Problem 11.69 • Part A A worker wants to turn over a uniform 1030-N rectangular crate by pulling at 53.0 * on one of its vertical sides (the figure (Figure 1). The floor is rough enough to prevent the crate from slipping. What pull is needed to just start the crate to tip? P = N Submit Request Answer Part B How hard does the floor push on the crate? ? N= Submit Request Answer Part C Find the friction force on the crate. Submit Request Anawer Figure 1 of 1> Part D What is the minimum coefficient of static friction needed to prevent the crate from slipping on the floor? 2.20 m O D) ? Pull 53.0° 1.50 m Submit Bequest Answer

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Chapter12: Static Equilibrium And Elasticity
Section: Chapter Questions
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Problem 11.69
Part A
A worker wants to turn over a uniform 1030-N rectangular crate by pulling at 53.0
on one of its vertical sides (the figure (Figure 1)). The floor is rough enough to
prevent the crate from slipping.
What pull is needed to just start the crate to tip?
?
P =
Submit
Request Answer
Part B
How hard does the floor push on the crate?
?
N =
N
Submit
Request Answer
Part C
Find the friction force on the crate.
ΑΣφ
f D
Submit
Request Answer
Figure
< 1 of 1
Part D
What is the minimum coefficient of static friction needed to prevent the crate from slipping on the floor?
2.20 m
?
Pull
53.0°
1.50 m
Ha
Submit
Request Answer
Transcribed Image Text:Problem 11.69 Part A A worker wants to turn over a uniform 1030-N rectangular crate by pulling at 53.0 on one of its vertical sides (the figure (Figure 1)). The floor is rough enough to prevent the crate from slipping. What pull is needed to just start the crate to tip? ? P = Submit Request Answer Part B How hard does the floor push on the crate? ? N = N Submit Request Answer Part C Find the friction force on the crate. ΑΣφ f D Submit Request Answer Figure < 1 of 1 Part D What is the minimum coefficient of static friction needed to prevent the crate from slipping on the floor? 2.20 m ? Pull 53.0° 1.50 m Ha Submit Request Answer
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