / Feedback / Large Deformation Mechanics / Cardiac Arrhythmias / Finite Difference Method / Action Potentials / Body Surface Potential Mapping / Biochemistry and cell biology

Multiplicative Jacobian Energy Decomposition Method for Fast Porous Visco-Hyperelastic Soft Tissue Model

Algorithms / Finite element method / Porosity / Computer Simulation / Liver / Animals / Viscosity / Computational Efficiency / Hardness / Real Time / Swine / Reproducibility of Results / Adomian decomposition method / Elastic Modulus / Soft Tissue / Sensitivity and Specificity / X ray Computed Tomography / Animals / Viscosity / Computational Efficiency / Hardness / Real Time / Swine / Reproducibility of Results / Adomian decomposition method / Elastic Modulus / Soft Tissue / Sensitivity and Specificity / X ray Computed Tomography

Computational modeling of biomagnetic micropolar blood flow and heat transfer in a two-dimensional non-Darcian porous medium

Applied Mathematics / Heat Transfer / Finite element method / Magnetic field / Computer Model / Mathematical Model / Flow Regime / Blood Flow / Finite Difference Method / Interdisciplinary Engineering / Porous Medium / Meccanica / Boundary Condition / Numerical Solution / Similarity Transformation / Mathematical Model / Flow Regime / Blood Flow / Finite Difference Method / Interdisciplinary Engineering / Porous Medium / Meccanica / Boundary Condition / Numerical Solution / Similarity Transformation

A hybrid numerical method to compute erythrocyte TMP in low-frequency electric fields

Algorithms / Information Science / Biomedical Engineering / Finite Element Methods / Finite element method / Boundary Element Methods / Low Frequency / Numerical Method / Finite Element Analysis / In Vitro / Humans / Computer Simulation / Boundary Element Method / Electromagnetic Fields / Three Dimensional / Erythrocyte Membrane / Erythrocytes / Electric Field / Electrical And Electronic Engineering / Extracellular / Hybrid Method / Boundary Element Methods / Low Frequency / Numerical Method / Finite Element Analysis / In Vitro / Humans / Computer Simulation / Boundary Element Method / Electromagnetic Fields / Three Dimensional / Erythrocyte Membrane / Erythrocytes / Electric Field / Electrical And Electronic Engineering / Extracellular / Hybrid Method

On geometric interpolation by planar parametric polynomial curves

Applied Mathematics / Finite Element Methods / Energy / Numerical Analysis / Finite element method / Convergence / Finite Element / Computing / Algorithm / Numerical Method / United Kingdom / Diophantine approximation / Elliptic curves / Higher Order Thinking / Linear Model / Singularity / Probability Distribution & Applications / Riemann zeta function / Extreme Value Theory / Newton Method / IEEE / APPROXIMATION ALGORITHM / Continued Fractions / Error Analysis / Arithmetics / Consistency / Convergence Rate / Discretization / Divergence / PARTIAL DIFFERENTIAL EQUATION / Recurrence Relation / VECTOR / Gaussian quadrature / Numerical Integration / Linear System / Harmonic / Second Order / Large classes / Numerical Analysis and Computational Mathematics / Lower Bound / Upper Bound / Multiplication / Chinese Remainder Theorem / Elliptic Curve Cryptography / Galerkin Method / Poisson Equation / Difference equation / Boundary Condition / Floating Point / Asymptotic Behavior / GAUSS / Convection Diffusion Equation / Mixed Method / Linear Equations / Algebraic Variety / Discontinuous Galerkin / Real Number / Condition number / Prime Number / American Mathematical Society / Hybrid Method / Radius of Convergence / Convergence / Finite Element / Computing / Algorithm / Numerical Method / United Kingdom / Diophantine approximation / Elliptic curves / Higher Order Thinking / Linear Model / Singularity / Probability Distribution & Applications / Riemann zeta function / Extreme Value Theory / Newton Method / IEEE / APPROXIMATION ALGORITHM / Continued Fractions / Error Analysis / Arithmetics / Consistency / Convergence Rate / Discretization / Divergence / PARTIAL DIFFERENTIAL EQUATION / Recurrence Relation / VECTOR / Gaussian quadrature / Numerical Integration / Linear System / Harmonic / Second Order / Large classes / Numerical Analysis and Computational Mathematics / Lower Bound / Upper Bound / Multiplication / Chinese Remainder Theorem / Elliptic Curve Cryptography / Galerkin Method / Poisson Equation / Difference equation / Boundary Condition / Floating Point / Asymptotic Behavior / GAUSS / Convection Diffusion Equation / Mixed Method / Linear Equations / Algebraic Variety / Discontinuous Galerkin / Real Number / Condition number / Prime Number / American Mathematical Society / Hybrid Method / Radius of Convergence
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