A spring is placed in the base of a frictionless incline. a block of mass 200g is used to compress the spring 8 cm. the block is released from rest and launched up the incline. Suppose that the speed of the block at the level portion of the track (just after launching is 1.8 m/s. Find the spring constant k. Find th maximum height the block attains above the level portion of the track.

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter8: Potential Energy And Conservation Of Energy
Section: Chapter Questions
Problem 8CQ: A bottle rocket is shot straight up in the air with a speed 30 m/s. if the air resistance is...
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A spring is placed in the base of
a frictionless incline. a block of
mass 200g is used to compress
the spring 8 cm. the block is
released from rest and launched
up the incline. Suppose that the
speed of the block at the level
portion of the track (just after
launching is 1.8 m/s. Find the
spring constant k. Find th
maximum height the block
attains above the level portion of
the track.
Transcribed Image Text:A spring is placed in the base of a frictionless incline. a block of mass 200g is used to compress the spring 8 cm. the block is released from rest and launched up the incline. Suppose that the speed of the block at the level portion of the track (just after launching is 1.8 m/s. Find the spring constant k. Find th maximum height the block attains above the level portion of the track.
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