Earth and Planetary Sciences
Penetration
100%
Comminution
100%
Impact
100%
Rate
100%
Speed
100%
Concrete
100%
Angling
100%
Strain Rate
42%
Simulation
42%
Depth
42%
Kinetic Energy
28%
Upscaling
28%
Parameter
28%
Fragment
28%
Damping
14%
Crater
14%
Shear Strain
14%
Fracturing
14%
Dissipation
14%
Turbulence
14%
Tensile Strength
14%
Flux Density
14%
Particle Size Distribution
14%
Model
14%
Investigation
14%
Datum
14%
Prediction
14%
Magnitude
14%
Software
14%
Strain
14%
Analogy
14%
Square
14%
Order
14%
Damage
14%
Thickness
14%
Engineering
High Rate
100%
Impact Angle
100%
Penetration Depth
75%
Exit Velocity
50%
Simulation
50%
High Strain Rate
25%
Particle Size
25%
Constitutive Model
25%
Turbulence
25%
Viscosity
25%
Deviatoric
25%
Shear Strain
25%
Finite Element Simulation
25%
Test Result
25%
Material Parameter
25%
Test Data
25%
Strain Energy
25%
Test Series
25%
Oblique Impact
25%
Forming
25%
Impact Problem
25%
Kinetic Energy Density
25%
Fields
25%
Prediction
25%
Energy Engineering
25%
Kinetic
25%
Thickness
25%
Size Distribution
25%
Ultimate Tensile Strength
25%
INIS
dynamics
100%
velocity
100%
comminution
100%
projectiles
100%
simulation
50%
strain rate
50%
penetration depth
50%
kinetic energy
33%
data
16%
fracturing
16%
energy
16%
strains
16%
prediction
16%
distribution
16%
computer programs
16%
shear
16%
damage
16%
finite element method
16%
turbulence
16%
thickness
16%
viscosity
16%
craters
16%
tensile strength
16%
particle size
16%
energy density
16%
slabs
16%
damping
16%
Physics
Comminution
100%
Impact
100%
Speed
100%
Concrete
100%
Simulation
42%
Upscaling
28%
Independent Variables
28%
Viscosity
14%
Shear Strain
14%
Fracturing
14%
Flux Density
14%
Particle Size Distribution
14%
Computer Program
14%
Model
14%
Magnitude
14%
Material Science
Concrete
100%
Velocity
100%
Comminution
100%
Strain Rate
50%
Material
33%
Shear Strain
16%
Mechanical Strength
16%
Finite Element Methods
16%
Strain
16%
Energy Density
16%
Viscosity
16%
Particle Size Analysis
16%