A box with a mass of 5 kg is moving down the inclined plane at a constant speed of 6 m/s. The coefficient of friction between the box and the surface of the incline is us = 0.25 and µ = 0.15. At the bottom of the incline, a spring is present to stop the box. The spring constant is k = 4 N/mm. What is the maximum force in the spring after the box hits it? 5 kg, x 6 m/s m- 35⁰ 400000

Principles of Foundation Engineering (MindTap Course List)
8th Edition
ISBN:9781305081550
Author:Braja M. Das
Publisher:Braja M. Das
Chapter6: Vertical Stress Increase In Soil
Section: Chapter Questions
Problem 6.4P: Refer to Figure P6.4. A strip load of q = 900 lb/ft2 is applied over a width B = 36 ft. Determine...
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A box with a mass of 5 kg is moving down the inclined plane at a constant speed of 6 m/s. The coefficient of
friction between the box and the surface of the incline is us = 0.25 and µ = 0.15. At the bottom of the incline, a
spring is present to stop the box. The spring constant is k = 4 N/mm. What is the maximum force in the spring
after the box hits it?
5 kg,
6 m/s
m-
35⁰
400000
Transcribed Image Text:A box with a mass of 5 kg is moving down the inclined plane at a constant speed of 6 m/s. The coefficient of friction between the box and the surface of the incline is us = 0.25 and µ = 0.15. At the bottom of the incline, a spring is present to stop the box. The spring constant is k = 4 N/mm. What is the maximum force in the spring after the box hits it? 5 kg, 6 m/s m- 35⁰ 400000
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