Draw the FBD
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question
Draw the FBD
All distributed loads should be simplified to their equivalent loads
Draw the FBD where the system is the bar

Transcribed Image Text:The diagram depicts a beam inclined at an angle, subject to a uniformly distributed load. Here's a detailed description:
### Diagram Description
1. **Inclined Beam:**
- The beam is positioned on an incline, sloping downwards from left to right.
- It is pinned at two supports, labeled A and B.
2. **Supports:**
- Support A is located 1 meter from the left end of the beam.
- Support B is placed 3 meters from the right end of the beam, making it 4 meters from the left end.
3. **Beam Dimensions:**
- The total length of the beam is 4 meters.
- There is a vertical separation of 3 meters between the top and bottom of the beam due to the incline.
4. **Distributed Load:**
- The beam is subject to a uniformly distributed load of 800 N/m.
- This load acts vertically downwards along the length of the beam.
5. **Load Distribution:**
- The arrows on the diagram represent the direction and uniform distribution of the load across the beam.
This setup is often used to analyze static equilibrium in mechanical systems, where the reactions at the supports and the internal forces within the beam are determined based on the applied loads.
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