1) For the truss shown to the right. Determine: a) the support reactions at E and F, and 2) the force in member CE using method of sections (specify (T) or (C)). (Note: F is a roller and E is a pin.) Ans: Ey = 9 kips (), Ex = 8 kips (E), Fy = 9 kips (↑) FCE =9 kips (T) %3D %3D %3D

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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For the truss shown, determine the following:

1) The support reactions at points E and F.
2) The force in member CE using the method of sections (specify whether it is in Tension (T) or Compression (C)).

Note: F is a roller and E is a pin.

**Answers:**
- \( E_y = 9 \, \text{kips} \) (downward)
- \( E_x = 8 \, \text{kips} \) (to the left)
- \( F_y = 9 \, \text{kips} \) (upward)
- \( F_{CE} = 9 \, \text{kips} \) (Tension)

**Diagram Explanation:**

- The truss is a vertical structure composed of members that form two triangular sections. 
- A force of 4 kips is applied horizontally to the left at points A and C. 
- The horizontal axis (base) of the truss is 9 feet wide.
- Each vertical section of the truss is 6.75 feet tall, spanning from B to D and from D to F.
- The truss is supported at point E by a pin and at point F by a roller.
Transcribed Image Text:For the truss shown, determine the following: 1) The support reactions at points E and F. 2) The force in member CE using the method of sections (specify whether it is in Tension (T) or Compression (C)). Note: F is a roller and E is a pin. **Answers:** - \( E_y = 9 \, \text{kips} \) (downward) - \( E_x = 8 \, \text{kips} \) (to the left) - \( F_y = 9 \, \text{kips} \) (upward) - \( F_{CE} = 9 \, \text{kips} \) (Tension) **Diagram Explanation:** - The truss is a vertical structure composed of members that form two triangular sections. - A force of 4 kips is applied horizontally to the left at points A and C. - The horizontal axis (base) of the truss is 9 feet wide. - Each vertical section of the truss is 6.75 feet tall, spanning from B to D and from D to F. - The truss is supported at point E by a pin and at point F by a roller.
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