Problem 4 For the beam and loading shown, (a) draw the shear and bending moment diagrams, (b) determine the equations of the shear and bending moment curves, (c) determine the maximum absolute value of the shear and bending moment. NB: thecouple on the right tip should be 1.5 kip ft 6 kip-ft 200 lb/ft 15 ft- 1.5 kip B

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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# Problem 4

For the beam and loading shown, (a) draw the shear and bending moment diagrams, (b) determine the equations of the shear and bending moment curves, (c) determine the maximum absolute value of the shear and bending moment.

**NB:** The couple on the right tip should be 1.5 kip ft.

### Diagram Explanation

The diagram shows a simply supported beam with the following details:
- A fixed point at A is on the left end, and a roller support at B is on the right end.
- The total length of the beam is 15 feet.
- There is a uniformly distributed load of 200 lb/ft along the full length of the beam.
- There is a clockwise moment of 6 kip ft applied at point A.
- A counterclockwise force of 1.5 kip is applied at point B.

The task involves analyzing the beam to determine the shear force and bending moment along its length and to find the maximum values of these quantities.
Transcribed Image Text:# Problem 4 For the beam and loading shown, (a) draw the shear and bending moment diagrams, (b) determine the equations of the shear and bending moment curves, (c) determine the maximum absolute value of the shear and bending moment. **NB:** The couple on the right tip should be 1.5 kip ft. ### Diagram Explanation The diagram shows a simply supported beam with the following details: - A fixed point at A is on the left end, and a roller support at B is on the right end. - The total length of the beam is 15 feet. - There is a uniformly distributed load of 200 lb/ft along the full length of the beam. - There is a clockwise moment of 6 kip ft applied at point A. - A counterclockwise force of 1.5 kip is applied at point B. The task involves analyzing the beam to determine the shear force and bending moment along its length and to find the maximum values of these quantities.
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