PEARSON ETEXT ENGINEERING MECH & STATS
15th Edition
ISBN: 9780137514724
Author: HIBBELER
Publisher: PEARSON
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The man has a mass, m =. 40 kg. He plans to scale the vertical crevice using the method shown. If the coefficient of
static friction between his shoes and the rock is µ = 0.4 and between his backside and the rock is µ = 0.3, determine
the smallest horizontal force his body must exert on the rocks in order to do this.
The man has a mass, m. He plans to scale the vertical crevice using the method
shown. If the coefficient of static friction between his shoes and the rock is μ₁
and between his backside and the rock is Hb, determine the smallest horizontal
force his body must exert on the rocks in order to do this.
m=45kg
Us=0.30
Ub=0.35
The man having a weight of 200 lb pushes horizontally on the crate as shown in the photo. The coefficient of static friction between the 450-lb crate and the floor is μs = 0.3 and between his shoes and the floor is μ's = 0.6. Determine if the man can move the crate. Solve the parts below.
a) Determine the force that tends to move the man to the right. Express your answer to three significant figures and include the appropriate units.
b) Determine the magnitude of the maximum force due to friction that opposes the tendency of the man's motion.
Express your answer to three significant figures and include the appropriate units.
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- The 76-lb force P is applied to the 180-lb crate, which is stationary before the force is applied. Determine the magnitude and direction of the friction force F exerted by the horizontal surface on the crate. The friction force is positive if to the right, negative if to the left. Assume Ms = 0.43, Mk = 0.35. P Answer: F = i lbarrow_forwardThe 76-lb force P is applied to the 170-lb crate, which is stationary before the force is applied. Determine the magnitude and direction of the friction force F exerted by the horizontal surface on the crate. The friction force is positive if to the right, negative if to the left. Assume μ = 0.48, Mk = 0.40. P Answer: F= i H₂ Mk lbarrow_forwardI need a process for this problemarrow_forward
- The man pushes on the roller with force P through a handle that connects to the central axle of the roller. If the coefficient of static friction between the 43-lb roller and the floor is g = 0.16, determine the maximum force P that can be applied to the handle, so that roller rolls on the ground without slipping. Assume the roller to be a uniform cylinder. Please pay attention: the numbers may change since they are randomized. Your answer must include 2 places after the decimal point, and proper unit. Take g = 32.2 ft/s². Your Answer: Answer 30° units 1.5 ftarrow_forwardThe man having a weight of 90 kg pushes horizontally on the crate. İf the coefficient of static friction between the 225 kg crate and the floor is μs=0.3 and between his shoes and the floor is μs’=0.6. determine if he can move the crate.arrow_forwardIs it possible to wear it in a time not exceeding 20 minutesarrow_forward
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