2 / 2 100% + ☑ ف Copyright © Prof. S. Ahmad (2024), University at Buffalo EAS209 Instructor. Copyrighted course materials shall not be further disseminated without instructor permission. This includes sharing content to commercial course material suppliers such as Course Hero, Chegg, etc. Q.2) A 50 Kg crate is resting on top of a 40 Kg crate as shown in figure below. The top crate is attached to a wall by a cord, and a rope attached to the bottom crate passes around two fixed pegs. The coefficient of friction between the two crates is 0.3; between the crate and the floor is 0.4; and between the rope and the pegs is 0.25. Determine the minimum force Pmin needed to cause move the bottom crate. 50 Kg 40 Kg
2 / 2 100% + ☑ ف Copyright © Prof. S. Ahmad (2024), University at Buffalo EAS209 Instructor. Copyrighted course materials shall not be further disseminated without instructor permission. This includes sharing content to commercial course material suppliers such as Course Hero, Chegg, etc. Q.2) A 50 Kg crate is resting on top of a 40 Kg crate as shown in figure below. The top crate is attached to a wall by a cord, and a rope attached to the bottom crate passes around two fixed pegs. The coefficient of friction between the two crates is 0.3; between the crate and the floor is 0.4; and between the rope and the pegs is 0.25. Determine the minimum force Pmin needed to cause move the bottom crate. 50 Kg 40 Kg
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
Related questions
Question

Transcribed Image Text:2 / 2
100%
+
☑
ف
Copyright © Prof. S. Ahmad (2024), University at Buffalo EAS209 Instructor. Copyrighted course materials shall not be further disseminated
without instructor permission. This includes sharing content to commercial course material suppliers such as Course Hero, Chegg, etc.
Q.2) A 50 Kg crate is resting on top of a 40 Kg crate as shown in figure below. The
top crate is attached to a wall by a cord, and a rope attached to the bottom crate
passes around two fixed pegs. The coefficient of friction between the two crates
is 0.3; between the crate and the floor is 0.4; and between the rope and the pegs
is 0.25. Determine the minimum force Pmin needed to cause move the bottom
crate.
50 Kg
40 Kg
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