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Effective viscosity of a suspension of hot particles
Osher Arbib
*
,
Naomi Oppenheimer
*
Corresponding author for this work
School of Mechanical Engineering
School of Physics and Astronomy
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peer-review
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Keyphrases
Viscosity
100%
Effective Viscosity
100%
Hot Particles
100%
Stress Tensor
66%
Effective Stress
66%
External Field
33%
Velocity Field
33%
Active Particles
33%
Fluid Viscosity
33%
Spherical Particles
33%
Global Property
33%
Temperature Gradient
33%
Heat Distribution
33%
Temperature Distribution
33%
Bulk Liquid
33%
Lorentz
33%
Non-Brownian
33%
Non-Newtonian
33%
Reciprocal Theorem
33%
Pressure Field
33%
Particle Orientation
33%
Energy Dissipation Analysis
33%
Spatially Dependent
33%
Earth and Planetary Sciences
Velocity Distribution
100%
Pressure Distribution
100%
Energy Dissipation
100%
Reciprocal Theorem
100%
Temperature Distribution
100%
Engineering
Fluid Viscosity
100%
External Field
16%
Spherical Particle
16%
Velocity Field
16%
Active Particle
16%
Energy Dissipation
16%
Heat Distribution
16%
Bulk Fluid
16%
Effective Stress
16%
Reciprocal Theorem
16%
Global Property
16%
Making Problem
16%
Thermal Gradient
16%
Pressure Distribution
16%
Temperature Gradient
16%
Temperature Distribution
16%
Effective Stress Tensor
16%