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# The required tension in cable ab is 1200n

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The required tension in cable AB is 300 lb. 2/13 The guy cables AB and AC are attached to the top of the transmission tower.The tension in cable AB is 8 kN.Determine the required tension T in cable AC such that the net effect of the two cable tensions is a downward force at point A. Determine the magni- tude R of this downward force.. Problem 2/14Feb 23, 2017 · Cable AB passes over the small ideal pulley C without a change in its tension. What length of cable CD is required for static equilibrium in the position shown? What is the tension T in cable CD? .

Determine the position x and the tension developed in ABC required for equilibrium of the 100-kg sack. Neglect the size of. Cable ABC has a length of 5 m. Determine the position x and the tension developed in ABC required for equilibrium of the 100-kg sack. Neglect the size of ... Exerted along link AB by the tractive apparatus shown ...Question: Knowing that the tension in cable AD is 180 lb, determine (a) the angle between cable AD and the boom AB, (b) the projection on AB of the force exerted by cable AD at point A.

The frame ACID is hinged at A and D and is supported by a cable that passes through a ring at B and is attached to hooks at G and H. Knowing that the tension in the cable is 1125 N, determine the moment about the diagonal AD of the force exerted on the frame by portion BH of the cable. Have where Then 0.4m 0.6k M (0.8 m)i — (0.6 m)k = 0.8i — ADFind tension in cables using vectors? Determine the tension developed in cable AB AC & AD (figure link below) required for equilibrium of the 300 lb crate. ... Is the orbital speed required for weightlessness a constant for Earth no matter the altitude? ? 7 answers.

PROBLEMS The hydraulic cylinder AB exerts a force F of constant ... The cable AB carries a tension of 400 N. Determine the moment about O Of this tension as applied to ... k 60 Nfm—that is, 60 N of forœ is required to stretch the band each additional meter of elongation.7-111. If the slope of the cable at support A is zero, determine the deflection curve y = f(x) of the cable and the maximum tension developed in the cable. SOLUTION Using Eq. 7-12, Applying the boundary condition at x = 0 results in C 1 = 0. Applying the boundary condition y = 0 at x = 0, we have Thus,Sep 13, 2008 · Knowing that portions AC and BC of cable ACB must be equal, determine the shortest length of cable that can be used to support the load shown if the tension in the cable is not to exceed 870 N. i attached the picture that came with the problem. i am lost and not sure how to approach the... 1.6 Determine the maximum weight of the flowerpot that can be supported without exceeding a cable tension of 50 lb in either cable AB or AC. Note that the 2 cables make an angle 60 and 53.1 respectively with the horizontalThe guy wires AB and AC are attached to the top of the transmission tower. The tension in cable AB is 9.1 kN. Determine the required tension T in cable AC such that the net effect of the two cables is a downward force at point A. Determine the magnitude R of this downward force.

PROBLEM 2.7 A telephone cable is clamped at A to the pole AB. Knowing that the tension in the right-hand portion of the cable is T2 = 1000 lb, determine by trigonometry (a) the required tension T1 ...(A) Determine the tension developed in cable AB required for the equilibrium of the 500 lb crate. Express your answer to three significant figures and include appropriate units.

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• 3.39 Knowing that the tension in cable AC is 280 lb, determine (a) the angle between cable AC and the boom AB, (b) the projection on AB of the force excreted by cable AC at point A.
• Answer to The required tension in cable AB is 200 lb. Determine (a) the vertical force P that must be applied to the pedal, (b)....
• (Solution Download) The required tension in cable AB is 200 lb. Determine (a) the vertical force P that must be... The required tension in cable AB is 200 lb. Determine (a) the vertical force P that must be applied to the pedal, (b) the corresponding reaction at C.
• In the Dandenong Ranges area Victoria 2014. Medium voltage (11 kV - 22 kV) Aerial Bundled Cable is being replaced with underground cable due to high failure rates of HV ABC, with life expectancy of just 10 years, when original life was expected to be approx 30 years. Due to degraded cable, cost of repairs & maintenance and bushfire risk.
• Determine the tension developed in AB cable for equilibrium of the 300 lb crate.? b) Determine the tension developed in AC cable for equilibrium of the 300 lb crate. c) Determine the tension developed in AD cable for equilibrium of the 300 lb} crate.