Analyze the given cable and determine the maximum tension that will occur in DE 6m D. 20KN 1.5m 30KN 60KN -6m- -3m -4.5m- -4.5m
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- Explain why the member 9 is a zero-force memberA cylinder is supspended by five cables. No cable can sustain more than 100 Ntension. Determine the maximum weight of the cylinder that the cord system can support. Draw allnecessary FBDs.For Fz= 200 lb and all other forces zerodetermine the factor of safety of member B-C halfway between B and C. Steel, Sy = 36ksi
- Engineering Mechanics (Like/Thumbs-up will be given. Write the solutions&FBD legibly. Include negative sign if in Compression, ex. -1,500 or if in Tension, ex. 1,500. Round to the nearest whole number.) I. (Multiple Choice) From the given A-Frame shown above, which statements are true: a. The horizontal reaction at C is equal to 0 b. The vertical reaction at A is upward c. The horizontal reaction at pins B and D are equal in magnitude d. Member BD is a two-force member e. None of the above II. (Compute for the external reactions for all members of the frame shown): > Vertical Reaction at A > Horizontal Reaction at A > Vertical Reaction at E > Vertical Reaction at D > Vertical Reaction at B > Vertical Reaction at C > Horizontal Reaction at C > Horizontal Reaction at B > Horizontal Reaction at DQuestion#1) Explain hooks law and also write down an equation for stiffness of compression spring.The bar ABC is supported by three identical, ideal springs. Note that the springs are always vertical because the collars to which they are attached are free to slide on the horizontal rail. Find the angle at equilibrium if W = kL. Neglect the weight of the bar.
- 1. This arm is attached to a wall on the left. The right end is free hanging. Each section is 1.9m wide and 3.6m high. If the force at the end of the arm is F = 170.0N, what is the force in member 2? Use a positive number if it is in tension and a negative number if it is in compression. 2. This arm is attached to a wall on the left. The right end is free hanging. Each section is 1.2m wide and 3.0m high. If the force at the end of the arm is F = 150.0N, what is the force in member 9? Use a positive number if it is in tension and a negative number if it is in compression.Engineering Mechanics (Like/Thumbs-up will be given. Write the solutions&FBD legibly. Include negative sign if in Compression, ex. -1,500 or if in Tension, ex. 1,500. Round to the nearest whole number.) Compute following: A. Reaction at A (in kips) B. Members GI, FH, FI, EG, DF, DG, CE, BD, & BE.F= 45.59 N What is the loading in DB and CB in Tension or Compression?
- The frictional coefficient has a value of 0.36397, and the normal force is 60kN. Determine the frictional force.A weight of 1000 kg kg is to be suspended. Ropes can be used for that purpose. However, the allowable load for each rope is not more than 220 kg. Which of the following statements includes the minimum number of ropes required for the suspension? a. One rope should be enough. b. Use four ropes c. Use two ropes. d. Use five ropes. e. It cannot be determinedd=1.50m, cable doesnt stretch and length of it between the 2 springs is 1.80m, frictionless system. m is mass of hanging weight and mp is mass of pulley.