Homework7 - V 31.3 407.7467 35 2.1 0.3374205 2 2.65 0.3259974 2 3.28 0.3188137 3.04E 05 3 4.07 0.320437 3 4.91 0.3194805 3.72E 05 ∆ P[N/m 2 F D[N

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V [m/s] Re Eu 0.5 77 52000 0.308 rho 1000 1942400 1 306 104000 0.306 D 0.104 2 1218 208000 0.3045 mu 0.001 4 4865 416000 0.3040625 6 10920 624000 0.3033333 8 19440 832000 0.30375 10 30340 1040000 0.3034 15 68330 1560000 0.3036889 20 121400 2080000 0.3035 25 189800 2600000 0.30368 30 273200 3120000 0.3035556 35 372100 3640000 0.3037551 40 485300 4160000 0.3033125 45 614900 4680000 0.3036543 50 758700 5200000 0.30348 V [m/s] Re Prototype Model 10 0.29 0.5708029 6.76E+04 L 4.37 0.273125 rho 1.184 15 0.64 0.559868 1.01E+05 h 1.3 0.08125 mu 1.85E-05 20 0.96 0.4723886 1.35E+05 w 1.69 0.105625 25 1.41 0.4440453 1.69E+05 A 2.197 0.00858203 30 1.55 0.3389826 2.03E+05
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Unformatted text preview: V 31.3 407.7467 35 2.1 0.3374205 2.37E+05 40 2.65 0.3259974 2.70E+05 45 3.28 0.3188137 3.04E+05 3.39E+06 50 4.07 0.320437 3.38E+05 55 4.91 0.3194805 3.72E+05 ∆ P [N/m 2 ] F D [N] C D Re ,m 1000000 2000000 3000000 4000000 5000000 6000000 0.3 0.302 0.304 0.306 0.308 0.31 Euler vs. Reynold's Number Re Eu 5.00E+04 1.00E+05 1.50E+05 2.00E+05 2.50E+05 3.00E+05 3.50E+05 4.00E+05 0.1 0.2 0.3 0.4 0.5 0.6 CD vs. Re Re CD...
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This note was uploaded on 03/19/2012 for the course ENGR 1043 taught by Professor Cole during the Spring '12 term at Pittsburgh.

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