हिंदी

In the Following Arrangement of Capacitors, the Energy Stored in the 6 µF Capacitor is E. Find the Value of the Following : (I) Energy Stored in 12 µF Capacitor. (Ii) Energy Stored in 3 µF Capacitor. - Physics

Advertisements
Advertisements

प्रश्न

In the following arrangement of capacitors, the energy stored in the 6 µF capacitor is E. Find the value of the following :
(i) Energy stored in 12 µF capacitor.
(ii) Energy stored in 3 µF capacitor.
(iii) Total energy drawn from the battery.

उत्तर

(i) Given that energy of the 6 µF capacitor is E.
Let V be the potential difference along the capacitor of capacitance 6 µF.

\[\text { Since } \frac{1}{2}C V^2 = E\]

\[ \therefore \frac{1}{2} \times 6 \times {10}^{- 6} \times V^2 = E\]

\[ \Rightarrow V^2 = \frac{E}{3} \times {10}^6 . . . (1)\]

Since potential is same for parallel connection, the potetial through 12 µF capacitor is also V. Hence, energy of 12 µF capacitor is

\[E_{12} = \frac{1}{2} \times 12 \times {10}^{- 6} \times V^2 = \frac{1}{2} \times 12 \times {10}^{- 6} \times \frac{E}{3} \times {10}^6 = 2E\]

(ii) Since charge remains constant in series, the charge on 6 µF and 12 µF capacitors combined will be equal to the charge on 3 µF capacitor. Using the formula, Q = CV, we can write

\[(6 + 12) \times {10}^{- 6} \times V = 3 \times {10}^{- 6} \times V'\]

\[\text { Using  (1) and squaring both sides, we get }\]

\[V '^2 = 12E \times {10}^6 \]

\[ \therefore E_3 = \frac{1}{2} \times 3 \times {10}^{- 6} \times 12E \times {10}^6 = 18E\]

(iii) Total energy drawn from battery is 

\[E_{total} = E + E_{12} + E_3 = E + 2E + 18E = 21E\]
shaalaa.com
  क्या इस प्रश्न या उत्तर में कोई त्रुटि है?
2015-2016 (March) Foreign Set 2

वीडियो ट्यूटोरियलVIEW ALL [1]

संबंधित प्रश्न

Explain what would happen if the capacitor given in previous question a 3 mm thick mica sheet (of dielectric constant = 6) were inserted between the plates,

  1. While the voltage supply remained connected.
  2. After the supply was disconnected.

A 12 pF capacitor is connected to a 50 V battery. How much electrostatic energy is stored in the capacitor?


How many time constants will elapse before the energy stored in the capacitor reaches half of its equilibrium value in a charging RC circuit?


A capacitor with stored energy 4⋅0 J is connected with an identical capacitor with no electric field in between. Find the total energy stored in the two capacitors.


A capacitor of capacitance 100 μF is connected across a battery of emf 6 V through a resistance of 20 kΩ for 4 s. The battery is then replaced by a thick wire. What will be the charge on the capacitor 4 s after the battery is disconnected?


Choose the correct option:

Energy stored in a capacitor and dissipated during charging a capacitor bear a ratio.


A capacitor is a device that stores ____________.


If the p. d. across a capacitor is increased from 10 V to 30 V, then the energy stored with the capacitor ____________.


A capacitor is charged by a battery and energy stored is 'U'. Now the battery is removed and the distance between plates is increased to four times. The energy stored becomes ______.


A 2µF capacitor is charge to 100 volt and then its plate are connected by a conducting wire. The heat produced is:-


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×