The construction of a water pistol is shown in the figure below. The cylinder with cross-sectional area A1 is filled with water and when the piston is pushed (by pulling the trigger), water is forced out the tube with cross-sectional area A2. The radius of the cylinder and tube are,respectively, 1.50 cm and 1.40 mm, and the center of the tube is a height h = 3.00 cm above the center of the cylinder. (Assume atmospheric pressure is 1.013 ✕ 105 Pa.) (a). At what speed v1 (in m/s) must the plunger be moved to achieve the desired range? (b). Find the pressure (in Pa) needed in the cylinder.

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Chapter2: The Kinetic Theory Of Gases
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The construction of a water pistol is shown in the figure below. The cylinder with cross-sectional area A1 is filled with water and when the piston is pushed (by pulling the trigger), water is forced out the tube with cross-sectional area A2. The radius of the cylinder and tube are,respectively, 1.50 cm and 1.40 mm, and the center of the tube is a height h = 3.00 cm above the center of the cylinder. (Assume atmospheric pressure is 1.013 ✕ 105 Pa.)

(a). At what speed v1 (in m/s) must the plunger be moved to achieve the desired range?

(b). Find the pressure (in Pa) needed in the cylinder.

on of a water pist
tional area A,. The radius of the cylinder ar
ressure is 1.013 x 10 Pa.)
A2
12
A1
pistol is fired horizontally at a height of 1.60
desired range of the stream is 7.90 m, with w
Transcribed Image Text:on of a water pist tional area A,. The radius of the cylinder ar ressure is 1.013 x 10 Pa.) A2 12 A1 pistol is fired horizontally at a height of 1.60 desired range of the stream is 7.90 m, with w
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