What the cup? Consider the pressured cup shown in the figure at the right (PH,0 = 997 [kg/m³]). The pressure at A is 2.00 times atmospheric pressure, and A's cross-sectional area is 2.88 times that of B. What A is the speed of the water exiting the cup? 50 m В A. 7.27 [m/s] C. 590. [m/s] 20 m В. 30.0 [m/s D. 1210 [m/s]

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Chapter14: Fluid Mechanics
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Consider the pressured cup shown in the figure at the right (ρH2O = 997 [kg/m3]). The pressure at A is 2.00 times atmospheric pressure, and A’s cross-sectional area is 2.88 times that of B. What is the speed of the water exiting the cup?
A. 7.27 [m/s]
B. 30.0 [m/s]
C. 590. [m/s]
D. 1210 [m/s]

What the cup? Consider the pressured cup shown
in the figure at the right (PH,0 = 997 [kg/m³). The
pressure at A is 2.00 times atmospheric pressure, and
A's cross-sectional area is 2.88 times that of B. What
is the speed of the water exiting the cup?
50 m
В
A. 7.27 [m/s]
C. 590. [m/s]
20 m
B. 30.0 (m/s]
D. 1210 [m/s]
Transcribed Image Text:What the cup? Consider the pressured cup shown in the figure at the right (PH,0 = 997 [kg/m³). The pressure at A is 2.00 times atmospheric pressure, and A's cross-sectional area is 2.88 times that of B. What is the speed of the water exiting the cup? 50 m В A. 7.27 [m/s] C. 590. [m/s] 20 m B. 30.0 (m/s] D. 1210 [m/s]
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