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- 4-17 Change the 30 deg angle to 10 degFrom the 3D-truss figure. Determine the following. 5. Force AD. 6. Force CD. 7. Force BD.A man holds a 192-N ball in his hand, with the forearm horizontal (see the figure). He can support the ball in this position because of the flexor muscle force M→, which is applied perpendicular to the forearm. The forearm weighs 18.5 N and has a center of gravity as indicated. Find (a) the magnitude of M→ and the (b) magnitude and (c) direction (as a positive angle counterclockwise from horizontal) of the force applied by the upper arm bone to the forearm at the elbow joint. For the direction I know the units is degrees, but I have tried using the answer from b, and it is not correct.
- *4-48. Determine the moment about point O of each force acting on the pipe assembly. Add these moments and calculate the magnitude and coordinate direction angles of the resultant moment. Prob. 4-48 0.8 m F₁ = {30i+20j - 30k} N A 1.20 m 0.4 m y F₂= {60i 10j - 35k) NThe figure shows a wire cutter. Determine the cutting force on the wire at A when the 75-N forces are applied to the handgrips. (Hint: The horizontal components of pin forces at B and D are zero due to symmetry.)Calculate all forces acting on the bar AB described in Prob. 5.1.
- Solve for the resultant forces and moments at points A and B in diagram belowDetermine the resultant internal torque acting on the cross sections through points B and C. Please help me with this exercise with a complete solution so that I may study it later on. thank you.Find the rectangular components of the forces shown in figures P6-3 and P6-4.
- find B 20 ft -10 ft magnitude of force F and the angle at point B?I tried taking the determinate of the distance and force vectors of G2 and G3 about A and adding them to the moment G1 about A but I have no clue where I am going wrong can you help me with this please?I'm stuck at establishing the Moment at O for both circles. I don't know how to find the force.