B 45° 30° E In the figure above, ropes are used to hang a lamp between two walls. If point F is taken as the origin, and each rope is 5m long, find the coordinates of A, B, C, D, E.
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- Given that P=120lb and Q=130lb, find the rectangular representation of P+Q.In the figure shown the gate in the shape of an arc of a circle of radius 3m has a central angle 45. Find the magnitudes and locations of the components and for a 1m length of gate (perpendicular to the paper).Find the tension in rope A and the force B exerted over the rope by beam B.
- $ Magnitude R= Direction 8 = Three forces act on point : A = 60 N at 135°, B = and C in this diagram to the correct magnitudes and directions. When this has been done correctly the dotted vector will become solid. 50 N at -45° and, C= 75 N at 60° 2. Pick up vectors A, B and C by their tails, and move them into a tip to tail arrangement. When this has been correctly done the resultant R will appear. measured Estimate the magnitude and direction of the resultant Based on this diagram, estimate the magnitude R and direction of the resultant. from the force R using the tip-to-tail method. 1. Move the tips of forces A, B, Submit part Submit part2000Lbs 30° 60° y A' \ B The bar OA is fully constrained at O and attached to the cable AB. The bar length is 20', and it forms a 30° angle with the z-axis and its projection on the x– y plane forms a 60° angle with the x-axis. The point B is prescribed by the coordinates (8',16',0). If the force in the cable is 2000Lbs, what is the moment of this force about O? What is the moment of the 2000Lbs force about the axis OÁ.Draw simple FBD and submit the solution within 30 minutes. Note : don't draw the diagram on the image itself,use seperate sheet.
- ) Three cables are secured to a ring at B. A turnbuckle on cable BC is tightened such that the tension in cable BC is 1.6 kN. (Hint: You’ll need to define/insert your own x-y coordinate system). Determine the tensions in cables BA and BD. (Hint: FBD/EQNS/SOLVE)5. A person pulls on a rope with a force of 100 lbs as shown below. What is the moment about point A as a result of this pulling force? Answer: 3034 ft-lb CW 200 le 10 ft 18 ft Gin A * 40 ft SAIn the four-rod mechanism. You have a closed polygon, where: a = length of input crank = 1 inch b = length of connecting rod = 2 inches c = length of output crank = 2 inches d = length of fixed rod = 2 inches. By varying the angle θ, the perimeter of the polygon is preserved, but not its area. Determine the angle θ where its maximum area is reached and the minimum area of the polygon.