If the weight of cylinder A is 300N, determine the weight of cylinder C in orde. to hold the assembly in the position shown В 30° D C A 300 N
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- The 250-N block rests upon a level plane for which fk = 0.2. It is pulled by force P = 100N inclined at 20o with the horizontal. If the 100-N pull is then removed, find the distance the block will travel. the answer must 3 decimal places.If the weight of cylinder A is 300N, determine the weight of cylinder C in order to hold the assembly in the position shown 30° ´E A 300 NA tree feller cuts off large tree near the ground level and then continues to hoist the trunk. If the tree has a mass of 3 tonne (i.e. 3 metric ton), for the position shown 180 B 1080 |A 2250 -2040 720 Determine in KN the magnitude of the force supported by pin C
- Block A rests on top of block B and the cord is parallel to the inclined, if u=0.14 for all surfaces of contact. Determine the angle theta in degree when motion of B will impend block A weights 730N and B weights 1670N.Problem 3: If the springs shown each have an unstretched length of 48 inches, determine the angle for equlibrium with the 10- lb lamp fixture. 4 ft www. k = 5 lb/ft 4 ft 0 wwwww k = 5 lb/ftResolve the 360-lb force into components along the cable AB and AC. Use a = 60° and B = 40°
- The center of gravity of the 850-N man is at G. If the man pulls on the rope with a 388-N force, determine the horizontal distance b between the man's feet and G.The force F=5i+12j+4k lb is applied to the handle of the door. Determine the orthogonal component of F that is perpendicular to the plane of the door.If the mass of cylinder C is 40 kg, determine the mass of cylinder A in order to hold the assembly in the position shown. |30° 40 kg A Select one: O a. 30 kg O b. 40 kg O c. 20 kg O d. 10 kg Clear my choice
- The car is towed at constant speed by the 600lb force and the angle 0 is 25°. Solve for the forces AB and AC. 600 lb A 30° B C 4 ftThe solar panel attached to the roof in Fig. 2.2-13 has a weight of W = 400N. Determine the rec- 2.2-4 tangular components of the weight of the panel in the inclined coordinate system. Express the weight of the solar panel in vector form. 0 = 70° . W Fig. 2.2-13The ring at B is supported in equilibrium by spring AB, a cable running through the frictionless pulley at C, and cable BD. The pulley radius is 0.0267 m, and the unstretched length of spring AB is 0.24 m. If F1 = 340 N and F2 = 200 N at 0 = 50 degrees, determine the spring constant k and the force exerted on the ring by cable BD expressed in Cartesian components. F1 C В www d k A F2 D Values for dimensions on the figure are given in the following table. Note the figure may not be to scale. Variable Value a 0.400 m 0.160 m 0.267 m d. 0.107 m Note the figure may not be to scale. k = N/m F BD = ) N