A 130 g hot wheels car is put on a launcher that is powered by a spring with a constant of 150 N/m. When the spring is fully loaded it is compressed a distance of 6.6 cm. What is the energy of the car as it is loaded in the launcher? (put in all places) your decimal Units: What is the speed the car moves as it is released from the launcher? Units:

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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A 130 g hot wheels car is put on a launcher that is powered by a spring with a
constant of 150 N/m. When the spring is fully loaded it is compressed a distance of
6.6 cm.
What is the energy of the car as it is loaded in the launcher? (put in all your decimal
places)
Units:
What is the speed the car moves as it is released from the launcher?
Units:
Transcribed Image Text:A 130 g hot wheels car is put on a launcher that is powered by a spring with a constant of 150 N/m. When the spring is fully loaded it is compressed a distance of 6.6 cm. What is the energy of the car as it is loaded in the launcher? (put in all your decimal places) Units: What is the speed the car moves as it is released from the launcher? Units:
Expert Solution
Step 1

Given data: 

Mass (m) = 130 g = 0.130 kg

Spring constant (k) = 130 N/m

Compressed by distance (x) = 6.6 cm = 0.066 m

Required:

Spring potential energy and speed of the car

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