A block whose mass m is 680 g is fastened to a spring whose spring constant k is 65 N/m. The block is pulled a distance x =11 cm from its equilibrium position at x =0 on a frictionless surface and released from rest at t =0. What is the angular frequency? 1 rad/s 10 rad/s 97.8 rad/s 9.78 rad/s
A block whose mass m is 680 g is fastened to a spring whose spring constant k is 65 N/m. The block is pulled a distance x =11 cm from its equilibrium position at x =0 on a frictionless surface and released from rest at t =0. What is the angular frequency? 1 rad/s 10 rad/s 97.8 rad/s 9.78 rad/s
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
Transcribed Image Text:A block whose mass m is 680 g is fastened to a spring whose spring constant k is 65 N/m. The block is pulled
a distance x =11 cm from its equilibrium position at x =0 on a frictionless surface and released from rest at t
=0. What is the angular frequency?
O 1 rad/s
O 10 rad/s
O 97.8 rad/s
9.78 rad/s
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