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We call the arrangement of all forms of light according to their wavelengths and frequencies the electromagnetic spectrum. It includes radio waves, microwaves, infrared, visible light, ultraviolet, X-rays, and gamma rays.
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When light passes through a parallel arrangement of crystals, such as a polarizer-analyzer pair, the crystals filter the light waves based on their orientation. If the crystals are aligned parallel to each other, they allow light waves oscillating in a single plane (polarized light) to pass through while blocking the waves oscillating in other planes. This demonstrates the polarization of light, as only light waves vibrating in a specific direction can transmit through the arrangement.
Light. Note that light is a special case of electromagnetic waves; but if it isn't visible light, you wouldn't call it a "light wave", just an "electromagnetic wave".
There are many types of waves covered by physics. Only electromagnetic waves in the visible light band have the property that we call "color".
Someone who studies waves is called a wave scientist or a wave physicist. They specialize in the interaction, behavior, and properties of different types of waves, such as sound waves, light waves, and ocean waves.
We call most of them heat, light, and x-rays.
This is called refraction. It occurs when light waves change speed as they move from one medium to another, causing them to bend.
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Electromagnetic (EM) waves are arranged in the spectrum based on their wavelength or frequency. From longest to shortest wavelength/frequency, the EM spectrum includes radio waves, microwaves, infrared, visible light, ultraviolet, X-rays, and gamma rays. This arrangement is important because each region of the spectrum has unique properties and interactions with matter.
The intensity of light waves is a measure of the energy carried by the waves. It is proportional to the square of the amplitude of the waves. The intensity of light waves determines how bright the light appears to us.
Laser is concentrated light like a reflector only parallell, infrared light is a part of the light spectrum (like blue, red, ultraviolet...).The comparison in question is similar to comparing apples to oranges as the first is the arrangement of rays (similar to bulb light vs. focused reflector) and the latter is the wawelength (red light vs. blue light).