Physics Q9 – Point mass/charge fields | VCE Units 3 & 4 Practice – StudyPulse
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Physics VCE Units 3 & 4 Practice Question 9 – Point mass/charge fields

Q9 Physics Point mass/charge fields Unit 3 - AOS 2

Question 9

1 mark

A proton is released from rest in a uniform electric field and a uniform gravitational field. Which of the following statements correctly compares the change in potential energy of the proton due to each field as it moves a small distance in the direction of the net force on it?

Your Answer

A

The electric potential energy decreases, and the gravitational potential energy increases.

B

Both the electric and gravitational potential energy decrease.

C

The electric potential energy increases, and the gravitational potential energy decreases.

D

Both the electric and gravitational potential energy increase.

About This Physics Question

This is a free VCE Units 3 & 4 Physics practice question worth 1 mark, testing your understanding of Point mass/charge fields. It falls under How do things move without contact? in Unit 3: How do fields explain motion and electricity?. Submit your answer above to receive instant AI-powered marking and personalised feedback.

Subject
Physics – Victorian Certificate of Education Units 3 & 4
Unit 3
How do fields explain motion and electricity?
Area of Study 2
How do things move without contact?
Key Knowledge
Point mass/charge fields

Unit 3 Overview

In this unit students use Newton’s laws to investigate motion in one and two dimensions. They explore the concept of the field as a model used by physicists to explain observations of motion of objects not in apparent contact. Students compare and contrast three fundamental fields – gravitational, magnetic and electric – and how they relate to one another. They consider the importance of the field to the motion of particles within the field. Students examine the production of electricity and its delivery to homes. They explore fields in relation to the transmission of electricity over large distances and in the design and operation of particle accelerators. A student-designed practical investigation involving the generation of primary data and including one continuous, independent variable related to fields, motion or light is undertaken either in Unit 3 or Unit 4, or across both Units 3 and 4, and is assessed in Unit 4, Outcome 2. The design, analysis and findings of the investigation are presented in a scientific poster format.

How do things move without contact?

In this area of study, students examine the similarities and differences between three fields: gravitational, electric and magnetic. Students explore how positions in fields determine the potential energy of, and the force on, an object. They investigate how concepts related to field models can be applied to construct motors, maintain satellite orbits and to accelerate particles including in a synchrotron.

Key Knowledge Detail

Investigate and compare theoretically and practically gravitational fields and electrical fields about a point mass or charge (positive or negative) with reference to: • the direction of the field • the shape of the field • the use of the inverse square law to determine the magnitude of the field • potential energy changes (qualitative) associated with a point mass or charge moving in the field.

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