Space between the plates of a parallel plate capacitor of plate area and separation of , is filled with uniform dielectric materials with dielectric constants and as shown in figure. Another capacitor of capacitance is connected in parallel with it. The effective capacitance of this combination is _____ .
JEE Physics 2025 Question with Solution
Answer
Correct answer:15
Step-by-step solution
Standard Method
Given: Plate area , plate separation , dielectric constants and , and an additional capacitor .
Find: The effective capacitance of the combination.
The two dielectric-filled parts behave as two capacitors in series. For each part, thickness is .
Using the parallel plate capacitor formula,
for the first dielectric,
Substituting the values,
For the second dielectric,
Substituting the values,
Now combine these two capacitances in series:
Hence,
This series combination is in parallel with another capacitor of , so
Therefore, the effective capacitance is .
Stepwise Calculation
Given: , , , , , and .
Find: Effective capacitance of the complete arrangement.
First calculate half the separation:
Now for the upper dielectric region,
For the lower dielectric region,
Since these two parts are in series,
Therefore,
Now add the parallel capacitor:
Therefore, the final answer is .
Common mistakes
Treating the two dielectric regions as parallel instead of series is incorrect because the dielectric slabs are stacked along the separation direction. Since the electric field passes through one layer and then the other, the equivalent combination must be taken in series.
Using the full separation for each dielectric region is wrong. Each dielectric occupies only half the thickness, so the correct separation for both individual capacitances is .
Forgetting to convert into and into leads to an incorrect capacitance value. Always convert SI units before substitution.
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