A 1.40 kg block is attached to a spring with spring constant 15 N/m.While the block is sitting at rest, a student hits it with a hammer and almost Part A instantaneously gives it a speed of 49 cm/s. What is the amplitude of the subsequent oscillations? Express your answer in centimeters. ? A = cm Submit Request Answer Part B What is the block's speed at the point where æ = 0.60A? Express your answer in centimeters per second. ? cm/s Subne it Reguest Anc wer
A 1.40 kg block is attached to a spring with spring constant 15 N/m.While the block is sitting at rest, a student hits it with a hammer and almost Part A instantaneously gives it a speed of 49 cm/s. What is the amplitude of the subsequent oscillations? Express your answer in centimeters. ? A = cm Submit Request Answer Part B What is the block's speed at the point where æ = 0.60A? Express your answer in centimeters per second. ? cm/s Subne it Reguest Anc wer
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![A 1.40 kg block is attached to a spring with spring
constant 15 N/m.While the block is sitting at rest, a
student hits it with a hammer and almost
Part A
instantaneously gives it a speed of 49 cm/s.
What is the amplitude of the subsequent oscillations?
Express your answer in centimeters.
ΑΣφ
?
A =
cm
Submit
Request Answer
Part B
What is the block's speed at the point where x =
- 0.60A?
Express your answer in centimeters per second.
ΠνΠ ΑΣφ
?
V =
cm/s
Submit
Request Answer](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc30050ec-6359-4920-ab66-43f106f38c33%2F1dd6463b-67ef-4e72-ac31-9b5d809f24d6%2F5lptsf6_processed.png&w=3840&q=75)
Transcribed Image Text:A 1.40 kg block is attached to a spring with spring
constant 15 N/m.While the block is sitting at rest, a
student hits it with a hammer and almost
Part A
instantaneously gives it a speed of 49 cm/s.
What is the amplitude of the subsequent oscillations?
Express your answer in centimeters.
ΑΣφ
?
A =
cm
Submit
Request Answer
Part B
What is the block's speed at the point where x =
- 0.60A?
Express your answer in centimeters per second.
ΠνΠ ΑΣφ
?
V =
cm/s
Submit
Request Answer
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