A 500-kg container is supported by three cables BA, CA, & DA as shown. Determine the tension in each cable. 0.365 m D y 0.45 m 0.52 m B 0.35 m x 0.65 m
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- The man attempts to pull down the tree using the cable and small pulley arrangement shown in (Eigure 1) The tension in AB is 55 lb and y=39° Figure D 20° e <1 of 1 Part A Determine the tension in cable CAD Express your answer to three significant figures and include the appropriate units. T= Part B μÀ Submit Request Answer Value Submit Determine the angle which the cablemakes at the pulley Express your answer in degrees to three significant figures. VA2 Ivec Request Answer Units P Pearson ? ?A kettlebell with a mass of 10 kg is suspended by three cables as shown in the figure and parameter table. Find the tension in the 3 cables. L4 A cc 080 BY NO SA 2021 Cathy Zupke B parameter value 4 1 2 8 10 L₁ L₂ L3 L4 M The tension in cable AB is The tension in cable BC is The tension in cable BD is M C units |εεεε m m m m kg Z N N IN yFor the cable shown in Figure A, determine the tension in segment CD, and the values of hC and hE if hD is 12m. The vertical distance between A and B is 6m. What is the length of hC? (Express your answer in meters) What is the length of hE? (Express your answer in meters) What is the tensile force in segment CD? 1 15e 15a 15 B A D 200 N 600 N 400 N
- igure 1), F = {500i - 300j + 350k} N. Determine the magnitude of the projection of the force F acting along the cable BA. Express your answer to three significant figures and include the appropriate units. 2m Fon BA= Submit B -1m S Value Request Answer 1m μА D 6 m 3m Units ?Example 2: A suspended cable is hung between two points, of the same level, and is -> T.cos e Subiected to a horizontal uniformly distributed load, attached to the cable by vertical hangars, as shown in the figure. What is the shape of the cable at equilibrium? and how does the tension vary along the cable? (Neglect self weight of the cable). L. - 32 - 0O000000000OCDA cable PQ of length 20 m is supported at two ends at same level as shown in the figure. The horizontal distance between the supports is 10 m. A point load of 100 kN is applied at point R which divides it into two equal parts. 6s (20 m tron | P R ME L sioni 6 100 kN noltosen to
- A cable PQ of length 20 m is supported at two ends at same level as shown in the figure. The horizontal distance between the supports is 10 m. A point load of 100 kN is applied at point R which divides it into two equal parts. 6s (20 m tron | P R ME L eint A sioni 6 100 kN noltosen toThe 540-1b cylinder at A is hoisted using the motor and the pulley system shown. The speed of point B on the cable is increased at a constant rate from zero to vB = 30 ft/s in t = 8 s. (Figure 1) Figure 1₁ A B 1 of 1 Part A Determine the tension in the cable at B to cause the motion. Express your answer to three significant figures and include the appropriate units. T = Value Submit μA Provide Feedback Request Answer Units ?A water supply pipeline crossing a wide river is to be supported by a flexible wire cable with an allowable tensile load of 40000 kg. The pipe weighs 100 kg per meter and has a total length of 100m. Determine the tension the Lowest point of the cable if the sag is to be 3.5m. a.) None of the above b.) 36600.368 kg c.) 36060.836 kg d.) 36600.863 kg e.) 36006. 368 kg
- 10:YA 10 idana11.iauec.ac.ir O Lolw mpus VA D ANA For the frame shown in the figure, The beam has a plastic moment of 750 kN.m and the columns have a plastic moment of 375 kN.m. For the mechanism by which plastic hinges are formed at points A and D, find the collapse load (P). 4P 2.4m 2.4m E C D 1.2m 0.6m P F 0.6m 2P В 1.2m A IIThe bar BC exerts a force on the cables at B that is directed along the line from C to B. (Figure 1) The mass of the suspended load is 190 kg. Suppose that = 20° and >= 20°. Figure 1 of 1 Part A What is the tension in cable AB? Express your answer three significant figures and include the appropriate units. TAB= Submit 123+ Provide Feedback Value 6 Request Answer ( 3 ? Units3. The roof truss is subjected to the loadings shown. Determine the force in each member and indicate if the members are in tension or compression. Approximate each joint as a pin. 200 N C O 00 300 N 300 N 1.5 т D 0000 B. 4 m F 3 т E H 3 m 3 т G O o o O 00 3 m A 7o 00 Paint X lite 150 N