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Effect of magnetohydrodynamics on Newtonian calendering
A. M. Siddiqui
, M. Zahid
, M. A. Rana
, T. Haroon
Penn State York
Research output
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Contribution to journal
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Article
›
peer-review
21
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Scopus citations
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Keyphrases
Shear Stress
100%
Magnetohydrodynamics
100%
Calendering
100%
Newton-Cotes Formula
100%
Regula-Falsi Method
100%
Velocity Profile
50%
Magnetic Field
50%
Numerical Results
50%
Strain Rate
50%
Exact Solutions
50%
Pressure Distribution
50%
Equations of Motion
50%
Newtonian Fluid
50%
Lubrication Approximation
50%
Control Parameters
50%
Magnetic Parameters
50%
Separation Distance
50%
Power Transmission
50%
Shear Rate
50%
Rolling Surface
50%
Incompressible Magnetohydrodynamics
50%
Separation Force
50%
Calendering Process
50%
Pressure Gradient Flows
50%
Power Transmitted
50%
Simpson's Rule
50%
Roll Force
50%
Engineering
Magnetohydrodynamics
100%
Calendering
100%
Flow Rate
50%
Magnetic Field
50%
Velocity Profile
50%
Pressure Gradient
50%
Newtonian Fluid
50%
Pressure Distribution
50%
Power Transmission
50%
Simplifies
50%
Rates of Strain
50%
Roll Separating Force
50%
Simpson's Rule
50%
Maximum Shear Rate
50%
Roll Surface
50%
Material Science
Magnetohydrodynamics
100%
Calendering
100%
Shear Strain
50%
Lubrication
50%