Keyphrases
Amorphous Solids
100%
Vertex Model
69%
Cellular Tissue
69%
Two Dimensional
66%
Dipole
62%
Plastic Event
60%
Mechanical Response
56%
Displacement Field
48%
Quadrupolar
41%
Plastic Response
38%
Geometrical Frustration
38%
Amorphous Materials
38%
Mechanical Properties
38%
Classical Elasticity
35%
Quadrupole
34%
Nonlinear Elasticity
33%
Reference Metrics
33%
Shape Transformation
30%
Geometric Solid
30%
Internal Stress
30%
Solid-solid Transition
30%
Kirigami
30%
Geometric Incompatibility
29%
Elasticity Theory
27%
Qualitative Change
25%
Hydrogel Sheet
25%
Soft Matter
25%
Elastic Modulus
25%
Mechanical Metamaterials
25%
Elastic Energy
24%
Mechanical Strain
23%
Geometric Charges
23%
Design Principles
23%
Singular Defect
23%
Thin Elastic Layer
23%
Stress Function
23%
Elastic Response
23%
Geometric Approach
23%
High Density
20%
Low Density
20%
Shear Band
20%
Reference State
20%
3D Shape
20%
Nonlinear Mechanics
20%
Elastic Problems
19%
Dislocation
19%
Elastic Interaction
19%
Ribbon
19%
Screening Theory
18%
Geometric Nonlinearity
18%
Engineering
Mechanical Response
67%
Amorphous Solid
61%
Metrics
56%
Two Dimensional
54%
Displacement Field
51%
Geometric Frustration
46%
Rigidity
43%
Target Area
35%
Elastic Response
33%
Elasticity Theory
31%
Plastic Response
30%
Solid Transition
30%
Multiscale
30%
Internal Stress
30%
Elastic Problem
26%
Elastic Interaction
23%
Mechanical Strain
23%
External Load
23%
Stress Function
23%
Reference State
23%
Modulus of Elasticity
23%
Elastic Energy
20%
Length Scale
19%
Linear Elasticity
18%
Screening Effect
17%
Target Shape
15%
Dipole Field
15%
Sharp Corner
15%
Mechanical Interaction
15%
Ground State
15%
Stress Field
15%
Residual Stress
15%
Elastic Regime
15%
Spatial Distribution
15%
Shear Strain
15%
Dipole Source
15%
Energy State
15%
Stress Relief
15%
Continuum Mechanics
15%
Localized Source
15%
Elastic Body
15%
Young's Modulus
15%
Rest Length
15%
Pure Shear
15%
Mechanical Design
15%
Experimental Technique
15%
Nonlinear Mechanics
15%
Net Force
15%
Deformed Configuration
15%
Inverse Design
15%