69. Consider the hydraulic jump as shown in Figure IIIa.3.7. Use the continuity and the momentum...
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69. Consider the hydraulic jump as shown in Figure IIIa.3.7. Use the continuity and the momentum equations to derive a relation for z2 in terms of V₁ and z₁. [Hint: Cancel V₂ between the two equations, then cancel out (z₁-z2) to obtain z2+z122-az1 =0]. [Ans.: 22 =-(z₁/2) + √(z₁/2)2 +az₁; where a = V₁²/2g ]. D Dt (E)System = ə Ət filer: 7) + SS₁5 ep (V-d5) epdv IIIa.3.7 69. Consider the hydraulic jump as shown in Figure IIIa.3.7. Use the continuity and the momentum equations to derive a relation for z2 in terms of V₁ and z₁. [Hint: Cancel V₂ between the two equations, then cancel out (z₁-z2) to obtain z2+z122-az1 =0]. [Ans.: 22 =-(z₁/2) + √(z₁/2)2 +az₁; where a = V₁²/2g ]. D Dt (E)System = ə Ət filer: 7) + SS₁5 ep (V-d5) epdv IIIa.3.7
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