A magnetic field is produced by moving electric charges. When electric charges move, they create a magnetic field around them. This magnetic field can interact with other magnetic fields and cause objects to be attracted or repelled.
The magnetic field produced by a charge at a point is the force exerted by the charge on a moving charged particle at that point.
No, the magnetic field is not made of matter. It is a force that is produced by the movement of electric charges.
A permanent magnet can create a magnetic field with no current. This is due to the alignment of the magnetic domains within the material, which results in a net magnetic field. The magnetic field produced can attract or repel other magnets or magnetic materials in its vicinity.
The magnetic dipole field is derived by considering a small current loop as a tiny magnet. The magnetic field produced by this loop can be calculated using the Biot-Savart law. By integrating the contributions of all the tiny magnetic dipoles in the loop, we can determine the overall magnetic field produced by the current loop. This field resembles that of a magnetic dipole, with field lines running from the north to the south pole.
Iron filings can be used to visualize a magnetic field because they are attracted to the magnetic field lines produced by a magnet. This allows the iron filings to align along the magnetic field lines, making the field visible.
Magnetic field.
Yes, by moving the conductors through the magnetic field.
The magnetic field produced by a charge at a point is the force exerted by the charge on a moving charged particle at that point.
No, the magnetic field is not made of matter. It is a force that is produced by the movement of electric charges.
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As far as the electric field is stationary then no magnetic field. But when electric field is moving at a uniform speed then a magnetic field will be produced. This is what we call Lorentz magnetic field.
A permanent magnet can create a magnetic field with no current. This is due to the alignment of the magnetic domains within the material, which results in a net magnetic field. The magnetic field produced can attract or repel other magnets or magnetic materials in its vicinity.
No. Earth's magnetic field is produced by currents in the liquid outer core.
No. The magnetic field is produced by currents in Earth's outer core, which is composed largely of molten iron.
when ac passes through a conductor, the field produced is an electric field
The magnetic dipole field is derived by considering a small current loop as a tiny magnet. The magnetic field produced by this loop can be calculated using the Biot-Savart law. By integrating the contributions of all the tiny magnetic dipoles in the loop, we can determine the overall magnetic field produced by the current loop. This field resembles that of a magnetic dipole, with field lines running from the north to the south pole.
Iron filings can be used to visualize a magnetic field because they are attracted to the magnetic field lines produced by a magnet. This allows the iron filings to align along the magnetic field lines, making the field visible.