/1 The 50-kg crate is projected along the floor with an initial speed of 7 m/s at x = 0. The coefficient of ki- netic friction is 0.40. Calculate the time required for the crate to come to rest and the corresponding dis- tance x traveled. Vo = 7 m/s 50 kg H₂ = 0.40 Problem 3/1
/1 The 50-kg crate is projected along the floor with an initial speed of 7 m/s at x = 0. The coefficient of ki- netic friction is 0.40. Calculate the time required for the crate to come to rest and the corresponding dis- tance x traveled. Vo = 7 m/s 50 kg H₂ = 0.40 Problem 3/1
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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
Transcribed Image Text:3/1 The 50-kg crate is projected along the floor with an
initial speed of 7 m/s at x = 0. The coefficient of ki-
netic friction is 0.40. Calculate the time required for
the crate to come to rest and the corresponding dis-
tance x traveled.
Vo = 7 m/s
50 kg
H₂=0.40
Hx
Problem 3/1
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