For the cellar of a new house, a hole is dug in the ground, with vertical sides going down 2.20 m. A concrete foundation wall is built all the way across the 9.50 m width of the excavation. This foundation wall is 0.179 m away from the front of the cellar hole. During a rainstorm, drainage from the street fills up the space in front of the concrete wall, but not the cellar behind the wall. The water does not soak into the clay soil. Find the force that the water causes on the foundation wall. For comparison, the weight of the water is given by 2.20 m x 9.50 m x 0.179 m x 1000 kg/m3 x 9.80 m/s? = 36.7 kN. N
For the cellar of a new house, a hole is dug in the ground, with vertical sides going down 2.20 m. A concrete foundation wall is built all the way across the 9.50 m width of the excavation. This foundation wall is 0.179 m away from the front of the cellar hole. During a rainstorm, drainage from the street fills up the space in front of the concrete wall, but not the cellar behind the wall. The water does not soak into the clay soil. Find the force that the water causes on the foundation wall. For comparison, the weight of the water is given by 2.20 m x 9.50 m x 0.179 m x 1000 kg/m3 x 9.80 m/s? = 36.7 kN. N
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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![For the cellar of a new house, a hole is dug in the ground, with vertical sides going down 2.20 m. A concrete foundation wall is built all the way across the 9.50 m width of the excavation. This foundation wall is 0.179 m
away from the front of the cellar hole. During a rainstorm, drainage from the street fills up the space in front of the concrete wall, but not the cellar behind the wall. The water does not soak into the clay soil. Find the force
that the water causes on the foundation wall. For comparison, the weight of the water is given by 2.20 m x 9.50 m x 0.179 m x 1000 kg/m³ x 9.80 m/s? = 36.7 kN.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F22f275da-02fe-4116-9507-027aed335396%2F4a601196-2801-416e-9b34-d114fe421a32%2F1f36o0b_processed.png&w=3840&q=75)
Transcribed Image Text:For the cellar of a new house, a hole is dug in the ground, with vertical sides going down 2.20 m. A concrete foundation wall is built all the way across the 9.50 m width of the excavation. This foundation wall is 0.179 m
away from the front of the cellar hole. During a rainstorm, drainage from the street fills up the space in front of the concrete wall, but not the cellar behind the wall. The water does not soak into the clay soil. Find the force
that the water causes on the foundation wall. For comparison, the weight of the water is given by 2.20 m x 9.50 m x 0.179 m x 1000 kg/m³ x 9.80 m/s? = 36.7 kN.
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