Increase or decrease in potential results in the change in direction of the flow of electric current.
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When there is a change in the direction of the magnetic field in a loop, an induced current is generated in the loop in a direction that opposes the change in the magnetic field.
Alternating Current
The direction of a longshore current can reverse due to changes in wave direction, which may occur with shifts in wind patterns or tidal movements. When waves approach the shore at different angles, they can alter the flow of water along the coastline. Additionally, coastal features like jetties or groins can disrupt the current, causing it to change direction. Seasonal variations in wave energy and storm activity can also contribute to these reversals.
sea and land breezes over a large region that change direction with the season lil sl
direction of magnetic field
The magnetic field direction around the wire reverses when the direction of the current in the wire is changed. This is due to the right-hand rule that states the direction of the magnetic field is perpendicular to the direction of current flow.
Direct current (DC) does not change direction in electricity. It flows consistently in one direction from the positive to the negative terminal of a power source, unlike alternating current (AC) which changes direction periodically.
An object changing direction is an example of acceleration. This change in direction results in a velocity change, which is a key characteristic of acceleration in physics.
Lenz's Law states that the direction of the induced current in a circuit is such that it opposes the change in magnetic flux that caused it. By applying Lenz's Law, we can determine the direction of the induced current by considering the direction of the changing magnetic field and the direction of the induced current that would oppose that change.
The direction of induced current in a circuit can be determined using Lenz's Law, which states that the induced current will flow in a direction that opposes the change in magnetic field that caused it. This means that the direction of the induced current will be such that it creates a magnetic field that opposes the original change in magnetic field.