Required information NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. The components of a frame are shown. Given 0 = 0°. 12 in. -4 in.- 2 in. 8 in. lb ← lb ↑ 4 in. lb ↓ lb ↑ B C 6 in. P Determine the components of all forces acting on member ABCD. Take P = 90 lb. The components of all forces acting on member ABCD when 0 = 0° are A = lb → Bx= By= D= C= F
Required information NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. The components of a frame are shown. Given 0 = 0°. 12 in. -4 in.- 2 in. 8 in. lb ← lb ↑ 4 in. lb ↓ lb ↑ B C 6 in. P Determine the components of all forces acting on member ABCD. Take P = 90 lb. The components of all forces acting on member ABCD when 0 = 0° are A = lb → Bx= By= D= C= F
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![### Required Information
**Note:** This is a multi-part question. Once an answer is submitted, you will be unable to return to this part.
The components of a frame are shown. Given \( \theta = 0^\circ \).
#### Diagram Explanation:
The diagram shows a frame structure with several members labeled A, B, C, D, E, F, and J. Below are the key features:
- There is a vertical wall on the left side where member A is attached with a pin connection.
- The frame members are dimensioned as follows:
- The distance from the wall to \( B \) is 2 inches.
- The horizontal distance from \( B \) to \( C \) is 4 inches.
- The distance from \( C \) to \( D \) is 12 inches.
- The horizontal distance from \( D \) to \( E \) is 4 inches.
- The vertical distance from \( A \) to the line passing through \( C \) is 8 inches.
- The horizontal distance from \( F \) to \( D \) is 6 inches.
- A force \( P \) is applied at point \( F \) directed downwards to the right.
### Problem Statement
Determine the components of all forces acting on member \( ABCD \). Take \( P = 90 \) lb.
The components of all forces acting on member \( ABCD \) when \( \theta = 0^\circ \) are
- \( A = \) [ ] lb →
- \( B_X = \) [ ] lb ←
- \( B_Y = \) [ ] lb ↑
- \( D = \) [ ] lb ↓
- \( C = \) [ ] lb ↑](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb2d55ce9-e54a-48b2-8091-c283f75d0ef0%2F5b86c2d7-6547-47b8-a954-e43d3f00f047%2F9zu0ijr_processed.png&w=3840&q=75)
Transcribed Image Text:### Required Information
**Note:** This is a multi-part question. Once an answer is submitted, you will be unable to return to this part.
The components of a frame are shown. Given \( \theta = 0^\circ \).
#### Diagram Explanation:
The diagram shows a frame structure with several members labeled A, B, C, D, E, F, and J. Below are the key features:
- There is a vertical wall on the left side where member A is attached with a pin connection.
- The frame members are dimensioned as follows:
- The distance from the wall to \( B \) is 2 inches.
- The horizontal distance from \( B \) to \( C \) is 4 inches.
- The distance from \( C \) to \( D \) is 12 inches.
- The horizontal distance from \( D \) to \( E \) is 4 inches.
- The vertical distance from \( A \) to the line passing through \( C \) is 8 inches.
- The horizontal distance from \( F \) to \( D \) is 6 inches.
- A force \( P \) is applied at point \( F \) directed downwards to the right.
### Problem Statement
Determine the components of all forces acting on member \( ABCD \). Take \( P = 90 \) lb.
The components of all forces acting on member \( ABCD \) when \( \theta = 0^\circ \) are
- \( A = \) [ ] lb →
- \( B_X = \) [ ] lb ←
- \( B_Y = \) [ ] lb ↑
- \( D = \) [ ] lb ↓
- \( C = \) [ ] lb ↑
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