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The zero-shear-rate limiting rheological behaviors of ideally conductive particles suspended in concentrated dispersions under an electric field
Siamak Mirfendereski, Jae Sung Park
Mechanical & Materials Engineering
Great Plains IDeA-CTR
Research output
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Article
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peer-review
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Scopus citations
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Dive into the research topics of 'The zero-shear-rate limiting rheological behaviors of ideally conductive particles suspended in concentrated dispersions under an electric field'. Together they form a unique fingerprint.
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Engineering & Materials Science
Dispersions
100%
Shear deformation
76%
Electric fields
70%
Electrophoresis
37%
Volume fraction
34%
Microstructure
12%
Distribution functions
9%
Tensors
9%
Entropy
8%
Fluids
6%
Computer simulation
5%
Chemical Compounds
Electric Field
68%
Pressure
44%
Suspension
36%
Volume
21%
Electrophoresis
17%
Electrokinetic Phenomena
15%
Pair Distribution Function
13%
Microstructure
12%
Dielectrophoresis
12%
Rheology
8%
Entropy
7%
Flow
6%
Simulation
6%
Physics & Astronomy
shear
52%
electric fields
44%
electrophoresis
12%
electrokinetics
6%
microstructure
5%
stress tensors
5%
manipulators
4%
flow velocity
4%
distribution functions
4%
entropy
3%
fluids
3%
simulation
1%