A large tank is kept full at a height of h = 4 m as shown in Fig. 3. Take the 103 kg/m³. (a) Find the speed v2 of the jet of water water density to be p %3! emerging from a small pipe at the bottom of the tank. (b) If y2 = 2 m, then find the horizontal distance x (from the base of the tank) that the water stream travels before striking the floor. A1 Pa yı A2 h=y1-y2 V2 y2

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 39P: A large storage tank with an open top is filled to a height h0. The tank is punctured at a height h...
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A large tank is kept full at a height of h = 4 m as shown in Fig. 3. Take the
103 kg/m³. (a) Find the speed v2 of the jet of water
water density to be p =
= 2 m, then
emerging from a small pipe at the bottom of the tank. (b) If y2
find the horizontal distance x (from the base of the tank) that the water stream
travels before striking the floor.
A1
yı
A2
h=y1-y2
Pa v2
y2
Transcribed Image Text:A large tank is kept full at a height of h = 4 m as shown in Fig. 3. Take the 103 kg/m³. (a) Find the speed v2 of the jet of water water density to be p = = 2 m, then emerging from a small pipe at the bottom of the tank. (b) If y2 find the horizontal distance x (from the base of the tank) that the water stream travels before striking the floor. A1 yı A2 h=y1-y2 Pa v2 y2
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