The circuit in the figure consists of switch S, a 4.60 V ideal battery, a 25.0 MN resistor, and an airfilled capacitor. The capacitor has parallel circular plates of radius 5.30 cm, separated by 4.00 mm. At time t = 0, switch S is closed to begin charging the capacitor. The electric field between the plates is uniform. At t = 260 us, what is the magnitude of the magnetic field within the capacitor, at radial distance 2.50 cm? C S R A Units Number 0.000000000000384

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**Chapter 32, Problem 018 GO**

**Your answer is partially correct. Try again.**

The circuit in the figure consists of switch \( S \), a 4.60 V ideal battery, a 25.0 MΩ resistor, and an air-filled capacitor. The capacitor has parallel circular plates of radius 5.30 cm, separated by 4.00 mm. At time \( t = 0 \), switch \( S \) is closed to begin charging the capacitor. The electric field between the plates is uniform. At \( t = 260 \text{ μs} \), what is the magnitude of the magnetic field within the capacitor, at a radial distance 2.50 cm?

**[Diagram of the Circuit]**

      ----C----
     |                |
  S                R
     |                |
    E . . . . . . . . 

- **E** represents a 4.60 V ideal battery.
- **S** is a switch.
- **R** is a 25.0 MΩ resistor.
- **C** is the air-filled capacitor.

**Answer Box:**

Number: \[ \] x 10^-12

- The provided input is **0.000000000000384**.
- The correct units must be specified.

(Note: The tolerance is ±5%)

---

This problem involves understanding the behavior of an RC (Resistor-Capacitor) circuit and applies the principles of electromagnetism to determine the magnetic field within the capacitor.
Transcribed Image Text:**Chapter 32, Problem 018 GO** **Your answer is partially correct. Try again.** The circuit in the figure consists of switch \( S \), a 4.60 V ideal battery, a 25.0 MΩ resistor, and an air-filled capacitor. The capacitor has parallel circular plates of radius 5.30 cm, separated by 4.00 mm. At time \( t = 0 \), switch \( S \) is closed to begin charging the capacitor. The electric field between the plates is uniform. At \( t = 260 \text{ μs} \), what is the magnitude of the magnetic field within the capacitor, at a radial distance 2.50 cm? **[Diagram of the Circuit]** ----C---- | | S R | | E . . . . . . . . - **E** represents a 4.60 V ideal battery. - **S** is a switch. - **R** is a 25.0 MΩ resistor. - **C** is the air-filled capacitor. **Answer Box:** Number: \[ \] x 10^-12 - The provided input is **0.000000000000384**. - The correct units must be specified. (Note: The tolerance is ±5%) --- This problem involves understanding the behavior of an RC (Resistor-Capacitor) circuit and applies the principles of electromagnetism to determine the magnetic field within the capacitor.
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