Question: m0(g)=858.g Part B Part C CALCULATION AND ANALYSIS 1. Explain why the center of gravity of the object is located directly above the knife edge

 m0(g)=858.g Part B Part C CALCULATION AND ANALYSIS 1. Explain why
the center of gravity of the object is located directly above the
knife edge position found in procedure 1 . 2. Calculate the sum

m0(g)=858.g Part B Part C CALCULATION AND ANALYSIS 1. Explain why the center of gravity of the object is located directly above the knife edge position found in procedure 1 . 2. Calculate the sum of the torques on the rigid object for Parts A and B. Remember. counterclockwise torques are positive and clockwise rorques are negative. 3. Calculate the % discrepancies of the torques for Part A and B using equation 5.6. 4. Calculate the sum of the horizontal and vertical forces for Part C using equations 5.2. 5. Calculate the sum of the torques on the rigd object for Part C 6. Calculate the % discrepancies of the torques for Part C using equation 5.6. 7. Would it be possible to achieve equilibrium with only one of the two upward forces vertical and the other at an angle to the vertical? Use a diagram as part of your answer. m0(g)=858.g Part B Part C CALCULATION AND ANALYSIS 1. Explain why the center of gravity of the object is located directly above the knife edge position found in procedure 1 . 2. Calculate the sum of the torques on the rigid object for Parts A and B. Remember. counterclockwise torques are positive and clockwise rorques are negative. 3. Calculate the % discrepancies of the torques for Part A and B using equation 5.6. 4. Calculate the sum of the horizontal and vertical forces for Part C using equations 5.2. 5. Calculate the sum of the torques on the rigd object for Part C 6. Calculate the % discrepancies of the torques for Part C using equation 5.6. 7. Would it be possible to achieve equilibrium with only one of the two upward forces vertical and the other at an angle to the vertical? Use a diagram as part of your

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