1250 lb 250 lb/ft 12 ft- MB ---31- с For the beam and loading shown, (a) draw the shear and bending- moment diagrams, (b) determine the magnitude and location of the maximum absolute value of the bending moment.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
Section: Chapter Questions
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**Beam Analysis Problem**

**Diagram Explanation:**
The image shows a beam with two types of loads and supports:

- **Distributed Load:** There is a uniform distributed load of 250 lb/ft acting along a section of the beam.
- **Concentrated Load:** A force of 1250 lb acts vertically upward at point A.
- **Supports and Lengths:** 
  - The beam spans from point A to point C, with point B located 12 ft from A and 3 ft from B to C.

**Task Description:**
1. **Draw Shear and Bending-Moment Diagrams:**
   - Illustrate the shear force and bending moment distributions along the length of the beam.

2. **Determine Maximum Bending Moment:**
   - Calculate the magnitude and specify the location where the maximum absolute value of the bending moment occurs. 

This analysis is crucial for understanding the effects of different loads on structural elements and ensuring their safe design.
Transcribed Image Text:**Beam Analysis Problem** **Diagram Explanation:** The image shows a beam with two types of loads and supports: - **Distributed Load:** There is a uniform distributed load of 250 lb/ft acting along a section of the beam. - **Concentrated Load:** A force of 1250 lb acts vertically upward at point A. - **Supports and Lengths:** - The beam spans from point A to point C, with point B located 12 ft from A and 3 ft from B to C. **Task Description:** 1. **Draw Shear and Bending-Moment Diagrams:** - Illustrate the shear force and bending moment distributions along the length of the beam. 2. **Determine Maximum Bending Moment:** - Calculate the magnitude and specify the location where the maximum absolute value of the bending moment occurs. This analysis is crucial for understanding the effects of different loads on structural elements and ensuring their safe design.
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