Q3: For Fig.3, determine the tension in cable ABD and the reaction at suppor C 125 mm 175 mm -225 mm 75 mm 150 N Fig.3
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- A bent pipe is connected by a thrust bearing and a cable asshown. If a Force, F = 195 lb, is applied, what are the reactions at the thrust bearing and in the cable. The dimensions shown are a = 7.2 ft, b = 6.2 ft, and c = 4.6 ft.The rigid body is supported by a hinge at A and a cable at C. The hinge resists 5.5m translation in all three coordinate directions and rotation in the x and y directions. The 260 N force is in the -x direction and acts at the center of the 3m body. Find the tension in the cable and the components of the support C 2.5m 260N reactions at A. Your answer should include a properly Ilm annotated FBD. B 3.Imthank you
- Using the figure below, find (a) the reaction forces at B & C, and (b) the forces in the members AB, BC, and AC. Solve in terms of in terms of P first, then P=50KN P 4m B 3m 4.5m-4.00 kg block is attachedto a vertical rod by meansof two strings. When the systemrotates about the axis of the rod,the strings are extended as shownin Fig. and the tensionin the upper string is 80.0 N. (a)What is the tension in the lowercord? (b) How many revolutionsper minute does the system make?(c) Find the number of revolutionsper minute at which the lowercord just goes slack. (d) Explainwhat happens if the number ofrevolutions per minute is less thanthat in part (c).Example -2: Determine the tension in cables BA and BC necessary to support the 60-kg cylinder. w=mg TA Tc 45° fy co THD 60 (9.81) N TBD = 60 (9.81) N 60 (9.81) N (b)
- The rod is supported by a ball-and-socket joint A and cables BD and CD. Suppose that www = 600 N/m . Determine the components of reaction at the ball-and-socket joint A using scalar notation. Determine the tension in the supporting cable DB. Determine the tension in the supporting cable DCDC.Q2/ The cable of the tower crane is subjected to 840 N force. A fixed base at A supports the crane. Find: Reactions at the fixed base A (pin connection). B F = 840 N 24 m 13 m 15 m 2 m 10 mFor the shown frame: 1.Determine the reactions at Pin A and at B. 2.What is the force developing in Cable BE 3.Find the Internal forces at point C 300N 1 m D 1 m- -1 m- 2 m- 500N.m
- The cylinder C in the figure below weighs 1000lbs. Determine the tension in the cable , and the reactions A and FIn the figure the boom derrick supports a suspended 15-kip load . The booms BC and DE are each 20 ft long. The distances are a = 15 ft and b = 2 ft, and the angle θ= 30 degrees . The angle between BE and BC in 77.4 degrees . Determine the tension in cable AB and the reactions at the pin supports and D.Current Attempt in Progress The system in the figure is in equilibrium. A concrete block af mass 243 kg hangs from the end of the uniform strut of mass 318 kg For angles p= 29.6" and e- 66.5", find (a) the tension Tin the cable and the (b) horizontal and (c) vertical components of the force on the strut from the hinge. Serun Hlinge (a) Number Units Units (b) Number Units (c) Number Attempts: 0 of 5 used Suhmit Awer Saue for Later Using multiple attempts will impact your score.