Part A A spring of negligible mass has force constant k = 1400 N/m. How far must the spring be compressed for an amount 3.50 J of potential energy to be stored in it? Express your answer using two significant figures. 7.1x10-2 m Submit Previous Answers v Correct Part B You place the spring vertically with one end on the floor. You then drop a book of mass 1.20 kg onto it from a height of 0.500 m above the top of the spring. Find the maximum distance the spring will be compressed. Take the free fall acceleration to be 9.80 m/s? . Express your answer using two significant figures. • View Available Hint(s) ? m Submit

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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can you please solve part b but can you write in a paper instead of just writing it on the website, thanks.

Part A
A spring of negligible mass has force constant k =
1400 N/m.
How far must the spring be compressed for an amount 3.50 J of potential energy to be stored in it?
Express your answer using two significant figures.
7.1x10-2 m
Submit
Previous Answers
Correct
Part B
You place the spring vertically with one end on the floor. You then drop a book of mass 1.20 kg onto it from a height of
0.500 m above the top of the spring. Find the maximum distance the spring will be compressed.
Take the free fall acceleration to be 9.80 m/s . Express your answer using two significant figures.
• View Available Hint(s)
?
Submit
E
Transcribed Image Text:Part A A spring of negligible mass has force constant k = 1400 N/m. How far must the spring be compressed for an amount 3.50 J of potential energy to be stored in it? Express your answer using two significant figures. 7.1x10-2 m Submit Previous Answers Correct Part B You place the spring vertically with one end on the floor. You then drop a book of mass 1.20 kg onto it from a height of 0.500 m above the top of the spring. Find the maximum distance the spring will be compressed. Take the free fall acceleration to be 9.80 m/s . Express your answer using two significant figures. • View Available Hint(s) ? Submit E
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