2000 kg crate rests on the floor. C is the centre of gravity for the crate. The coefficient+ of static friction between the crate and floor is 0.25. DSketch a free body diagram of the crate if it is moued along +he floor and determine the minimum horizontal force P needed to push the crate forward. a)Calculate the force P that must be applied to the crate in order to tip it over. Sketch the free body diagram for this problem and identify the tipping direction of the box. 3)Referring to answer in Cii), state whether the crate is about to slip or tip? Gustify your answer. 3 m 1 m 5 m
2000 kg crate rests on the floor. C is the centre of gravity for the crate. The coefficient+ of static friction between the crate and floor is 0.25. DSketch a free body diagram of the crate if it is moued along +he floor and determine the minimum horizontal force P needed to push the crate forward. a)Calculate the force P that must be applied to the crate in order to tip it over. Sketch the free body diagram for this problem and identify the tipping direction of the box. 3)Referring to answer in Cii), state whether the crate is about to slip or tip? Gustify your answer. 3 m 1 m 5 m
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
Related questions
Question
![2000 kg crate rests on the floor. C is the
centre of qravity for the crate. The
coefficient+ of static friction between the
crate and floor is 0.25.
DSketch a free body diagram of the crate if
it is moved along +he floor and determine
the minimum horizontal force P needed to
push the crate forward.
a)Calculate the force P that must be
applied to the crate in order to tip it over.
Sketch the free body diagram for this
problem and identify the tipping direction of
the box.
3)Referring to answer in Cii), state whether
the crate is about to slip or tip? Gustify your
answer.
3 m
1 m
P
5 m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff6eb33f4-142b-486d-8f81-ce3df2c70098%2F6c795a7d-5138-46b0-883f-303c0074a3eb%2Fc5zl85q_processed.jpeg&w=3840&q=75)
Transcribed Image Text:2000 kg crate rests on the floor. C is the
centre of qravity for the crate. The
coefficient+ of static friction between the
crate and floor is 0.25.
DSketch a free body diagram of the crate if
it is moved along +he floor and determine
the minimum horizontal force P needed to
push the crate forward.
a)Calculate the force P that must be
applied to the crate in order to tip it over.
Sketch the free body diagram for this
problem and identify the tipping direction of
the box.
3)Referring to answer in Cii), state whether
the crate is about to slip or tip? Gustify your
answer.
3 m
1 m
P
5 m
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