Find: The magnitude of the horizontal component of the reac The magnitude of the vertical component of the reactio The magnitude of the horizontal component of the reac The magnitude of the vertical component of the reactic 5. The magnitude of the horizontal component of the fore 6. The magnitude of the vertical component of the force 3. 4. 1. 2.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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**Text for Educational Website**

**Find:**

1. The magnitude of the horizontal component of the reaction force at Support-A is __________ kN.
2. The magnitude of the vertical component of the reaction force at Support-A is __________ kN.
3. The magnitude of the horizontal component of the reaction force at Support-B is __________ kN.
4. The magnitude of the vertical component of the reaction force at Support-B is __________ kN.
5. The magnitude of the horizontal component of the force carried by Pin-C is __________ kN.
6. The magnitude of the vertical component of the force carried by Pin-C is __________ kN.

**Diagram Explanation:**

The diagram depicts a beam supported by a hinge at point A and a pin at point B. The beam is oriented horizontally and is subjected to the following forces:

- A 3 kN vertical force acting downward at point A.
- A uniformly distributed load of 12.5 kN/m extending from the hinge at point A to point B.
- The beam is embedded within a wall at point B, representing a fixed support.

Dimensions along the beam are indicated as follows:
- The distance from the hinge at A to the point where Pin-C is located is 400 mm.
- An additional section of 400 mm extends from Pin-C to the wall at point B.
- The initial section from point A to point C is 200 mm long.

This diagram sets up the scenario for analyzing the reaction forces at various supports and pins along the beam.
Transcribed Image Text:**Text for Educational Website** **Find:** 1. The magnitude of the horizontal component of the reaction force at Support-A is __________ kN. 2. The magnitude of the vertical component of the reaction force at Support-A is __________ kN. 3. The magnitude of the horizontal component of the reaction force at Support-B is __________ kN. 4. The magnitude of the vertical component of the reaction force at Support-B is __________ kN. 5. The magnitude of the horizontal component of the force carried by Pin-C is __________ kN. 6. The magnitude of the vertical component of the force carried by Pin-C is __________ kN. **Diagram Explanation:** The diagram depicts a beam supported by a hinge at point A and a pin at point B. The beam is oriented horizontally and is subjected to the following forces: - A 3 kN vertical force acting downward at point A. - A uniformly distributed load of 12.5 kN/m extending from the hinge at point A to point B. - The beam is embedded within a wall at point B, representing a fixed support. Dimensions along the beam are indicated as follows: - The distance from the hinge at A to the point where Pin-C is located is 400 mm. - An additional section of 400 mm extends from Pin-C to the wall at point B. - The initial section from point A to point C is 200 mm long. This diagram sets up the scenario for analyzing the reaction forces at various supports and pins along the beam.
Expert Solution
Step 1: Draw the free-body diagram for the system.

The section AC -

Mechanical Engineering homework question answer, step 1, image 1

The section BC-

Mechanical Engineering homework question answer, step 1, image 2

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