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The image shows the right-hand rule being used for a
current-carrying wire.
Which statement describes what the hand shows?
When the current flows down the wire, the magnetic
field flows out on the left side of the wire and in on the
right side of the wire
When the current flows up the wire, the magnetic field
flows out on the left side of the wire and in on the right
side of the wire.
When the current flows down the wire, the magnetic
field flows in on the left side of the wire and out on the
right side of the wire.
When the current flows up the wire, the magnetic field
flows in on the left side of the wire and out on the right
side of the wire
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Respuesta :

Answer:

When the current flows up the wire, the magnetic field

flows in on the left side of the wire and out on the right

side of the wire

Explanation:

What you expect as the answer is not clear as diagram is not given.

You can use right hand grip rule to find the answer.

Simply point your thumb in right hand and curl other fingers to the palm.

The sense of the fingers curled on the palm shows the way magnetic field behave in the current carrying conductor.

When the current flows up the wire, the magnetic field flows in on the left side of the wire and out on the right side of the wire

What is the Right-hand Rule?

According to Maxwell's right-hand rule if you imaginatively hold a current-carrying conductor with your right your thumb will be in the direction of the current and the direction of the magnetic field is the point at which your other finger coils the wire.

Learn more about Magnetic fields here:

https://brainly.com/question/24761394

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