The light right-angle boom which supports the 450-kg cylinder is supported by three cables and a ball-and-socket joint at O attached to the vertical x-y surface. Determine the reactions at O and the cable tensions. y *1.65 m 1.70 m C 1.40 m E 1.40 m
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- The bear of weight 700 N walking on the horizontal beam pivoted at point A and supported by a rope at an angle 60∘ on point B. The bear wants to reach a basket full of honey. The basket weighs 80 N. The honey basket weighs 200 N, and the beam length 6 m. When the bear in at ? = 1 m, a. Find the tension of the rope supporting the beam. b. What is the component of the forces exerted on the wall (point A)?A 200 N sign hangs from the middle of a cable between two buildings. The ends of each cable are attached to each building at the same height. The cable cannot exceed 1500 N without breaking. Find the minimum angle that the cable can make from the horizontal.A beam with 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. A. In order to find the tension in the string, which point should we select to write ?(a)Top left end of the beam(b)Point where wire is connected to the beam.(c)Middle of the beam (where mg acts).Bottom right end of the beam(d) Use the point you identified in C to calculate the tension in the string.
- A uniform beam of length L and mass M has its lower end pivoted at P on the floor, making an angle θ with the floor. A horizontal cable is attached at its upper end B to a point A on a wall. A box of mass M is suspended from a rope that is attached to the beam one-fourth L from its upper end. a)Write an expression for the tension T in the horizontal cable AB. b)What is the tension in the horizontal cable, in newtons, if the mass of the beam is 48 kg, the length of the beam is 15 m, and the angle is 22°?5.00 m 4.00 m F End A of the bar AB rests on a frictionless horizontal surface, and end B is hinged. A The weight of the bar is 200 N. horizontal force F of magnitude 200 N is exerted on end What is the magnitude of the force exerted on the bar by the hinge at point B? 156 N 248 N 261 N 284 N B.An object weighing 255 N is supported by a uniform 120 N horizontal beam as shown in the figure. The length of the beam is 2.50 m and the distance (x) is 2.05 m. Find the tension in the guy wire that is connected to the wall if the angle 0 = 55°. N
- T, T 45° 60° 200 N The diagram shows a mass of force 200N held in place between two parallel vertical walls . A cable of tension T¡ at 45° above the horizontal is placed at one end and a second cable of tension T, at 60° above the horizontal is placed at the other end. The system is in equilibrium. Find the values of T, and T, (to the nearest whole numbers).A long, uniform 2 kg rod of length 1.8 m is supported at the left end by a horizontal axis into the page and perpendicular to the rod, as shown. The right end is connected to the ceiling by a thin vertical thread so that the rod is horizontal. Thread 1.8 m Horizontal Аxis 2 kg Determine the magnitude of the force ex- erted on the rod by the axis. The acceleration of gravity is 9.8 m/s² , and the moment of in- ertia of the rod about the axis at the end of the rod is 3 Answer in units of N.The uniform 10-kg rod AB is supported by a ball-and-socket joint at A and by the cord CG that is attached to the midpoint G of the rod. Knowing that the rod leans against a frictionless vertical wall at B, determine: 1.) the moment of the weight of the structure AB 2.) the moment of the tension in cord CG
- Need help checking practice problems, image included. Thanks!Suppose a 905-kg car is on the bridge in the figure with its center of mass halfway between the hinges and the cable attachment. (The bridge is supported by the cable and hinges only.) The mass of the bridge is 2500 kg. Find the tension, in newtons, in the cable.A student gets his car stuck in a snow drift. Not at a loss, having studied physics, he attaches one end of a stout rope to the vehide and the other end to the trunk of a nearby tree, allowing for a small amount of slack. The student then exerts a force F on the center of the rope in the direction perpendicular to the car-tree line, as shown in the figure below. If the rope is inextensible and if the magnitude of the applied force is 504 N, what is the force on the car? (Assume equilibrium conditions.) KN 12 m Tree 0.50 m