A 2kg block is pulled up 10° incline with constant speed of 2 m/s by means of a rope parallel to the incline. a) If the coefficient of kinetic friction between the block and the incline is 0.35, what is the tension in the rope? b) At what rate tension does work on the block? Use 2nd newton's law to solve part a). Part b) is about calculating power.

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Chapter5: Energy
Section: Chapter Questions
Problem 5P: Starting from rest, a 5.00-kg block slides 2.50 m down a rough 30.0 incline. The coefficient of...
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A 2kg block is pulled up 10° incline with constant speed of 2 m/s by means of a rope parallel to the incline.
a) If the coefficient of kinetic friction between the block and the incline is 0.35, what is the tension in the
rope? b) At what rate tension does work on the block? Use 2nd newton's law to solve part a). Part b) is
about calculating power.
Transcribed Image Text:A 2kg block is pulled up 10° incline with constant speed of 2 m/s by means of a rope parallel to the incline. a) If the coefficient of kinetic friction between the block and the incline is 0.35, what is the tension in the rope? b) At what rate tension does work on the block? Use 2nd newton's law to solve part a). Part b) is about calculating power.
2. A horizontal spring (k=100N/m) with a lkg block at its end is compressed 21 cm. a)What is the elastic
potential energy stored in the spring? b) If the system is released, with what speed the block will leave the
spring? Ignore friction, use energy conservation law.
Transcribed Image Text:2. A horizontal spring (k=100N/m) with a lkg block at its end is compressed 21 cm. a)What is the elastic potential energy stored in the spring? b) If the system is released, with what speed the block will leave the spring? Ignore friction, use energy conservation law.
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