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5. As water flows over a flat plate at 40C, it develops a velocity boundary layer with thickness as function of distance down the plate
5. As water flows over a flat plate at 40C, it develops a velocity boundary layer with thickness as function of distance down the plate as: :0.00", where both distances are in meters. Using Matlab or another computational program, plot, on a singlc (common) graph: f. The velocity and thermal boundary thickness for the water. g. The velocity and thermal boundary thickness for air at the same temperature and velocity. To receive credit, you must show the calculations as to how you arrived at these plots; label all axes and curves in a sizcable and legible font. Comment on the relative thickness of the velocity and thermal boundary layers. What explains the different between the air and water? 5. As water flows over a flat plate at 40C, it develops a velocity boundary layer with thickness as function of distance down the plate as: :0.00", where both distances are in meters. Using Matlab or another computational program, plot, on a singlc (common) graph: f. The velocity and thermal boundary thickness for the water. g. The velocity and thermal boundary thickness for air at the same temperature and velocity. To receive credit, you must show the calculations as to how you arrived at these plots; label all axes and curves in a sizcable and legible font. Comment on the relative thickness of the velocity and thermal boundary layers. What explains the different between the air and water
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