A typical train has wheels and rolls on metal rails. It's drive wheels are driven by a steam engine, a Diesel engine, or even electric motors powered by the rail system or overhead wires.
An electromagnetic train, on the other hand, does not ride on wheels, or have an engine, per se. It is suspended from it's track by a powerful magnetic field generated by electro-magnets in the track and train.
In addition to providing suspension of the train, the magnetic fields are used to propel the train itself, so it does not need an "engine" at all.
In an electromagnetic wave, the phase difference between the electric and magnetic fields is 90 degrees. This means that when the electric field is at its maximum value, the magnetic field is zero, and vice versa. This relationship is essential for understanding how electromagnetic waves propagate through space.
Light falls within the electromagnetic spectrum as a form of electromagnetic radiation. It specifically falls between ultraviolet and infrared radiation, with visible light occupying the wavelengths of 400-700 nanometers.
Visible light and infrared light are the parts of the electromagnetic spectrum that can be seen with the eye.
True. The internal energy stored in the bonds between atoms is a form of potential energy that arises from the electromagnetic interactions between charged particles within the atoms. This energy is often referred to as electromagnetic energy.
Photochemical reaction: a chemical reaction induced by electromagnetic radiations: ul- traviolet, visible, etc.) Thermal reaction: a chemical reaction induced by increasing the temperature (ex.: thermal dissociation, etc.)
A truck drives on the road, and a train is on a train track.
What type of locomotive pulls it.
The main difference between mechanical and electromagnetic waves is how they travel. Mechanical waves require a medium, such as air or water, to propagate, while electromagnetic waves can travel through a vacuum.
AnswerThe difference between Z train and T train is Z train normally won't stop between your station and the destination for more passengers. As to the comfort of seats, facilities and speed, they are almost the same.
The primary difference between mechanical and electromagnetic waves is how they travel. Mechanical waves require a medium, such as air or water, to propagate, while electromagnetic waves can travel through a vacuum, like in space.
What is the difference between buying a 1st class and a 2nd class ticket on the train in England?
it is fast as a bullrt train
Mail means the train which carries the post letters. Express train which not.
the wave length
a steam boat is on the water and a train is on railroad tracks
The main difference between mechanical and electromagnetic waves is that mechanical waves require a medium (such as air or water) to travel through, while electromagnetic waves can travel through a vacuum (empty space) because they do not require a medium.
train is good very very good but bus is bad