Part C Find the direction of the magnetic field at point P2, 28.0 cm to the right of P1. The field is directed down. The field is directed up. The field is directed to the right. The field is directed to the left. The field is zero. Submit Previous Answers

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Chapter1: Units, Trigonometry. And Vectors
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Please answer part D and circle answer.

**Item 6**

Two long, straight, parallel wires are 10.0 cm apart and carry 4.80 A currents in the same direction (see Figure 1).

---

**Part A**

Find the direction of the magnetic field at point \( P_1 \), midway between the wires.

- The field is directed down.
- The field is directed up.
- **The field is zero.** (Correct)
- The field is directed to the left.
- The field is directed to the right.

*Submission Status: Correct*

---

**Part B**

Find the magnitude of the magnetic field at point \( P_1 \), midway between the wires.

Express your answer in teslas.

\[ B_1 = 0 \, \text{T} \]

*Submission Status: Correct*

---

**Figure Explanation**

The figure shows two parallel wires, each carrying a current \( I \). They are 10.0 cm apart. An arrow indicates the direction of the current in both wires, which is the same. Point \( P_1 \) is located exactly midway between the two wires.
Transcribed Image Text:**Item 6** Two long, straight, parallel wires are 10.0 cm apart and carry 4.80 A currents in the same direction (see Figure 1). --- **Part A** Find the direction of the magnetic field at point \( P_1 \), midway between the wires. - The field is directed down. - The field is directed up. - **The field is zero.** (Correct) - The field is directed to the left. - The field is directed to the right. *Submission Status: Correct* --- **Part B** Find the magnitude of the magnetic field at point \( P_1 \), midway between the wires. Express your answer in teslas. \[ B_1 = 0 \, \text{T} \] *Submission Status: Correct* --- **Figure Explanation** The figure shows two parallel wires, each carrying a current \( I \). They are 10.0 cm apart. An arrow indicates the direction of the current in both wires, which is the same. Point \( P_1 \) is located exactly midway between the two wires.
**Part C**

Find the direction of the magnetic field at point \( P_2 \), 28.0 cm to the right of \( P_1 \).

- The field is directed down.
- **The field is directed up.**
- The field is directed to the right.
- The field is directed to the left.
- The field is zero.

*Selected Answer: The field is directed up.*

**Status: Correct**

---

**Part D**

Find the magnitude of the magnetic field at point \( P_2 \), 28.0 cm to the right of \( P_1 \).

*Express your answer in teslas.*

\[ B_2 = \]

Input: \( 1.584 \cdot 10^{-6} \) T

*Status: Incorrect; Try Again; 3 attempts remaining*
Transcribed Image Text:**Part C** Find the direction of the magnetic field at point \( P_2 \), 28.0 cm to the right of \( P_1 \). - The field is directed down. - **The field is directed up.** - The field is directed to the right. - The field is directed to the left. - The field is zero. *Selected Answer: The field is directed up.* **Status: Correct** --- **Part D** Find the magnitude of the magnetic field at point \( P_2 \), 28.0 cm to the right of \( P_1 \). *Express your answer in teslas.* \[ B_2 = \] Input: \( 1.584 \cdot 10^{-6} \) T *Status: Incorrect; Try Again; 3 attempts remaining*
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