Ask Question
25 July, 01:11

A 0.10 newton spring toy with a spring constant of 160 newtons per meter is compressed 0.05 meter before it is launched. When released the spring toy pops up and reaches a maximum height of 1.5 meters.

1) How much elastic potential energy is initially stored in the spring?

2) How much internal energy is produced as the toy springs up to its maximum height?

+2
Answers (1)
  1. 25 July, 01:34
    0
    (1) V = 0.2 J (2) 0.05J

    Explanation:

    Solution

    Given that:

    K = 160 N/m

    x = 0.05 m

    Now,

    (1) we solve for the initial potential energy stored

    Thus,

    V = 1/2 kx² = 0.5 * 160 * (0.05) ²

    Therefore V = 0.2 J

    (2) Now, we solve for how much of the internal energy is produced as the toy springs up to its maximum height.

    By using the energy conversion, we have the following

    ΔV = mgh

    = (0.1/9.8) * 9.8 * 1.5 = 0.15J

    The internal energy = 0.2 - 0.15

    =0.05J
Know the Answer?
Not Sure About the Answer?
Find an answer to your question 👍 “A 0.10 newton spring toy with a spring constant of 160 newtons per meter is compressed 0.05 meter before it is launched. When released the ...” in 📗 Physics if the answers seem to be not correct or there’s no answer. Try a smart search to find answers to similar questions.
Search for Other Answers