Consider a negative point charge moving from point A to point B in a space where the only force that influences its motion is due to electric field in the region. What can be said about the potential energy of the point charge during its motion from A to B? Its electric potential energy decreases O Its electric potential energy remains the same O Its electric potential energy increases

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Chapter1: Units, Trigonometry. And Vectors
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Consider a negative point charge moving from point A to point B in a
space where the only force that influences its motion is due to electric
field in the region. What can be said about the potential energy of the
point charge during its motion from A to B?
O Its electric potential energy decreases
O Its electric potential energy remains the same
Its electric potential energy increases
Transcribed Image Text:Consider a negative point charge moving from point A to point B in a space where the only force that influences its motion is due to electric field in the region. What can be said about the potential energy of the point charge during its motion from A to B? O Its electric potential energy decreases O Its electric potential energy remains the same Its electric potential energy increases
Consider a point charge and an arbitrary field point P in space. The electric
potential due to the point charge at position P varies
O inversely with the distance between the point charge and field point P.
O directly with the distance between the point charge and field point P.
O none of the given choices.
O inversely with the square of the distance between the point charge and field
point P.
O directly with the square of the distance between the point charge and field
point P.
Transcribed Image Text:Consider a point charge and an arbitrary field point P in space. The electric potential due to the point charge at position P varies O inversely with the distance between the point charge and field point P. O directly with the distance between the point charge and field point P. O none of the given choices. O inversely with the square of the distance between the point charge and field point P. O directly with the square of the distance between the point charge and field point P.
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