The spring in the picture below has a spring constant of 8000N/m and it is compressed 24.0cm from its normal length. When released, the spring launches a 5.00kg block on a smooth horizontal surface (frictionless). The block then climbs a 2.00m high ramp inclined at an angle of 35.0 degrees above the horizontal And has a coefficient of kinetic friction of 0.480. figure out the following; a. The initial speed of the block at the base of the ramp (vi) b. The final speed of the block at the very top of the ramp (v) c. The horizontal distance the block travels after it takes off from the top of the ramp (d) 35° Ramp 2m

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
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Publisher:Raymond A. Serway, John W. Jewett
Chapter7: Conservation Of Energy
Section: Chapter Questions
Problem 55P: A horizontal spring attached to a wall has a force constant of k = 850 N/m. A block of mass m = 1.00...
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The spring in the picture below has a spring constant of 8000N/m and it is compressed
24.0cm from its normal length. When released, the spring launches a 5.00kg block on a
smooth horizontal surface (frictionless). The block then climbs a 2.00m high ramp
inclined at an angle of 35.0 degrees above the horizontal And has a coefficient of kinetic
friction of 0.480. figure out the following;
a. The initial speed of the block at the base of the ramp (vi)
b. The final speed of the block at the very top of the ramp (v)
c. The horizontal distance the block travels after it takes off from the top of the ramp
(d)
Vi
35°
Ramp
2m
Transcribed Image Text:The spring in the picture below has a spring constant of 8000N/m and it is compressed 24.0cm from its normal length. When released, the spring launches a 5.00kg block on a smooth horizontal surface (frictionless). The block then climbs a 2.00m high ramp inclined at an angle of 35.0 degrees above the horizontal And has a coefficient of kinetic friction of 0.480. figure out the following; a. The initial speed of the block at the base of the ramp (vi) b. The final speed of the block at the very top of the ramp (v) c. The horizontal distance the block travels after it takes off from the top of the ramp (d) Vi 35° Ramp 2m
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