Engineering
Large Deformation
66%
Similarities
66%
Finite Element Analysis
66%
Microstructure
50%
Finite Element Mesh
50%
Two Dimensional
50%
Surrogate Model
41%
Reduced Order Model
33%
Material Interface
33%
Discrete Systems
33%
Absolute Value
33%
Computational Cost
33%
Porosity
33%
Element Discretisation
33%
Periodic Boundary
33%
Fourth Order Tensor
33%
Energy Quantity
33%
Mesh Size
33%
Boundary Condition
33%
Learning System
33%
Pneumatics
33%
Actuation
33%
Starting Point
33%
Hinge Approach
33%
Numerical Example
25%
Mathematics
Neural Network
83%
Equivariant
66%
Finite Element Methods
40%
Training Data
33%
Approximates
16%
Numerical Example
16%
Transformation Method
16%
Nonlinear
16%
Numerical Approach
16%
Constitutive Model
16%
Constitutive Law
16%
Kriging
16%
Shape of Space
16%
Scalar
13%
Euclidean Group
13%
Fourth-Order
13%
Starting Point
13%
Tensor
13%
Discretization
13%
Boundary Condition
13%
Computational Cost
13%
Material Science
Homogenization
100%
Metamaterials
100%
Finite Element Methods
66%
Large Deformation
55%
Materials Design
33%
Proper Orthogonal Decomposition
33%
Mechanical Metamaterials
22%
Mechanical Deformation
16%
Finite Element Modeling
16%
Microporous Material
11%