Delve into the world that Alice would be at home in. According to what is known generally about the quanta of the electromagnetic spectrum is that it has the wave like nature that is like radio waves. It also has "packets" of energy that behave like particles. The LASER
light beam is being used in chambers to move things around. When you have seen a LASER cut into very hard material you know about the force being imparted. When fusion happens a LASER will be driving it to be a sun on Earth. Electromagnets are used to move a variety of things like speakers and metal sorters. Computers rely on a lot of components with electromagnetism at their heart of operation. Hard drives, floppy drives, the power supply and the display. The ability of AC to be switched and converted using coils, caps, transistors and diodes shows how electromagnetic coupling is used to run most things we use.
An electromagnetic field is considered a force because it can exert a push or pull on charged particles within the field. This force is a result of the interaction between electric and magnetic fields. Charged particles experience a force when they interact with the electromagnetic field, causing them to move or accelerate.
Energy is considered a force because it has the ability to do work and exert a force on objects. When an electrical current runs through a wire, it creates a magnetic field around the wire due to the flow of electrons. This magnetic field carries electromagnetic energy that can interact with other objects in its vicinity.
Well one way to look at it is that a photon IS an electromagnetic field. The photon is the gauge particle for the electromagnetic force. Without photons there would be no electromagnetic interaction force, and therefore no electromagnetic fields.
An electromagnetic field can exert a force on an electron, causing it to accelerate or move in a specific direction. The direction and magnitude of the force depend on the strength and orientation of the electromagnetic field.
Electromagnetic force is produced by the interaction of electric charges and magnetic fields. When a charged particle moves through a magnetic field, it experiences a force perpendicular to its velocity and the magnetic field lines. This force is the electromagnetic force.
An electromagnetic field is considered a force because it can exert a push or pull on charged particles within the field. This force is a result of the interaction between electric and magnetic fields. Charged particles experience a force when they interact with the electromagnetic field, causing them to move or accelerate.
Energy is considered a force because it has the ability to do work and exert a force on objects. When an electrical current runs through a wire, it creates a magnetic field around the wire due to the flow of electrons. This magnetic field carries electromagnetic energy that can interact with other objects in its vicinity.
Well one way to look at it is that a photon IS an electromagnetic field. The photon is the gauge particle for the electromagnetic force. Without photons there would be no electromagnetic interaction force, and therefore no electromagnetic fields.
An electromagnetic field can exert a force on an electron, causing it to accelerate or move in a specific direction. The direction and magnitude of the force depend on the strength and orientation of the electromagnetic field.
Electromagnetic force is produced by the interaction of electric charges and magnetic fields. When a charged particle moves through a magnetic field, it experiences a force perpendicular to its velocity and the magnetic field lines. This force is the electromagnetic force.
A force field is an energy that surrounds an object that distorts or prevents penetration to the interior object. Usually caused by electromagnetic energy, the force field repels only that which is repeled by electricity. One of the greatest examples of a force field is the Earth's atmosphere as it protects the Earth from specific wavelengths of light.
Photons are the carrier particles of the electromagnetic force. They do not possess an electric charge but have both energy and momentum, allowing them to transfer the electromagnetic force between charged particles. This transfer occurs through the electromagnetic field interaction mediated by photons.
If it has a battery that is electromagnetic energy, but if you mean radiation force you need 300 megawatts of power for 1 Newton force.
The electromagnetic force is a force that is expressed as (or that "shows up as") a "field" or a "group of lines of force" around the source. Electromagnetic flux is a direct reference to those magnetic lines of force. Electromagnetic flux is the electromagnetic field or the group of electromagnetic lines of force around the source. All the following sentences say the same thing: The electromagnetic flux around the magnet was very high. The magnetic flux around the magnet was very high. The magnetic field around the magnet was very large. The flux around the magnet was very high. The field around the magnet was very large. There were a large number of magnetic lines of force around the magnet making the field strength very high.
It depends what you are talking about... Electromagnetic field Electromagnetic force Electromagnetic radiation Electromagnetic spectrum Electromagnetic therapy Electromagnetic waves ...they each have different meanings.
Electricity is not a force itself; rather, it is a form of energy caused by the movement of charged particles. The force experienced due to electricity is the electromagnetic force, which is one of the four fundamental forces in nature.
No. Earth's gravitational field is due to the large mass within it; the electromagnetic field is due to the movement of the metals in its core. There are also the standard differences between a gravitational and an EM field.