A 3 kg block pushes a spring of negligible mass and force constant k = 400 N / m to compress 0.22 m. When the block is released, it first travels on a frictionless horizontal ground and then climbs on an inclined plane with a slope of 37° and a kinetic friction coefficient of µk = 0.1. What is the maximum height of the block on this inclined plane? (g=10m/s?) a) O 1902 0.28 cm b) O 12.48 cm c) 14.24 cm d) 20.46 cm e) 28.47 cm

Principles of Physics: A Calculus-Based Text
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Chapter7: Conservation Of Energy
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1- A 3 kg block pushes a spring of negligible mass and force constant k = 400 N / m to
compress 0.22 m. When the block is released, it first travels on a frictionless horizontal
ground and then climbs on an inclined plane with a slope of 37° and a kinetic friction
%3D
coefficient of µk = 0.1. What is the maximum height of the block on this inclined
plane? (g=10m/s²)
a)
1902
0.28 cm
b) O
12.48 cm
c)
14.24 cm
d) O
20.46 cm
e)
28.47 cm
Transcribed Image Text:1- A 3 kg block pushes a spring of negligible mass and force constant k = 400 N / m to compress 0.22 m. When the block is released, it first travels on a frictionless horizontal ground and then climbs on an inclined plane with a slope of 37° and a kinetic friction %3D coefficient of µk = 0.1. What is the maximum height of the block on this inclined plane? (g=10m/s²) a) 1902 0.28 cm b) O 12.48 cm c) 14.24 cm d) O 20.46 cm e) 28.47 cm
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