Water flows steadily from a tank mounted on a cart as shown, after the water jet leaves the nozzle of the tank, it falls and strikes a vane attached to another cart. The cart's wheels are frictionless, and the fluid is inviscid. (a) Determine the speed of the water leaving the tank, V1, and the water leaving the cart, V2. (b) Determine the tension in rope A, (c) Determine the tension in rope B.
Water flows steadily from a tank mounted on a cart as shown, after the water jet leaves the nozzle of the tank, it falls and strikes a vane attached to another cart. The cart's wheels are frictionless, and the fluid is inviscid. (a) Determine the speed of the water leaving the tank, V1, and the water leaving the cart, V2. (b) Determine the tension in rope A, (c) Determine the tension in rope B.
International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter4: Coplanar Equilibrium Analysis
Section: Chapter Questions
Problem 4.153P: Repeat Prob. 4.152 assuming that the 400-kN force is applied at O instead of L.
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Water flows steadily from a tank mounted on a cart as shown, after the water jet leaves the nozzle of the tank, it falls and strikes a vane attached to another cart. The cart's wheels are frictionless, and the fluid is inviscid. (a) Determine the speed of the water leaving the tank, V1, and the water leaving the cart, V2. (b) Determine the tension in rope A, (c) Determine the tension in rope B.
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