Published by:
CGP EDU Academic Team
Published on: September 12, 2026
Two conductors have capacitance even if they did not have equal and opposite charge.
Text Solution
Verified by ExpertsThe correct answer is:
A
Step 1: Understand the principle of capacitance. Capacitance is defined as the ability of a system to store charge per unit voltage. It is determined by the physical characteristics of the conductors and their arrangement, not only by the presence of equal and opposite charges.
Step 2: Recall that capacitance (C) is given by the formula:
$$C = \frac{Q}{V}$$ where Q is the charge stored on one conductor and V is the potential difference between the conductors.
Step 3: Recognize that even if the two conductors are not charged to equal and opposite values, capacitance can still exist. This is because the capacitance is a geometric property based on their shapes and distances apart, and it can influence how potential difference develops between them.
Step 4: Conclude that as long as the conductors can influence an electric field, they will possess a capacitance value, regardless of how they are charged.
Therefore, the statement in question is true.
Step 2: Recall that capacitance (C) is given by the formula:
$$C = \frac{Q}{V}$$ where Q is the charge stored on one conductor and V is the potential difference between the conductors.
Step 3: Recognize that even if the two conductors are not charged to equal and opposite values, capacitance can still exist. This is because the capacitance is a geometric property based on their shapes and distances apart, and it can influence how potential difference develops between them.
Step 4: Conclude that as long as the conductors can influence an electric field, they will possess a capacitance value, regardless of how they are charged.
Therefore, the statement in question is true.
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