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Calculate potential energy possessed by a positive charge of 19 nC placed at a point where electric potential is measured to be 1.6 V?
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Calculate potential energy possessed by a positive charge of 19 nC pla...


Calculating Potential Energy of a Positive Charge

In order to calculate the potential energy possessed by a positive charge placed at a point where electric potential is known, we can use the formula:

\[ \text{Potential Energy} = q \times V \]

Where:
- \( q \) is the charge of the object (in coulombs)
- \( V \) is the electric potential at the point (in volts)

Given Data

- Charge, \( q = 19 \text{ nC} = 19 \times 10^{-9} \text{ C} \)
- Electric Potential, \( V = 1.6 \text{ V} \)

Calculation

Substitute the given values into the formula:

\[ \text{Potential Energy} = 19 \times 10^{-9} \times 1.6 \]

\[ \text{Potential Energy} = 30.4 \times 10^{-9} \text{ joules} \]

Final Answer

Therefore, the potential energy possessed by a positive charge of 19 nC placed at a point where the electric potential is measured to be 1.6 V is 30.4 nanojoules.
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Calculate potential energy possessed by a positive charge of 19 nC placed at a point where electric potential is measured to be 1.6 V?
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