In figure 8, we found that the speed of water at point 1 increased from 2.01 m/s at 23 cm to 29.8 m/s at 40 cm going from point 1 to point 2. Calculate the pressure in position 1, given that the absolute pressure in point 2 is 2.06x1o>N/m2 (atmospheric, as it must be).

Physics for Scientists and Engineers: Foundations and Connections
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ISBN:9781133939146
Author:Katz, Debora M.
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Chapter15: Fluids
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Problem 11PQ: Suppose you are at the top of Mount Everest and you fill a water balloon. The air pressure at the...
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In figure 8, we found that the speed of water at point 1 increased from
2.01 m/s at 23 cm to 29.8 m/s at 40 cm going from point 1 to point 2.
Calculate the pressure in position 1, given that the absolute pressure in
point 2 is 2.06x10 N/m2 (atmospheric, as it must be).
Zxp
A, dv
dx,
V2
A, dV
Y1
FLOW
Figure 8
Transcribed Image Text:In figure 8, we found that the speed of water at point 1 increased from 2.01 m/s at 23 cm to 29.8 m/s at 40 cm going from point 1 to point 2. Calculate the pressure in position 1, given that the absolute pressure in point 2 is 2.06x10 N/m2 (atmospheric, as it must be). Zxp A, dv dx, V2 A, dV Y1 FLOW Figure 8
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