Light can bend.
Light can bend when it moves.
Have you ever seen a straw look bent in a glass of water?
When light hits a border, it changes direction. This change is called refraction. The light bends because it changes speed. For example, light moves slower in water than in air.
Many people helped find this rule. A scientist named Ibn Sahl found it in the year 984. He used it to make better lenses. Later, Willebrord Snell derived a math version of the rule. 
Have you ever noticed a straw looking bent in a glass of water?
Refraction happens because light changes speed. When light moves from one medium to another, its velocity changes. For example, light moves slower in water than it does in air.
Many people helped discover how light bends over a long time. 
History shows that different thinkers had different ideas about light. 

Understanding Snell's law helps us see how the world works. It explains why things look different under water. It also helps us build tools like cameras and glasses. 
Snell's law is a fundamental formula used in optics to describe how light behaves at a boundary. When light or other waves pass from one medium to another, they often change direction. This phenomenon is known as refraction.
To understand the mechanism, we must look at how light interacts with different media. A medium is any substance, such as air, water, or glass, through which light travels. Each medium has a refractive index, labeled as $n$. This index represents the factor by which light's velocity decreases compared to its speed in a vacuum.
The mathematical expression of the law involves the sines of these angles. For a given pair of media, the ratio of the sine of the angle of incidence to the sine of the angle of refraction is equal to the refractive index of the second medium relative to the first. This ratio is also equivalent to the ratio of the phase velocities in the two media.
The history of this discovery spans many centuries and different cultures. While often named after Willebrord Snell, the Persian scientist Ibn Sahl first discovered the law in 984 at the Baghdad court. 

Different scientific principles have been used to derive the law throughout history. Pierre de Fermat arrived at the same solution using his principle of least time. This principle states that light travels the path that requires the least amount of time. 
Snell's law also applies to complex and specialized materials. In anisotropic media, such as certain crystals, a phenomenon called birefringence can occur. This causes a single incoming ray to split into two: an ordinary ray that follows Snell's law and an extraordinary ray that may not. 
The law is highly significant in modern technology and physics. It is used to model complex optical stacks, such as the anti-reflective coatings found on eyeglasses or display panels.
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