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Effect of temperature-dependent properties on electroosmotic mobility at arbitrary zeta potentials
C. Vargas,
O. Bautista
, F. Méndez
Escuela Superior de Ingeniería Mecánica y Eléctrica (ESIME), Unidad Azcapotzalco
Research output
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Article
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peer-review
14
Scopus citations
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Dive into the research topics of 'Effect of temperature-dependent properties on electroosmotic mobility at arbitrary zeta potentials'. Together they form a unique fingerprint.
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Mathematics
Microchannel
100%
Physical property
49%
Dependent
39%
Electroosmotic Flow
38%
Vary
34%
Lubrication Approximation
32%
Arbitrary
31%
Lubrication Theory
30%
Electrical Conductivity
28%
Electrolyte
27%
Flow Rate
25%
Temperature Field
25%
Perturbation Technique
24%
Electric Field
22%
Approximation Theory
22%
Theoretical Analysis
19%
Viscosity
18%
Engineering & Materials Science
Zeta potential
84%
Microchannels
49%
Physical properties
26%
Temperature
24%
Approximation theory
22%
Perturbation techniques
19%
Electric Conductivity
16%
Electrolytes
14%
Lubrication
14%
Electric fields
13%
Temperature distribution
12%
Viscosity
12%
Flow rate
11%