Consider the system shown with two masses connected by cable and pulley, with mass B supported on a simply supported bea

Business, Finance, Economics, Accounting, Operations Management, Computer Science, Electrical Engineering, Mechanical Engineering, Civil Engineering, Chemical Engineering, Algebra, Precalculus, Statistics and Probabilty, Advanced Math, Physics, Chemistry, Biology, Nursing, Psychology, Certifications, Tests, Prep, and more.
Post Reply
answerhappygod
Site Admin
Posts: 899603
Joined: Mon Aug 02, 2021 8:13 am

Consider the system shown with two masses connected by cable and pulley, with mass B supported on a simply supported bea

Post by answerhappygod »

Consider The System Shown With Two Masses Connected By Cable And Pulley With Mass B Supported On A Simply Supported Bea 1
Consider The System Shown With Two Masses Connected By Cable And Pulley With Mass B Supported On A Simply Supported Bea 1 (68.53 KiB) Viewed 13 times
Consider the system shown with two masses connected by cable and pulley, with mass B supported on a simply supported beam. The masses mA = 34 kg, mB = 10 kg, and between mass B and the surface of the beam there is a coefficient of friction u = 0.17. C is a fixed pulley anchored to the beam. The beam is of negligible weight, considered as a rigid body, its length and the position of the different elements are indicated in the figure. The masses A and B are considered as particles, therefore, the height h is negligible, as is the dimension of the pulleys. Determine for the position shown, where x = 2.4 m: 6 m 2,5 m TITIT Cable a) The cable tension. pulley beam and massimportant note: this exercise contains 4 subitems. Select one: a. 266.1 kgf. b. 22.2 kgf. c. 354.8N d. 177.4 N. and. 88.7N F. 354.8 kgf. g. 22.2N h. 177.4 kgf. i. 266.1 N J. 44.3N k. 88.7 kgf. 1.44.3 kgf.
For the same problem with the same data: mA = 34 kg, mB = 10 kg, coefficient of friction u = 0.17, x = 2.4 m, determine: b) The horizontal reaction Dx of the beam. Select one: a. 72.ON b. 216.0 N. c. 144.0 kgf. d. 18.0 kgf. and. 288.1 kgf. F. 18.ON g. 144.ON h. 288.1N i. 216.0 kgf. J. 36.0 kgf. k. 36.ON 1. 72.0 kgf. For the same problem with the same data: mA = 34 kg, mB = 10 kg, coefficient of friction u = 0.17, x = 2.4 m, determine: c) The vertical reaction Ey of the beam. Select one: a. 132.8 kgf. b. 169.7 N. c. 77.3 kgf. d. 95.8 kgf. and. 68.1 kgf. F. 206.7 N. g. 169.7 kgf. h. 77.3 N i. 132.8N J. 206.7 kgf. k. 68.1N 1. 95.8N
For the same problem with the same data: mA = 34 kg, mB = 10 kg, coefficient of friction u = 0.17, x = 2.4 m, determine: d) What must be the minimum value of coefficient of friction u necessary for the beam to remain in equilibrium if the support at Dis also a roller? Select one: a. 1.70. b. 3.40. c. 8.50. d. 2.55. and. 0.85. F. 6.80. g. 5.10. h. 0.29.
Join a community of subject matter experts. Register for FREE to view solutions, replies, and use search function. Request answer by replying!
Post Reply