A simple pendulum consists of a 0.8-kg bob connected to a massless inextensible cord with a length L = 1.4 m. The bob is set into motion and its %3D angular displacement is given by e(t) = 0.11cos(wt), where e is in radians and t is in seconds. Take g = 9.8 m/s^2, determine the mechanical energy of this pendulum. O 0.090 J O 0.052 J O 0.085 J O 0.066 J 0.046 J
A simple pendulum consists of a 0.8-kg bob connected to a massless inextensible cord with a length L = 1.4 m. The bob is set into motion and its %3D angular displacement is given by e(t) = 0.11cos(wt), where e is in radians and t is in seconds. Take g = 9.8 m/s^2, determine the mechanical energy of this pendulum. O 0.090 J O 0.052 J O 0.085 J O 0.066 J 0.046 J
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![A simple pendulum consists of a 0.8-kg bob connected to a massless
inextensible cord with a length L = 1.4 m. The bob is set into motion and its
%3D
angular displacement is given by e(t) = 0.11cos(wt), where e is in radians and t is
in seconds. Take g = 9.8 m/s^2, determine the mechanical energy of this
pendulum.
O 0.090 J
O 0.052 J
O 0.085 J
O 0.066 J
0.046 J](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb5c33514-6e1a-48fa-8ff4-2c91c7530d8e%2Fb9d3d9fb-400b-45a4-b4b8-c11e481bfa49%2Fl1i4ugh_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A simple pendulum consists of a 0.8-kg bob connected to a massless
inextensible cord with a length L = 1.4 m. The bob is set into motion and its
%3D
angular displacement is given by e(t) = 0.11cos(wt), where e is in radians and t is
in seconds. Take g = 9.8 m/s^2, determine the mechanical energy of this
pendulum.
O 0.090 J
O 0.052 J
O 0.085 J
O 0.066 J
0.046 J
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