Those data are for questions 10 to 14. The pendulum consists of a 4 kg plate and a 1 kg slender rod. 1-3 m. a-1.25 m and
Posted: Sun Jul 10, 2022 11:43 am
questions 10 to 14. The pendulum consists of a 4 kg plate and a 1 kg slender rod. 1-3 m. a-1.25 m and b=0.5 m. Find the location of the point G, the center of mass of the pendulum from the point O. Give your answer with 1 decimal.
The pendulum consists of a 4 kg plate and a 1 kg slender rod. I= 3 m, a-1.25 m and b-0.5 m. G e Ta Find the Mass Moment of Inertia of the rod about the center of mass of the pendulum G. Give your answer with 2 decimals.
The pendulum consists of a 4 kg plate and a 1 kg slender rod. I-= 3 m, a-1.25 m and b=0.5 m. G Tal Find the Mass Moment of Inertia of the plate about the center of mass of the pendulum G. Give your answer with 2 decimals.
The pendulum consists of a 4 kg plate and a 1 kg slender rod. l- 3 m. a-1.25 m and b=0.5 m. e b La- Find the Mass Moment of Inertia of the pendulum (the rod + the plate) about the center of mass of the pendulum G. Give your answer with 1 decimal. 4
The pendulum consists of a 4 kg plate and a 1 kg slender rod. l- 3 m, a-1.25 m and b=0.5 m. e La Find the radius of gyration of the pendulum (the rod + the plate) in m about the center of mass of the pendulum G. Give your answer with 3 decimals.
Those data are for The pendulum consists of a 4 kg plate and a 1 kg slender rod. I= 3 m, a-1.25 m and b-0.5 m. G e Ta Find the Mass Moment of Inertia of the rod about the center of mass of the pendulum G. Give your answer with 2 decimals.
The pendulum consists of a 4 kg plate and a 1 kg slender rod. I-= 3 m, a-1.25 m and b=0.5 m. G Tal Find the Mass Moment of Inertia of the plate about the center of mass of the pendulum G. Give your answer with 2 decimals.
The pendulum consists of a 4 kg plate and a 1 kg slender rod. l- 3 m. a-1.25 m and b=0.5 m. e b La- Find the Mass Moment of Inertia of the pendulum (the rod + the plate) about the center of mass of the pendulum G. Give your answer with 1 decimal. 4
The pendulum consists of a 4 kg plate and a 1 kg slender rod. l- 3 m, a-1.25 m and b=0.5 m. e La Find the radius of gyration of the pendulum (the rod + the plate) in m about the center of mass of the pendulum G. Give your answer with 3 decimals.