Situation 1: The crate has a mass of 50 kg. ps = 0.25 µk = 0.20 30° 1. Determine the minimum horizontal force P required to hold the crate from sliding down the plane. 2. Determine the minimum force P required to push the crate up the plane. 3. Determine the minimum force P required to keep it moving up the plane.
Situation 1: The crate has a mass of 50 kg. ps = 0.25 µk = 0.20 30° 1. Determine the minimum horizontal force P required to hold the crate from sliding down the plane. 2. Determine the minimum force P required to push the crate up the plane. 3. Determine the minimum force P required to keep it moving up the plane.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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1. Please show your complete solution.
![Situation 1: The crate has a mass of 50 kg. ps = 0.25 μ = 0.20
30°
144
1. Determine the minimum horizontal force P required to
hold the crate from sliding down the plane.
2. Determine the minimum force P required to push the
crate up the plane.
3. Determine the minimum force P required to keep it
moving up the plane.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F469bbc7d-eb70-439e-9022-6c2ce1359962%2Ffdeb04e5-fe96-48c4-86a8-90f449a07c73%2Feaahax_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Situation 1: The crate has a mass of 50 kg. ps = 0.25 μ = 0.20
30°
144
1. Determine the minimum horizontal force P required to
hold the crate from sliding down the plane.
2. Determine the minimum force P required to push the
crate up the plane.
3. Determine the minimum force P required to keep it
moving up the plane.
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