Correct Answer You Answered A small steel ball of mass 0.3 kg sits on a vertical spring. The spring has a spring constant k = 520 N/m and is compressed by 0.18 m. When the spring is released, it accelerates a small steel ball and it flies straight up. How high will it go? (Ignore air resistance) 7.1 m 2.9 m 1.5 m 0.2 m 11.6 m
Correct Answer You Answered A small steel ball of mass 0.3 kg sits on a vertical spring. The spring has a spring constant k = 520 N/m and is compressed by 0.18 m. When the spring is released, it accelerates a small steel ball and it flies straight up. How high will it go? (Ignore air resistance) 7.1 m 2.9 m 1.5 m 0.2 m 11.6 m
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pls help, I'm not too sure how to do this problem. thanks so much!
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You Answered
Question 6
A small steel ball of mass 0.3 kg sits on a vertical spring. The spring has a
spring constant k = 520 N/m and is compressed by 0.18 m. When the spring
is released, it accelerates a small steel ball and it flies straight up. How high
will it go? (Ignore air resistance)
7.1 m
2.9 m
1.5 m
0.2 m
0/6 pts
11.6 m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F251254ba-8af9-4aa2-8917-a973afab1561%2Fc1040f95-46d1-46ee-87ac-bd01a85dafc2%2F6yv55o9_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Correct Answer
You Answered
Question 6
A small steel ball of mass 0.3 kg sits on a vertical spring. The spring has a
spring constant k = 520 N/m and is compressed by 0.18 m. When the spring
is released, it accelerates a small steel ball and it flies straight up. How high
will it go? (Ignore air resistance)
7.1 m
2.9 m
1.5 m
0.2 m
0/6 pts
11.6 m
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Follow-up Question
uhh it says the correct answer should be 2.9 m... how would I go about getting to that answer?
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