Light helps us see things. The sun is a big light. It shines on our world. We can use lamps too. Light is very fast. Can you see the light?
Light helps us see the world. The sun is our main source of light. People also use fire and electric lamps. 

Light is a type of energy that we can see.
Light moves very fast. In a vacuum, it moves at about 299,792,458 meters per second. This is a constant speed in nature. Light can also act like tiny particles. We call these particles photons.
Light can bend when it moves between different materials. This is called refraction. For example, light bends when it goes from air into water. 
Most of our light comes from the Sun. Other sources include fire and electric lamps. 
Light is a special kind of energy that helps us see the world.
Light works in two different ways at once. It can act like a wave that moves through space. It can also act like tiny particles called photons. 
Many people have worked to understand how light moves. In the 1600s, Galileo tried to measure its speed. Later, a Danish physicist named Ole Rømer studied the moon Io. In 1676, he found light takes about 22 minutes to cross Earth's orbit. 
Light travels at a constant speed in a vacuum. This speed is exactly 299,792,458 meters per second. This is one of the most important numbers in nature. When light moves through things like water, it slows down. In water, light moves at about 3/4 of its vacuum speed. The Sun is our main source of natural light. It sends much of its energy to Earth as visible light.
We use light in many parts of our daily lives. We used fire for light long ago. Now, we mostly use electric lights to see at night. 

Light is a form of electromagnetic radiation that can cause a visual sensation. In physics, the term "light" can describe any electromagnetic radiation, including radio waves, microwaves, X-rays, and gamma rays. However, when people speak of light in an everyday sense, they usually mean visible light. This is the specific part of the spectrum that the human eye can perceive.
To understand how light works, we must look at its dual nature. Light exhibits properties of both particles and waves. The individual, massless particles of light are called photons. These quanta of light can be detected using specialized scientific equipment. At the same time, light behaves like a wave, which allows for phenomena such as interference.
Different types of radiation interact with the world in distinct ways. Infrared radiation sits at the lower end of the visible spectrum with longer wavelengths. Because its photons lack the energy to cause lasting molecular changes in human retinal molecules, it is invisible to us. However, some animals can sense it. Snakes use a form of natural thermal imaging to detect infrared radiation. In these animals, infrared radiation raises the temperature of tiny packets of cellular water. Above the visible spectrum lies ultraviolet light, which has shorter wavelengths. Humans cannot see ultraviolet light because our cornea and internal lens absorb it. Furthermore, the rods and cones in our retina cannot detect these short wavelengths and can actually be damaged by them. 
Measuring the speed of light has been a major goal for physicists throughout history. The speed of light in a vacuum is a fundamental constant of nature. It is exactly 299,792,458 meters per second. In the seventeenth century, Galileo attempted to measure this speed. In 1676, the Danish physicist Ole Rømer made a significant breakthrough. By observing the moon Io, he calculated that light takes about 22 minutes to cross the diameter of Earth's orbit. Later, in 1849, Hippolyte Fizeau used a rotating cog wheel and a distant mirror to calculate the speed more accurately. In 1862, Léon Foucault improved these methods using rotating mirrors. Finally, Albert A. Michelson conducted highly precise experiments from 1877 until 1931. He used rotating mirrors to measure light traveling between Mount Wilson and Mount San Antonio in California.
Light behaves differently depending on the medium through which it travels. While light moves at its maximum speed in a vacuum, it slows down in transparent substances. For instance, light travels at about 3/4 of its vacuum speed when moving through water. This change in speed often leads to refraction. Refraction is the bending of light rays as they pass from one transparent material into another. This happens because the wavelength of the light changes while the frequency remains constant. 
Light also comes from various sources through different physical processes. The Sun is the primary natural source of light on Earth. Solar radiation peaks in the visible region, with about 44% of the radiation reaching the ground being visible. 
The study of light and its interaction with matter is known as optics. This field is divided into several specialized branches based on the scale of the observation. Geometrical optics is used to understand large-scale interactions like those involving eyes, cameras, and mirrors. Physical optics focuses on wave properties, such as diffraction and interference. Finally, quantum optics is used to study how individual photons interact with matter. These different perspectives allow scientists to understand everything from the way we see a rainbow to the complex behavior of subatomic particles.
🖼️ Images & Media (10)
More to explore
✨ What else?
Related topics you might enjoy
🔬 Go deeper
More advanced topics to explore
🪜 Step back
Simpler topics to build understanding
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.