The 60-kg crate is projected along the floor with an initial speed of vo = 6.8 m/s at x = 0. The coefficient of kinetic friction is = 0.55. Calculate the time t required for the crate to come to rest and the corresponding distance x traveled. Hk VO
The 60-kg crate is projected along the floor with an initial speed of vo = 6.8 m/s at x = 0. The coefficient of kinetic friction is = 0.55. Calculate the time t required for the crate to come to rest and the corresponding distance x traveled. Hk VO
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![The 60-kg crate is projected along the floor with an initial speed of vo = 6.8 m/s at x = 0. The coefficient of kinetic friction is μk = 0.55.
Calculate the time t required for the crate to come to rest and the corresponding distance x traveled.
Answers:
t =
Hk
X =
i
VO
S
m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F278ecef9-29e8-4432-9e71-9c6b88f466da%2Fb6312c46-3dba-42b6-8ff6-f2ac57fa469d%2Fs027h7w_processed.png&w=3840&q=75)
Transcribed Image Text:The 60-kg crate is projected along the floor with an initial speed of vo = 6.8 m/s at x = 0. The coefficient of kinetic friction is μk = 0.55.
Calculate the time t required for the crate to come to rest and the corresponding distance x traveled.
Answers:
t =
Hk
X =
i
VO
S
m
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