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The stainless steel coil can produce magnetism after being energized, and you can count the unlimited steel coils according to the physics knowledge you learned in junior high school, and then carry out magnetic field movement to cut the coil to produce magnetism.
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Yes, as long as the metal that can be energized can produce a magnetic field, the energy of the magnetic field is electricity, and the metal only plays the role of conduction. However, the magnetic field is still not as large as copper, because stainless steel can be adsorbed by the magnetic field, which is equivalent to consuming the magnetic field, while copper is the opposite.
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Of course, it can be magnetic. As long as stainless steel can make the shape of a coil, then if metal passes through it, it will produce magnetism.
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It is important to make it clear that the iron core is a ferromagnetic substance. Second, it is important to understand that Lenz's law is universal. Secondly, the iron core has resistance.
After the wire is energized, the magnetic field in the core suddenly increases, and the core resists, which is Lenz's law, which produces an eddy current that resists the increase in the magnetic field - current. Due to the presence of resistance in the core, the energy is dissipated by the current and resistance action, and the current will gradually disappear. For ferromagnetic substances, there are magnetic chips in themselves, which will be neatly arranged under the action of the external magnetic field to enhance the magnetic field.
When the external magnetic field is stabilized, the direction of the magnetic chip also stabilizes and saturation is reached, which in turn reaches the magnetic field in the reinforcement coil and core. As long as you understand the properties of ferromagnetic substances, you can understand this problem.
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Hello, magnetism is produced when energized. This is an electromagnetic field, and there will definitely be.
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I don't want to lack the fact that it can be generated after electricity is generated, and this statement is correct.
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No, the magnetism that can be generated after the lap is energized is also its function of thermal and electrical conductivity.
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After the stainless steel coil is energized, it cannot produce magnetism, and stainless steel does not contain magnetism.
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Can stainless steel coils be magnetic when energized? The stainless steel coil does not produce magnetism when energized.
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Can stainless steel rings produce magnetic effects when energized? It can't be produced by industry, only experience can be generated.
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If the coil of rusty steel is electrified, can it produce the female? It can be picked directly.
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The stainless steel coil will also produce magnetism after being energized, which is the principle of electromagnets.
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As long as the direction of the magnetic field generated by the current is the same as that of the magnet, and the strength of the magnetic field exceeds the magnetic field of the magnet itself, the magnet becomes the core pole of the electromagnet, and the magnetic field should be strong. It doesn't make much sense if the coil just produces a small magnetic field. If the magnetic field of the coil and the magnetic field of the permanent magnet are opposite, then the energizing will repel it, which is dangerous.
The magnetic field is a special substance that cannot be seen or touched, the magnetic field is not composed of atoms or molecules, but the magnetic field exists objectively. The magnetic field has the radiative properties of wave particles. There is a magnetic field around the magnet, and the interaction between the magnets is mediated by the magnetic field, so the two magnets can act without contact.
An electric current, a moving charge, a magnet, or a special form of matter that exists in the space around the changing electric field. Since the magnetism of a magnet is the same as the current, the current is the movement of an electric charge, so in a nutshell, the magnetic field is generated by the change of the moving charge or electric field. From the point of view of modern physics, the only ultimate components that can form a charge in matter are electrons (with a unit negative charge) and protons (with a unit positive charge), so the negative charge is a point object with excess electrons, and the positive charge is a point object with excess protons.
The real source of the field where the moving charge produces the magnetic field is the magnetic field produced by the moving electrons or moving protons. For example, the magnetic field generated by an electric current is the magnetic field generated by electrons moving in a wire.
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