A spring is used to stop a 59 kg package that is sliding on a horizontal surface. The spring has a constant k = 16 kN/m and is held by cables so that it is initially compressed 110 mm. The package has a velocity of 2.5 m/s in the position shown, and the maximum additional deflection of the spring is s2 = 50 mm. The coefficient of kinetic friction between the package and the surface is uk = 0.20. Determine the total work between positions 1 and 2 if s1 = 600 mm.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A spring is used to stop a 59 kg package that is sliding on a horizontal surface. The
spring has a constant k 16 kN/m and is held by cables so that it is initially
compressed 110 mm. The package has a velocity of 2.5 m/s in the position shown,
and the maximum additional deflection of the spring is s2 50 mm. The coefficient
of kinetic friction between the package and the surface is uk = 0.20. Determine the
total work between positions 1 and 2 if s1 = 600 mm.
=
1
S₁
2
www
H
S₂
Transcribed Image Text:= A spring is used to stop a 59 kg package that is sliding on a horizontal surface. The spring has a constant k 16 kN/m and is held by cables so that it is initially compressed 110 mm. The package has a velocity of 2.5 m/s in the position shown, and the maximum additional deflection of the spring is s2 50 mm. The coefficient of kinetic friction between the package and the surface is uk = 0.20. Determine the total work between positions 1 and 2 if s1 = 600 mm. = 1 S₁ 2 www H S₂
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