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solve it for Gasoline, Water, Carbon Tet and Mercury instead of ethyl alcohol GIVEN Ethyl alcohol flows through a pipe of diameter FIND Determine the diameter, d, of the nozzle. D = 60 mm in a refinery. The pressure drop across the nozzle meter used to measure the flowrate is to be p = 4.0 kPa when the flowrate is Q = 0.003 m3/s.

          solve it for Gasoline, Water, Carbon Tet and Mercury instead of ethyl alcohol
GIVEN Ethyl alcohol flows through a pipe of diameter FIND Determine the diameter, d, of the nozzle. D = 60 mm in a refinery. The pressure drop across the nozzle meter used to measure the flowrate is to be p = 4.0 kPa when the flowrate is Q = 0.003 m3/s.
        
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solve it for gasoline water carbon tet and mercury instead of ethyl alcohol given ethyl alcohol flows through a pipe of diameter find determine the diameter d of the nozzle d 60 mm in a refi 97606

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University Physics with Modern Physics
University Physics with Modern Physics
Hugh D. Young 14th Edition
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solve it for Gasoline, Water, Carbon Tet and Mercury instead of ethyl alcohol GIVEN Ethyl alcohol flows through a pipe of diameter FIND Determine the diameter, d, of the nozzle. D = 60 mm in a refinery. The pressure drop across the nozzle meter used to measure the flowrate is to be p = 4.0 kPa when the flowrate is Q = 0.003 m3/s.
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Transcript

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00:01 Find the speed of the gasoline as it leaves our hose.
00:04 So to find our speed, we can apply our equation of continuity.
00:09 Area 1, velocity 1 is equal to area 2 velocity 2.
00:14 So v1 is equal to a2 divided by a1 times v2.
00:20 And so our v1 to v1 to the v is equal to pi r squared 2 over pi r squared 1 to the v, v2 to the v.
00:33 So we plug in our 0 .0188 squared divided by 0 .0376 squared times our v2 squared.
00:48 So our v1 is 0 .062 v2.
00:54 Now for part b we'd like to find, actually this is not complete...
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