1. A uniform cross-sectional area U-tube is open to the atmosphere, is partially filled with mercury (density = 1.36 x104 g/cm³). Water is then poured into both arms. If the equilibrium configuration of the tube is as shown in Figure, with h2 = 1.00 cm, determine the value of h1. Water Mercury

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Chapter11: Fluid Statics
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Problem 25CQ: Explain why the fluid reaches equal levels on either side of a manometer if both sides are open to...
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A uniform cross-sectional area U-tube is open to the atmosphere, is partially filled with mercury (density = 1.36 x104 g/cm3 ). Water is then poured into both arms. If the equilibrium configuration of the tube is as shown in Figure, with h2 = 1.00 cm, determine the value of h1.

1. A uniform cross-sectional area U-tube is open to the atmosphere, is partially filled with
mercury (density = 1.36 x104 g/cm³). Water is then poured into both arms. If the equilibrium
configuration of the tube is as shown in Figure, with h2 = 1.00 cm, determine the value of h1.
Water
Mercury
Transcribed Image Text:1. A uniform cross-sectional area U-tube is open to the atmosphere, is partially filled with mercury (density = 1.36 x104 g/cm³). Water is then poured into both arms. If the equilibrium configuration of the tube is as shown in Figure, with h2 = 1.00 cm, determine the value of h1. Water Mercury
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