Pages that link to "Item:Q1617870"
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The following pages link to Dipole moments, property contribution tensors and effective conductivity of anisotropic particulate composites (Q1617870):
Displaying 15 items.
- Finite cluster model and effective conductivity of a composite with non-randomly oriented elliptic inclusions (Q255210) (← links)
- Effective thermal conductivity of a composite with thermo-sensitive constituents and related problems (Q1618174) (← links)
- Compliance and resistivity contribution tensors of axisymmetric concave pores (Q1625971) (← links)
- Interacting ellipsoidal inhomogeneities by multipole expansion method and effective conductivity of particulate composite (Q1626408) (← links)
- Effective conductivity of composite with imperfect contact between elliptic fibers and matrix: Maxwell's homogenization scheme (Q1627103) (← links)
- Increase and decrease of the effective conductivity of two-phase composites due to polydispersity (Q1777932) (← links)
- Maxwell's methodology of estimating effective properties: alive and well (Q2003091) (← links)
- Resistivity contribution tensor for nonconductive sphere doublets (Q2088056) (← links)
- Determination of thermal, stiffness and electrical effective tensors in composite media (Q2114411) (← links)
- Determination of effective electromagnetic parameters of concentrated suspensions of ellipsoidal particles using generalized differential effective medium approximation (Q2148165) (← links)
- Local fields and effective conductivity of composites with anisotropic components (Q2213023) (← links)
- Polarization tensors and effective properties of anisotropic composite materials (Q2484461) (← links)
- Transport properties and current flow patterns in homogeneous strongly anisotropic materials (Q3020089) (← links)
- Local fields and effective conductivity tensor of ellipsoidal particle composite with anisotropic constituents (Q4646886) (← links)
- Depolarization volume and correlation length in the homogenization of anisotropic dielectric composites (Q5461807) (← links)