The copper sheet shown below is partially in a magnetic field. As it is pulled to the right, it experiences an opposing force to the left due to the magnetic field of the induced currents that flow in the copper sheet as it moves. What happens if, as the copper sheet is pulled to the right, it is also tilted in a clockwise direction (as viewed from the right)? B x x x x x The copper sheet experiences a clockwise torque The copper sheet begins to undergo a rocking oscillatory motion The copper sheet experiences no torque other than what was used to tilt it in the first place O The copper sheet experiences a counterclockise torque

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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**Description:**

The image depicts a copper sheet partially placed in a magnetic field. The magnetic field, denoted by the symbol \( \mathbf{B} \), is represented with blue "X" marks indicating a field going into the page. The copper sheet is shown in an orange color and is subjected to a force \( \mathbf{F} \) pulling it to the right.

**Concept Explanation:**

As the copper sheet moves to the right within the magnetic field, it experiences an induced electromagnetic force due to the currents generated by its motion within the field. This force opposes the movement to the right, creating a force to the left. 

The problem considers an additional scenario where the sheet is also tilted in a clockwise direction while being pulled to the right. The question posed is about the resulting motion or torque on the copper sheet.

**Options Given:**

1. The copper sheet experiences a clockwise torque.
2. The copper sheet begins to undergo a rocking oscillatory motion.
3. The copper sheet experiences no torque other than what was used to tilt it in the first place.
4. The copper sheet experiences a counterclockwise torque.

**Educational Focus:**

This problem explores the principles of electromagnetism, specifically Lenz's Law, which states that the direction of induced current is such that it opposes the change in magnetic flux that produced it. Students are asked to apply this law to determine the resulting torque on the copper sheet when additional rotational motion (tilting) is introduced.
Transcribed Image Text:**Description:** The image depicts a copper sheet partially placed in a magnetic field. The magnetic field, denoted by the symbol \( \mathbf{B} \), is represented with blue "X" marks indicating a field going into the page. The copper sheet is shown in an orange color and is subjected to a force \( \mathbf{F} \) pulling it to the right. **Concept Explanation:** As the copper sheet moves to the right within the magnetic field, it experiences an induced electromagnetic force due to the currents generated by its motion within the field. This force opposes the movement to the right, creating a force to the left. The problem considers an additional scenario where the sheet is also tilted in a clockwise direction while being pulled to the right. The question posed is about the resulting motion or torque on the copper sheet. **Options Given:** 1. The copper sheet experiences a clockwise torque. 2. The copper sheet begins to undergo a rocking oscillatory motion. 3. The copper sheet experiences no torque other than what was used to tilt it in the first place. 4. The copper sheet experiences a counterclockwise torque. **Educational Focus:** This problem explores the principles of electromagnetism, specifically Lenz's Law, which states that the direction of induced current is such that it opposes the change in magnetic flux that produced it. Students are asked to apply this law to determine the resulting torque on the copper sheet when additional rotational motion (tilting) is introduced.
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