A 3.70 MQ resistor and a 1.40 µF capacitor are connected in series with an ideal battery of emf ɛ = 6.00 V. At 2.29 s after the connection is made, what is the rate at which (a) the charge of the capacitor is increasing, (b) energy is being stored in the capacitor, (c) thermal energy is appearing in the resistor, and (d) energy is being delivered by the battery?

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Chapter1: Units, Trigonometry. And Vectors
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**Question 23 of 32**

_A 3.70 MΩ resistor and a 1.40 μF capacitor are connected in series with an ideal battery of emf ε = 6.00 V. At 2.29 s after the connection is made, what is the rate at which_ (a) _the charge of the capacitor is increasing,_ (b) _energy is being stored in the capacitor,_ (c) _thermal energy is appearing in the resistor, and_ (d) _energy is being delivered by the battery?_

(a) **Number:** 1.04  
   **Units:** (Options: kg·m/s or N·s)

(b) **Number:** 3.21  
   **Units:** (Options: m/s²)

(c) **Number:** 6.00  
   **Units:** (Options: N/m² or Pa)

(d) **Number:** 7.21  
   **Units:** (Options: J)

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- **eTextbook and Media**
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Transcribed Image Text:**Question 23 of 32** _A 3.70 MΩ resistor and a 1.40 μF capacitor are connected in series with an ideal battery of emf ε = 6.00 V. At 2.29 s after the connection is made, what is the rate at which_ (a) _the charge of the capacitor is increasing,_ (b) _energy is being stored in the capacitor,_ (c) _thermal energy is appearing in the resistor, and_ (d) _energy is being delivered by the battery?_ (a) **Number:** 1.04 **Units:** (Options: kg·m/s or N·s) (b) **Number:** 3.21 **Units:** (Options: m/s²) (c) **Number:** 6.00 **Units:** (Options: N/m² or Pa) (d) **Number:** 7.21 **Units:** (Options: J) Additional Resources: - **eTextbook and Media** - **Hint** - **GO Tutorial**
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