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Numerical simulation of MHD stagnation point flow towards a heated axisymmetric surface
Muhammad Ashraf
, M. Anwar Kamal
Bahauddin Zakariya University
Prince Sattam Bin Abdulaziz University
Research output
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peer-review
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Engineering
Stagnation Point Flow
100%
Magnetohydrodynamic Generator
100%
Thermal Boundary Layer
100%
Applied Magnetic Field
100%
Axisymmetric
100%
Prandtl Number
50%
Magnetic Field
50%
Boundary Condition
50%
Good Agreement
50%
Dimensionless Form
50%
Heat Transfer Rate
50%
Similarity Transformation
50%
Boundary Layer Thickness
50%
Wall Shear Stress
50%
Thermal Field
50%
Flow Distribution
50%
Previously Published Work
50%
Mathematics
Boundary Layer
100%
Thermal Boundary
100%
Stagnation Point Flow
100%
Prandtl Number
50%
Similarity Transformation
50%
Magnetic Field
50%
Layer Thickness
50%
Heat Transfer Rate
50%
nonlinear differential equation
50%
Boundary Condition
50%
Magnetic Parameter
50%
Good Agreement
50%
Thermal Field
50%
Dimensionless Form
50%
Flow Field
50%
Chemical Engineering
Prandtl Number
100%