Consider blocks A with mass of 8.25 kg and B with mass of 14.6 kg connected as shown. Block A is attached to an un-streched spring with k=925 N/m and block B is pulled by a force of 188 N. Coefficient of friction between block B and ground is u=0.3. B. P Apply principle of work and energy to calculate the speed of block B after it has moved 0.18 m Choose.. Apply principle of work and energy to calculate the speed of block A after Block B has moved 0.18 m Choose.

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Consider blocks A with mass of 8.25 kg and B with mass of 14.6 kg connected as shown. Block A is attached to an un-streched spring
with k=925 N/m and block B is pulled by a force of 188 N. Coefficient of friction between block B and ground is u=0.3.
Apply principle of work and energy to calculate the speed of block B after it has moved 0.18 m
Choose.
Apply principle of work and energy to calculate the speed of block A after Block B has moved 0.18 m
Choose..
Transcribed Image Text:Consider blocks A with mass of 8.25 kg and B with mass of 14.6 kg connected as shown. Block A is attached to an un-streched spring with k=925 N/m and block B is pulled by a force of 188 N. Coefficient of friction between block B and ground is u=0.3. Apply principle of work and energy to calculate the speed of block B after it has moved 0.18 m Choose. Apply principle of work and energy to calculate the speed of block A after Block B has moved 0.18 m Choose..
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