A U-tube open at both ends is partially filled with water (Figure (a)). Oil (p = 750 kg/m3) is then poured into the right arm and forms a column L = 4.22 cm high (Figure (b)). %3D Po Shield FU Water Oil la (a) Determine the difference h in the heights of the two liquid surfaces. (The density of water is 1.00 x 10 kg/m.) cm (b) The right arm is then shielded from any air motion while air is blown across the top of the left arm until the surfaces of the two liquids are at the same height (Figure (c)). Determine the speed of the air being blown across the left arm. Assume the density of air is 1.29 kg/m3. m/s

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter15: Fluid Mechanics
Section: Chapter Questions
Problem 67P: A U-tube open at both ends is partially filled with water (Fig. P15.67a). Oil having a density 750...
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A U-tube open at both ends is partially filled with water (Figure (a)). Oil (p = 750 kg/m) is then poured into the right arm
and forms a column L = 4.22 cm high (Figure (b)).
Po
Shield
Water
Oil
(a) Determine the difference h in the heights of the two liquid surfaces. (The density of water is 1.00 × 10° kg/m.)
cm
(b) The right arm is then shielded from any air motion while air is blown across the top of the left arm until the
surfaces of the two liquids are at the same height (Figure (c)). Determine the speed of the air being blown across
the left arm. Assume the density of air is 1.29 kg/m.
m/s
Transcribed Image Text:A U-tube open at both ends is partially filled with water (Figure (a)). Oil (p = 750 kg/m) is then poured into the right arm and forms a column L = 4.22 cm high (Figure (b)). Po Shield Water Oil (a) Determine the difference h in the heights of the two liquid surfaces. (The density of water is 1.00 × 10° kg/m.) cm (b) The right arm is then shielded from any air motion while air is blown across the top of the left arm until the surfaces of the two liquids are at the same height (Figure (c)). Determine the speed of the air being blown across the left arm. Assume the density of air is 1.29 kg/m. m/s
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