5.00 μF capacitor that is initially uncharged is nnected in series with a 4600 resistor and a V emf source with negligible internal sistance. Part D Just after the circuit is completed, what is the current through the resistor? Express your answer in amperes. —| ΑΣΦ IR = Submit Part E Vc, VR = Submit A long time after the circuit is completed (after many time constants), what are the voltage drop across the capacitor and across the resistor? Express your answers in volts separated by a comma. Part F Request Answer Q= 17| ΑΣΦ Request Answer ? ΠΙΑΣΦ A A long time after the circuit is completed (after many time constants), what is the charge on the capacitor? Express your answer in coulombs. ? ? V C

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**Part G**

A long time after the circuit is completed (after many time constants), what is the current through the resistor?

Express your answer in amperes.

\[ I_R = \] [Input box for numerical value] A

Buttons available for input assistance:

- A button for inserting mathematical symbols and equations
- A formatting button (likely for resizing or aligning text)
- Undo, redo, and reset buttons
- A help button indicated by a question mark

Below the input box:

- A "Submit" button
- A "Request Answer" link

Note: No graphs or diagrams are present.
Transcribed Image Text:**Part G** A long time after the circuit is completed (after many time constants), what is the current through the resistor? Express your answer in amperes. \[ I_R = \] [Input box for numerical value] A Buttons available for input assistance: - A button for inserting mathematical symbols and equations - A formatting button (likely for resizing or aligning text) - Undo, redo, and reset buttons - A help button indicated by a question mark Below the input box: - A "Submit" button - A "Request Answer" link Note: No graphs or diagrams are present.
**Initial Circuit Description:**

A 6.00 μF capacitor that is initially uncharged is connected in series with a 4600 Ω resistor and a 507 V emf source with negligible internal resistance.

---

**Part D**

*Question:* Just after the circuit is completed, what is the current through the resistor?

*Express your answer in amperes.*
- Input box for entering the current (\( I_R \)) in amperes.
- **Hint/Help:** Submission options include "Submit" and "Request Answer."

---

**Part E**

*Question:* A long time after the circuit is completed (after many time constants), what are the voltage drop across the capacitor and across the resistor?

*Express your answers in volts separated by a comma.*
- Input box for entering the voltage across the capacitor (\( V_C \)) and the resistor (\( V_R \)).
- **Hint/Help:** Submission options include "Submit" and "Request Answer."

---

**Part F**

*Question:* A long time after the circuit is completed (after many time constants), what is the charge on the capacitor?

*Express your answer in coulombs.*
- Input box for entering the charge (\( Q \)) on the capacitor in coulombs.
- **Hint/Help:** Submission options include "Submit" and "Request Answer."
Transcribed Image Text:**Initial Circuit Description:** A 6.00 μF capacitor that is initially uncharged is connected in series with a 4600 Ω resistor and a 507 V emf source with negligible internal resistance. --- **Part D** *Question:* Just after the circuit is completed, what is the current through the resistor? *Express your answer in amperes.* - Input box for entering the current (\( I_R \)) in amperes. - **Hint/Help:** Submission options include "Submit" and "Request Answer." --- **Part E** *Question:* A long time after the circuit is completed (after many time constants), what are the voltage drop across the capacitor and across the resistor? *Express your answers in volts separated by a comma.* - Input box for entering the voltage across the capacitor (\( V_C \)) and the resistor (\( V_R \)). - **Hint/Help:** Submission options include "Submit" and "Request Answer." --- **Part F** *Question:* A long time after the circuit is completed (after many time constants), what is the charge on the capacitor? *Express your answer in coulombs.* - Input box for entering the charge (\( Q \)) on the capacitor in coulombs. - **Hint/Help:** Submission options include "Submit" and "Request Answer."
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