Elements Of Electromagnetics
7th Edition
ISBN: 9780190698614
Author: Sadiku, Matthew N. O.
Publisher: Oxford University Press
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- 3. A structure frame is shown in Figure 3 experienced multiple applied forces at joints D and B. The frame is simply supported at A and C. Determine the force in each member of the truss and state if the members are in tension or compression. 300 N 400 N D 2m 250 N 2m B 200 Narrow_forward40 kN -2 m -2 m- D A 30° C The truss above is supported by a roller at point A and a pin at point C. Which of the following is closest to the force in member BC? O a) 11.5 kN (T) O b) 34.6 kN (T) c) 30.0 kN (T) d) 69.3 kN (T)arrow_forward20 lb/ft B H 8 ft G -8 ft 8 ft 8 ft * D F -8 ft- E A) Find equivalent forces at the joints for the distributed load. B) Compute the reactions at A and E. C) Compute the forces in the 13 members of the Howe truss.arrow_forward
- 4) Take that W₂= 3.8 kN/m intensity for the distributed load below. The fixed support at O can have support reactions with a vertical and horizontal force and a moment. B) Answers: A) Show your free body diagram with the resultant loads, their locations and indicate the support reactions. Mo = Ox= -3 m- Oy = Wo 1.5 m- What are the support reactions at the fixed support at O?arrow_forwarda) Draw the FBD of the entire truss and use this diagram to determine the reaction forces at the supports. Note the truss is supported by a roller at E Using the Method of Sections, determine the forces in member a) BC (5 b) HC c) HG Show the FBD of the truss after the cut is performed. State whether the members are in tension or compression. 5m Figure 2 B 4 m H 30 kN 5 m G 60 kN 5 m D F 30 kN 5 m Earrow_forwardA) Draw a free body diagram of the bar CD. Assume appropriate reactions at C and D in order to keep the problem solvable. The block has a mass of 5 Mg. B) Compute the tension in the cable ADB, ignore the radius of the pulley. C) Compute the reactions at C. 3 m A N B 4 m 4 m Darrow_forward
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