A 100 N sign is to be suspended by two cables. Determine the tension in each cable for the given angles: 4. T1 5. T2 physics info b. 18 0°. 45°
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- A cable weighing 4 kg/m is supported at the ends by two towers of the same height 100m apart. a. Flnd the sag at the center if the cable is 128.16m long. b. Find the tension at the lowest point of the cable. c. Find the tension at the highest point of the cable. A) a. 45.54m ; b. 610kg; c. 203kg B a. 35.54m ; b. 302.16kg ; c. 160kg c) a. 45.54m ; b. 160kg ; c. 203kg a. 44.45m ; b. 610kg ; c. 602.36kg E a. 53.54m ; b. 302.16kg ; c. 160kges SThis course EHide blocks The 30-kg pipe is supported at A by a system of five cords. Determine the force in the cable AB for equilibrium: B 60° Select one: O a. T(AB) = 293.83 N T(AB) = 339.83 N O c. T(AB) = 493.83 N. O d. T(AB) = 193.83 NThe required tension in cable AB is 200 lb. (Note: Point C is a pin joint.) C 15 in.- D Draw a free body diagram (a) ( (b) Determine the vertical force P that must be applied to the pedal. 60° 7 in. A В
- A 450 N sign is supported vertically by a single cable. What is the tension in the cable? AThe forces are in static equilibrium. The 140 lb force is directed along the x-axis and the 300 lb force is directed along the negative z- axis. Determine the magnitude of the unknown force, R. Z X R Ox лог 140lb A (-50, 80, 160) lb By 300 lb у01. If cable CB is subjected to a tension that is twice that of cable CA, determine the angle 0 for equilibrium of the 10-kg cylinder. Also what are the tensions in wires CA and CB? i
- 3. A 50N body is supported by two ropes, one making 30* with the vertical and the other making 45* with the horizontal. What is the tension in the ropes?В A cook holds a 1.72-kg carton of milk at arm's length (see the figure below). What force Fa must be exerted by the biceps muscle? (Ignore the weight of the forearm. Give the magnitude.) N Milk 75.00 25.0 cm- 8.00 cmA block resting on a plane inclined at an angle 0 32° from the horizontal is being held in place by steel cables a, b, and cas shown in the figure below. The tension in cable bis 80.0 N. Note that cable ais parallel to the surface of the incline and that cable bis perfectly horizontal. 42° с b a) Create an FBD around point D and determine the tension in wire aand wire C. b) Create an FBD around the block and determine the normal force and the force due to gravity F. c) What is the mass of the block in kilograms?
- 400 N 30° 5. If the tension in the cable is 400 N, determine the magnitude and direction of the resultant force acting on the pulley. This angle is the same angle 0 of line AB on the tailboard block. 400 NA 80-kg block is suspended as shown. The beam is weightless and is hinged to the wall at A. The tension force of the cable T has magnitude: (Use g = 9.8 m/s2) %3D T. 3m A 4m block O a 980 N Ob. 817 N Oc. 1143 N Od. 620N O e. 1307 NA 60.0 cm, uniform, 50.0 Nshelf is supported horizontally by twov verticalwires attached to the slopingc ceiling(Fig. ). A very small 25.0 N tool is placed on the shelf midway between the points where the wires are attached to it. Find the tension in each wire. Begin by making a free-body diagram of the shelf.