In the figure below a 1.24-kg block is held at rest against a spring with a force constant K = 700 N/m. Equibrum pasition Rou gh pctch X |Initially, the spring is compressed a distance d. When the block is released it slides across a surface that is frictionless, except for a rough patch of width = 4.89 cm that has a coefficient of kinetic friction k= 0.554. Calculate d such that the block's speed after crossing the rough patch is 2.44 m/s.

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter7: Conservation Of Energy
Section: Chapter Questions
Problem 15P: A block of mass m = 2.00 kg is attached to a spring of force constant k = 500 N/m as shown in Figure...
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In the figure below a 1.24-kg block is held at rest against a spring with a force constant K = 700 N/m.
Equibrum
pasition
Rou gh pctch
X
|Initially, the spring is compressed a distance d. When the block is released it slides across a surface that is frictionless, except for a rough patch of width = 4.89 cm that has a coefficient of kinetic friction k=
0.554. Calculate d such that the block's speed after crossing the rough patch is 2.44 m/s.
Transcribed Image Text:In the figure below a 1.24-kg block is held at rest against a spring with a force constant K = 700 N/m. Equibrum pasition Rou gh pctch X |Initially, the spring is compressed a distance d. When the block is released it slides across a surface that is frictionless, except for a rough patch of width = 4.89 cm that has a coefficient of kinetic friction k= 0.554. Calculate d such that the block's speed after crossing the rough patch is 2.44 m/s.
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