In the figure, a rectangular slab of slate rests on a bedrock surface inclined at angle 0 = 28.8°. The slab has length L= 43.1 m, thickn = 8.98 m, and width W = 11.5 m, and 1.0 cm³ of it has a mass of 3.2 g. The coefficient of static friction between slab and bedrock is 0.371. (a) Calculate the component of the gravitational force on the slab parallel to the bedrock surface. (b) Calculate the magnitu the static frictional force on the slab. By comparing (a) and (b), you can see that the slab is in danger of sliding. This is prevented or chance protrusions of bedrock. (c) To stabilize the slab, bolts are to be driven perpendicular to the bedrock surface (two bolts are shown). If each bolt has a cross-sectional area of 5.06 cm² and will snap under a shearing stress of 3.38 x 108 N/m2, what is the of holts needed? Assume that the bolts do not affect the normal force.
In the figure, a rectangular slab of slate rests on a bedrock surface inclined at angle 0 = 28.8°. The slab has length L= 43.1 m, thickn = 8.98 m, and width W = 11.5 m, and 1.0 cm³ of it has a mass of 3.2 g. The coefficient of static friction between slab and bedrock is 0.371. (a) Calculate the component of the gravitational force on the slab parallel to the bedrock surface. (b) Calculate the magnitu the static frictional force on the slab. By comparing (a) and (b), you can see that the slab is in danger of sliding. This is prevented or chance protrusions of bedrock. (c) To stabilize the slab, bolts are to be driven perpendicular to the bedrock surface (two bolts are shown). If each bolt has a cross-sectional area of 5.06 cm² and will snap under a shearing stress of 3.38 x 108 N/m2, what is the of holts needed? Assume that the bolts do not affect the normal force.
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter7: Gravity
Section: Chapter Questions
Problem 38PQ
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