Q1: determine the resultant of the force system in next figure. And locate the resultant with respect to point (A). 5ON 100N 30 65 A 40N 1o cm 75N
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- Discovery,Discussion and writing 1.Use the formula x=1/32 v² sin 20 to explain why the projection angle that maximizes the distance a projectile traves is 0=45° when h0= 0. Please refer to the problem and figure.Hello, In this statics problem I keep getting the answer to be 49mm, but the correct answer is supposed to be 74.3 mm. I did a similar problem with the same free body diagram, so I am confused as to where I am going wrong. Thank you.The motion of a particle under the influence of a central force is described by r=a sin 8. Find the nature of the force?
- If we change the angle of the upper chain from 60 degrees to 45 degrees, determine the new expressions for the three tensions. (The images have background info used to help solve the practice problem. )Answer only direction of the force (N, E, W, S, etc.) or provide diagram with x, y, z axis.Include given and required for the solution of this given problem. For the system shown below, determine the values of T1 and T2 if the weight is 600 N?
- Referring to figure 1, determine: 1. Equivalent resultant force. 2. Equivalent resultant moment about the left end. 3. Position of the resultant force from left end. Figure 1: forces in kN and distances in mWhat is the difference between 2D Force and 3D Force systems? Explain in no more than 50 words.In this diagram, what direction would the force go in? The textbook says the force goes to the left but shouldn't it go into the paper?
- A uniform plank with length 2 m, mass 30k is supported by three ropes as shown by the blue vectors in the above figure. If the person's weight is 700 N, d = 0.5 m from the left, find tension T1,T2 and T3Hi! Please ndicate the given, diagram, FBD, and the solution with no shortcuts, Thanks! 5) A body system has three forces which are all at rest and in equilibrium. F1 is measured at 170 N whilst F3 is equal to340 N. The direction of each force is shown in the figure below. To balance the force within the body system, computefor the magnitude of F2 and its direction.Determine the magnitude of the force P required to maintain equilibrium for the system shown in Figure Q3a.