The extruded plastic shape has dimensions of D = 33 mm, d = 27 mm, a = 94 mm, and t= 4 mm. (a) Determine the magnitude of the horizontal shear stress at point A for a shear force of V = 345 N. (b) If the allowable shear stress for the plastic material is 2000 kPa, what is the magnitude of the maximum shear force V that can be applied to the extrusion?

Principles of Foundation Engineering (MindTap Course List)
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Author:Braja M. Das, Nagaratnam Sivakugan
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Chapter8: Vertical Stress Increase In Soil
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The extruded plastic shape has dimensions of D = 33 mm, d = 27 mm, a = 94 mm, and t= 4 mm. (a) Determine the magnitude of the horizontal shear stress at point A for a shear force of V = 345 N. (b) If the allowable shear stress for the plastic material is 2000 kPa, what is the magnitude of the maximum shear force V that can be applied to the extrusion?
The extruded plastic shape has dimensions of D = 33 mm, d = 27 mm, a = 94 mm, and t = 4 mm.
(a) Determine the magnitude of the horizontal shear stress at point A for a shear force of V = 345 N.
(b) If the allowable shear stress for the plastic material is 2000 kPa, what is the magnitude of the maximum shear force V that can be
applied to the extrusion?
D d
不
a
Answer:
(a) TA-
kPa
(b) V =
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Transcribed Image Text:The extruded plastic shape has dimensions of D = 33 mm, d = 27 mm, a = 94 mm, and t = 4 mm. (a) Determine the magnitude of the horizontal shear stress at point A for a shear force of V = 345 N. (b) If the allowable shear stress for the plastic material is 2000 kPa, what is the magnitude of the maximum shear force V that can be applied to the extrusion? D d 不 a Answer: (a) TA- kPa (b) V = Save for Later Attempts: 0 of 1 used Submit Answer
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