A block of weight 3.6 N is launched up a 30 inclined plane of length 2.25 m by a spring with spring constant 2.40 kN/m and maximum compression 0.10 m. The coefficient of kinetic friction is 0.50. If so, how much kinetic energy does it have there; if not, how close to the top, along the incline, does it get?

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter7: Work And Kinetic Energy
Section: Chapter Questions
Problem 108CP: Consider a linear spring, as in Figure 7.7(a), with mass M uniformly distributed along its length....
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A block of weight 3.6 N is launched up a 30 °
inclined plane of length 2.25 m by a spring with
spring constant 2.40 kN/m and maximum
compression 0.10 m. The coefficient of kinetic
friction is 0.50.
If so, how much kinetic energy does it have there;
if not, how close to the top, along the incline, does
it get?
Transcribed Image Text:A block of weight 3.6 N is launched up a 30 ° inclined plane of length 2.25 m by a spring with spring constant 2.40 kN/m and maximum compression 0.10 m. The coefficient of kinetic friction is 0.50. If so, how much kinetic energy does it have there; if not, how close to the top, along the incline, does it get?
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