Determine the state of stress at point A on the cross section of the pipe assembly at section a-a. Take F₁ = 1520 N, F₂ = 1100 N. (Figure 1) Express your answer to three significant figures and include the appropriate units. Enter negative value in the case of compression and positive in the case of tension.

Elements Of Electromagnetics
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### Determining the State of Stress at a Specific Point

#### Problem Statement:
Determine the state of stress at point \( A \) on the cross section of the pipe assembly at section \( a - a \). The applied forces are \( F_1 = 1520 \, \text{N} \) and \( F_2 = 1100 \, \text{N} \).

#### Figure Description:
The figure depicts a pipe assembly with two perpendicular forces applied. The configuration includes:

- A pipe standing vertically mounted on a base.
- A force \( F_1 \) applied horizontally to the right at the end of a 400 mm arm extending from the pipe.
- A force \( F_2 \) applied horizontally towards the pipe at the end of a 200 mm arm extending from the vertical pipe.
- The cross-sectional area where stress measurements are to be taken is labeled \( A \), and a section view \( a - a \) is illustrated.

![Figure](figure_image_url)

#### Part A: Calculate Normal Stress (\( \sigma_A \))
- **Given:**
  \[
  F_1 = 1520 \, \text{N}, \quad F_2 = 1100 \, \text{N}
  \]
- **Formula:**
  Determine the normal stress using the appropriate stress formulas.

*Express your answer to three significant figures and include the appropriate units. Enter negative value in the case of compression and positive in the case of tension.*

**Answer Input:**
\[
\sigma_A = \boxed{49.6 \, \text{MPa}}
\]

*Submission Status:*
- The given answer is marked incorrect with the feedback, "Try Again; 7 attempts remaining."

#### Part B: Calculate Shear Stress (\( \tau_{xy} \) at \( A \))
- **Task:** Find \( \tau_{xy} \) at point \( A \).

*Express your answer to three significant figures and include the appropriate units.*

**Answer Input:**
\[
(\tau_{xy})_A = \boxed{\text{Value} \, \text{Units}}
\]
Transcribed Image Text:### Determining the State of Stress at a Specific Point #### Problem Statement: Determine the state of stress at point \( A \) on the cross section of the pipe assembly at section \( a - a \). The applied forces are \( F_1 = 1520 \, \text{N} \) and \( F_2 = 1100 \, \text{N} \). #### Figure Description: The figure depicts a pipe assembly with two perpendicular forces applied. The configuration includes: - A pipe standing vertically mounted on a base. - A force \( F_1 \) applied horizontally to the right at the end of a 400 mm arm extending from the pipe. - A force \( F_2 \) applied horizontally towards the pipe at the end of a 200 mm arm extending from the vertical pipe. - The cross-sectional area where stress measurements are to be taken is labeled \( A \), and a section view \( a - a \) is illustrated. ![Figure](figure_image_url) #### Part A: Calculate Normal Stress (\( \sigma_A \)) - **Given:** \[ F_1 = 1520 \, \text{N}, \quad F_2 = 1100 \, \text{N} \] - **Formula:** Determine the normal stress using the appropriate stress formulas. *Express your answer to three significant figures and include the appropriate units. Enter negative value in the case of compression and positive in the case of tension.* **Answer Input:** \[ \sigma_A = \boxed{49.6 \, \text{MPa}} \] *Submission Status:* - The given answer is marked incorrect with the feedback, "Try Again; 7 attempts remaining." #### Part B: Calculate Shear Stress (\( \tau_{xy} \) at \( A \)) - **Task:** Find \( \tau_{xy} \) at point \( A \). *Express your answer to three significant figures and include the appropriate units.* **Answer Input:** \[ (\tau_{xy})_A = \boxed{\text{Value} \, \text{Units}} \]
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