1. An INF is in laminar flow in a slit format by two parallel walls a distance 2B apart. The orientation of the slit is arbitrary. Fluid in 2B W ?L Fluid out Find the velocity field and show that: $\frac{2}{3}v_z(avg) = v_z(avg)$ $Q = \frac{2B^3W}{3\mu} (-\frac{\Delta P}{\Delta L})$
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First, let's assume that the flow is steady and incompressible. This means that the velocity field does not change with time and the fluid density remains constant. Show more…
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