If the mass of the container is 120kg and it is supported by three cables as shown shown in the figure, determine the tension in each cable. y 420mm Ꭰ 575mm C 405mm 288mm B x 540mm A
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- The cable supports three 400-lb loads as shown. If the maximum allowable tension in the cable is 900 lb, find the smallest possible sag hC at C.3. The unstretched length of an elastic cord is made to run vertically from the ceiling down to the floor. If the mid-portion of the elastic cord is pulled with a 15 kg horizontal force, thus stretching the chord and making the cord inclined with a slope of 4/5, determine the tension in the chord.Bodies A and B are joined by a cord parallel to the inclined plane as shown. Under body A which weighs 200 kN U = 0.20 while U = 0.50 under body B which weighs 300 kN. Determine the angle ⌀ at which motion impends. What is then the tension in the cord?
- Determine tension in the cable at given that the uniform cylinder weighs 350 Ih. Neglect friction and the weight of bar ABDetermine the tension in the cable at B, given that the uniform cylinder weighs 350 lb. Neglect friction and the weight of bar AB.200 lb 390 lb 5. The block in the figure has a weight of 400 lb and an applied force of 600 lb to the right. There is also a pressure P exerted by the incline plane. If the direction of the resultant, R, is parallel to the incline, determine the magnitudes P and R. W = 400 lb # F 600 lb
- An overhead crane is used to reposition the boxcar within a railroad car-repair shop. If the boxcar begins to move along the rails when the X- component of the cable tension reaches 600 lb, calculate the necessary tension Tin the cable. Determine the angle Oxy between the cable and the vertical x-y plane.The shear leg derrick is used to haul the 200-kg net of fish onto the dock. Determine the compressive force along each of the legs AB and CB and the tension in the winch cable DB . Assume the force in each leg acts along its axis. 5.6 m 4m 4 m 2 m 2 m8. The 100 lb "slider" C is held in place on the smooth bar by the cable AC. Determine the tension in the cable and the force exerted on the slider by the bar. 7 ft 4 ft 6 ft 4 ft 4 ft. Figure: 03-18-074UNEX-Example 3.6 Application of the Dot Product (Related Problem 3.79) Contit300 Penn Practice
- The backhoe and its contents have a combined weight of 300 kN and center of gravity at point G. Find the resulting force in cylinder AE and linkages AB and AD, indicating whether they are in Tension or Compression. Given: L1 = 300 mm, L2 = 75 mm, L3 = 450 mm, θ = 40 °, Φ = 60 °.An architecture student working at a drafting table requires some muscle action in order to support her head. As shown in the figure, three forces act on her head. If the force provided by muscles is F = 70 N and the weight of her head is W = 40 N, determine the magnitude and direction of the force provided by the upper vertebrae F, to hold her head stationary. Assume that this force acts along a line through the center of mass of her head as do the weight and muscle force. (Assume the +x-axis to be to the right.) magnitude direction ° measured clockwise from the -x-axis CGA beam with a length of 2 m and a mass of 10 kg supports a 50 kg box. The beam is connected to a wall by a hinge at its base and a horizontal wire. The wire is connected to the beam 1.5 m from the hinge and makes an angle θ of 35o to the beam. The goal is to find the tension in the wire and the horizontal and vertical components of the force exerted by the hinge on the board Calculate the tension in the string. write down Newton’s 2nd law for both x and y directions. find the horizontal and vertical components of the force that the hinge exerts on the beam. Suppose the maximum tension that the wire can withstand is 1500 N. What is the maximum load that the hinge can support before the wire breaks?