A 90 kN 1.8 m | B 54 kN 2.4 m C 3 m 22 kN/m D 2.4 m E

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Shear diagram and equations V=V(x) for the system shown. 

The image depicts a simply supported beam with three points of interest labeled as A, B, and C, and one support at D. The beam is subjected to various loads:

1. **Point Loads:**
   - A 90 kN point load is applied vertically downward at point B, which is 1.8 meters from the left end A.
   - A 54 kN point load is applied vertically downward at point C, 2.4 meters to the right of point B.

2. **Distributed Load:**
   - A distributed load of 22 kN/m is applied from point D to point E, covering a length of 2.4 meters.

3. **Support:**
   - The beam is supported at two locations: the left end at A and at D, 3 meters from C.

**Distances:**
- A to B: 1.8 m
- B to C: 2.4 m
- C to D: 3.0 m
- D to E: 2.4 m

The loads generate reactions and bending moments along the beam, which need to be analyzed for structural integrity and design considerations.
Transcribed Image Text:The image depicts a simply supported beam with three points of interest labeled as A, B, and C, and one support at D. The beam is subjected to various loads: 1. **Point Loads:** - A 90 kN point load is applied vertically downward at point B, which is 1.8 meters from the left end A. - A 54 kN point load is applied vertically downward at point C, 2.4 meters to the right of point B. 2. **Distributed Load:** - A distributed load of 22 kN/m is applied from point D to point E, covering a length of 2.4 meters. 3. **Support:** - The beam is supported at two locations: the left end at A and at D, 3 meters from C. **Distances:** - A to B: 1.8 m - B to C: 2.4 m - C to D: 3.0 m - D to E: 2.4 m The loads generate reactions and bending moments along the beam, which need to be analyzed for structural integrity and design considerations.
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