A 1.85 kg frictionless block is attached to an ideal spring with force constant 310 N/m. Initially the spring is neither stretched nor compressed, but the block is moving in the negative direction at 13.5 m/s- Find the amplitude of the motion. Express your answer to three significant figures. A = Submit Part B Gmax Submit Find the maximum acceleration of the block. Express your answer to three significant figures. Part C ΠΙΑΣΦΗ h F|= Request Answer ΠΙΑΣΦ 3 → Request Answer Find the maximum force the spring exerts on the block. Express your answer to three significant figures. ΫΠ ΑΣΦ → ? ? A ? m N

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A 1.85 kg frictionless block is attached to an ideal spring with force.
constant 310 N/m. Initially the spring is neither stretched nor
compressed, but the block is moving in the negative direction at
13.5 m/s
Part A
Find the amplitude of the motion.
Express your answer to three significant figures.
A =
Submit
Part B
amax
Submit
Part C
ΠΑΣΦ
Find the maximum acceleration of the block.
Express your answer to three significant figures.
ΠΙΑΣΦΑ
1
|Fmax|=
Request Answer
Request Answer
→ O
1
Find the maximum force the spring exerts on the block.
Express your answer to three significant figures.
ΠΙΑΣΦ 1
?
?
?
m
m/s²
N
Review | Constants
Transcribed Image Text:A 1.85 kg frictionless block is attached to an ideal spring with force. constant 310 N/m. Initially the spring is neither stretched nor compressed, but the block is moving in the negative direction at 13.5 m/s Part A Find the amplitude of the motion. Express your answer to three significant figures. A = Submit Part B amax Submit Part C ΠΑΣΦ Find the maximum acceleration of the block. Express your answer to three significant figures. ΠΙΑΣΦΑ 1 |Fmax|= Request Answer Request Answer → O 1 Find the maximum force the spring exerts on the block. Express your answer to three significant figures. ΠΙΑΣΦ 1 ? ? ? m m/s² N Review | Constants
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