Engineering
Polycrystal
100%
Superlattice
62%
Thermal Conductivity
37%
Effective Thermal Conductivity
37%
Models
37%
Temperature
25%
Anisotropic
12%
Experimental Measurement
12%
Polycrystalline Material
12%
Annealing Temperature
12%
Scattering
12%
Reduction
12%
INIS
thermal conductivity
75%
superlattices
62%
comparative evaluations
37%
polycrystals
37%
capture
12%
scattering
12%
solutions
12%
reduction
12%
anisotropy
12%
increasing
12%
approximations
12%
finite element method
12%
annealing
12%
frequency dependence
12%
lead tellurides
12%
boltzmann transport equation
12%
Earth and Planetary Sciences
Plane
50%
Thermal Conductivity
37%
Model
37%
Show
25%
Temperature
25%
Scattering
12%
Boltzmann Transport Equation
12%
Sample
12%
Time
12%
Medium
12%
Calculation
12%
Comparison
12%
Increasing
12%
Boundary
12%
Regime
12%
Rule
12%
Physics
Plane
50%
Thermal Conductivity
37%
Model
37%
Temperature
25%
Scattering
12%
Calculation
12%
Regimes
12%
Media
12%
Rules
12%
Frequencies
12%
Increasing
12%
Approximation
12%
Boundaries
12%
Material Science
Conductivity
37%
Finite Element Methods
25%
Polycrystalline Material
12%
Solution
12%
Material
12%