The large water truck pictured (4.8 foot diameter by 12 foot long tank) releases water through a 3 inch diameter pipe. When the water is at the level shown, determine the frictional force the road needs to exert on the tires to keep the truck from rolling (lbf) and indicate the direction using an arrow under the truck. You may assume that the system is frictionless and the tank is vented.

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter8: Centroids And Distributed Loads
Section: Chapter Questions
Problem 8.113P: Calculate the resultant force caused by the water acting on the parabolic arch dam. The water levels...
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The large water truck pictured (4.8 foot diameter by 12 foot
long tank) releases water through a 3 inch diameter pipe. When
the water is at the level shown, determine the frictional force
the road needs to exert on the tires to keep the truck from
rolling (lbf) and indicate the direction using an arrow under the
truck. You may assume that the system is frictionless and the
tank is vented.
4 ft
WATER
DIST.
Transcribed Image Text:The large water truck pictured (4.8 foot diameter by 12 foot long tank) releases water through a 3 inch diameter pipe. When the water is at the level shown, determine the frictional force the road needs to exert on the tires to keep the truck from rolling (lbf) and indicate the direction using an arrow under the truck. You may assume that the system is frictionless and the tank is vented. 4 ft WATER DIST.
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