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Circular Current Loop as a Magnetic Dipole Video Lecture - NEET

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FAQs on Circular Current Loop as a Magnetic Dipole Video Lecture - NEET

1. What is a circular current loop?
Ans. A circular current loop refers to a situation where an electric current flows in a closed loop shape, forming a circle. It can be a wire bent into a circular shape or a loop of conducting material.
2. How does a circular current loop act as a magnetic dipole?
Ans. A circular current loop acts as a magnetic dipole because the current flowing through the loop generates a magnetic field. This magnetic field has both a magnitude and a direction, similar to a bar magnet. The magnetic dipole moment of the loop is determined by the product of the current and the area enclosed by the loop.
3. What are the properties of a magnetic dipole?
Ans. A magnetic dipole possesses certain properties, such as having a north and south pole, creating a magnetic field that exerts forces on other magnetic objects. It has a magnetic moment, which is a measure of its strength and orientation. Magnetic dipoles also experience torque when placed in an external magnetic field.
4. How is the magnetic field produced by a circular current loop calculated?
Ans. The magnetic field produced by a circular current loop can be calculated using Ampere's law. For a circular loop, the magnetic field at the center of the loop is directly proportional to the current and inversely proportional to the radius of the loop. The direction of the magnetic field follows the right-hand rule, where the thumb points in the direction of the current and the fingers curl in the direction of the magnetic field.
5. What are the applications of magnetic dipoles formed by circular current loops?
Ans. Magnetic dipoles formed by circular current loops have various applications. They are used in electromagnetic devices such as electric motors, generators, and transformers. They also play a crucial role in magnetic resonance imaging (MRI) machines, where the magnetic dipoles of atoms in the body are manipulated to create detailed images of internal structures.
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