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- Determine the algebraic sum of the moments of forces relative to a point in F = 10.0 N; m =9.0 Nm, q =8.0 N/mDetermine the magnitude of moment (Nm) of the 383-N force about point A if x = 0.55 m , y = 0.69 m, and θ = 41.4ᵒ. Round off only on the final answer expressed in 3 decimals. Instead of units, type either POSITIVE or NEGATIVE to indicate the direction of moment which is consistent with the sign convention discussed on lectures. Sample answers are 12.908 POSITIVE or 12.908 NEGATIVEFINDING MAXUMIM AND MINIMUM MOMENT My question goes about the problem which is located here: https://www.bartleby.com/questions-and-answers/the-70-n-force-acts-on-the-end-of-the-pipe-at-b.-determine-the-angles8-0-180-of-the-force-that-will-/567dba2e-b426-4c49-967a-56130cc9db87 In the second step, it states that the value of the equation (1) will be maximum when the first derivative of the moment equation will be zero. Why? And why did we use the derivative rules in the first place? Thank you in advance for your patience,
- The bent rod is supported at points A, B and C by smooth journal bearings, and is subjected to force F. If dimensions a = 2.3 m, b = 1.5 m, c = 0.6 m, and d = 2.5 m, and the force F is {-2i + 9j - 3k} kN, determine the magnitude of the moment (in kN⋅m) caused by force F about point A. Answer must include 2 places after the decimal point.The throttle-control lever OA rotates in the range 0≤θ≤90∘. An internal torsional return spring exerts a restoring moment about O given by M = K(θ+π/4), where K = 670 N·mm/rad and θ is in radians. Determine and plot as a function of θ the tension T required to make the net moment about O zero. The effects of the radius of the pulley at B are negligible. After you have completed the plot, answer the questions. Assume r = 60 mm, d = 150 mm.Q13. As shown in the image below, the member is subjected to the applied loads: a free couple moment M=320lb*ft, concentrated force F1=380lb, and concentrated force F2=220lb. The dimension a=5.5ft. Determine the magnitude of the resulatant moment (in lb*ft) caused by these applied loads about point A. Answer must inculde 1 place after the decimal point.
- Using a ring collar the P = 710 N force can act in the vertical plane at various angles. Determine the magnitude of the moment (Nm) it produces about point A if θ = 52 degrees. Round off only on the final answer expressed in 3 decimal places.Using a ring collar the P = 679 N force can act in the vertical plane at various angles. Determine the magnitude of the maximum moment (Nm) it produces about point A.Using a suitable figure show that the resultant of two co-plainer, concurrent forces 'P' & 'Q' having '0' angle between them, can be written in the form of, R = square root of P^2+ Q^2 + 2PQ cos theta. Hence derive an expression for the resultant force if the angle between the forces is 90°.
- 5a. If lengths a=1.2m, b=3.7m, c=1.6m, d=4, e=1.4m, and f=4.3m, determine the angle (in degree) between the forces F_A and F_B. Answer must include 1 place after the decimal point. 5b. If lengths a=1.1m, b=4.8m, c=1.1m, d=3.2, e=1.3m, and f=3.2, determine the moment (in N*m) caused by force F_A about axis OD. Answer must include 1 place after the decimal point. Negative sign must be included if the rotational tendenct about the OD axis (from O to D) is clockwise. 5c. Find out all support reaction components at the fixed support O after being given all forces and lengths. ( use the 2nd image named practice problem 5-2 for this question)While sliding a desk, three studentsexert forces as F1 = 20 lb,F2 = 40 lb and F3 = 30 lb. You areto replace these 3 forces with a singleequivalent force that acts along theline y=mx+b.Determinea) The slope mb) The intercept bWhat is the equivalent resultant force and specify its location, measured from point 0 Choices: FR= 12.5 kN, d= 1.54 m FR= 13.5 kN, d= 1.44 m FR= 12.5 kN, d= 1.64 m FR= 13.5 kN, d= 1.54 m