Question
In the circuit shown in figure, the final voltage drop across the capacitor is :




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Question 1
A spherical capacitor has an inner sphere of radius 12 cm and an outer sphere of radius 13 cm. The outer sphere is earthed and the inner sphere is given a charge of . The space between the concentric spheres is filled with a liquid of dielectric constant 32.(a) Determine the capacitance of the capacitor.
(b) What is the potential of the inner sphere?
(c) Compare
the capacitance of this capacitor with that of an isolated
sphere of radius 12 cm. Explain why the latter is much smaller.
Question 3
Three capacitors of capacitance are connected in parallel. (a) what is the total capacitance of the combination ? (b) Determine the charge on each capacitor, If the combination is connected to 100V supply.Question 4
A spherical conducting shell of inner radius and outer radius has a charge Q.(a) A charge q is placed at the centre of the shell. What is the surface charge density on the inner and outer surfaces of the shell?
(b) Is the electric field inside a cavity (with no charge) zero, even if the shell is not spherical, but has any irregular shape? Explain.


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Question Text | In the circuit shown in figure, the final voltage drop across the capacitor is : |
Answer Type | Video solution: 1 |
Upvotes | 151 |