Ropes AB and CAD can support a maximum tension of 650 N. Knowing that 0-30°, determine largest mass at C that can be supported without exceeding the allowable tension in either rope and the angle a required for equilibrium. Enter the largest MASS that can be supported at C below. Express your answer in kg to the nearest 0.1 kg. B a D
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- The concurrent force system operating at a bridge truss joint is shown in the illustration below. To maintain the equilbrium forces, determine the values of P and F.PROBLEM: Find the tension exerted by ach cord as shown below. The weight of the hanging body is 10.0 N the systems are in equilibrium. 70⁰ 45⁰If rope BC will fail when the tension becomes 45 kN, determine the greatest vertical load Fthat can be applied to the beam at B. What is the magnitude of the reaction at A for this loading? Neglect the thickness of the beam. 26 kN F C 13 12 B 2 m 4 m
- FE 1A pair of wedges is used to lift a crate as shown in The crate weighs 4000 lb, the wedge angle e is Fig. 18°, and the coefficient of friction is 0.15 at all surfaces. The weight of the wedges is negligible. Determine The force P necessary to remove the wedge or to pre- vent the wedge from slipping out WReminders: Write out the equation you intend to use before substituting in it.
- 5. A 40 kg block is resting on an inclined plane making an angle of 20 deg. from the horizontal. If the coefficient of friction is 0.6, determine the force parallel to the incline that must be applied to cause impending motion down the plane.The flanged steel cantilever beam with riveted bracket is subjected to the couple and two forces shown, and their effect on the design of the attachment at A must be determined. Replace the two forces and couple by an equivalent couple M and resultant Rat A. The couple is positive if counterclockwise, negative if clockwise. 2.01 KN 0.49 m 1.52 m- 76⁰ A 6 Answers: M= kN.m R=( i i+ i L-- 500 N·m 10.17 m 0.17 m 1.05 KN j) kNI need the answer as soon as possible
- 1. The structure shown is pinned to the floor at A and H. Determine the magnitude of all the support forces acting on the structure and find the force in member BF.The following setup of masses is hung (l) to a fixed ceiling as shown in the figure below. If M, = 10 kg and M2 = 30 kg and the system is under static equilibrium. The tension T, is equal to: A. 10 N T1 В. 20 N C. 30 N D. 196 N E. 294 N M1 T2 M2Determine the forces in members BE and CE of the loaded truss. The forces are positive if in tension, negative if in compression. 3.1 m 41° 5.6 kN B 3.1 m 5.6 KN E BC=CD C 3.1 m D