Screens use light to show us things. 
Screens use light to show us pictures. 

A liquid-crystal display, or LCD, is a flat screen. 

Inside the screen are tiny bits called liquid crystals. These crystals act like small shutters for light. They sit between two polarizers. A polarizer is a filter that only lets light pass in one direction. Without the crystals, the two filters would block all the light.
When we use electricity, we can change the crystals. This is called an electric field. In some screens, the crystals are twisted like a spiral. This twist lets light pass through. When we turn on the power, the crystals untwist. This blocks the light so the pixel looks black. By using different amounts of power, we can make many shades of gray. 
Most color screens use red, green, and blue filters. These filters make the colors we see. LCDs are in many things. You can find them in watches, phones, and TVs. 
A liquid-crystal display, or LCD, is a flat screen used to show information. 

LCDs do not make their own light. Instead, they use a backlight or a reflector to shine light through them. 
We can control these crystals using electricity. When an electric field is applied, the molecules untwist. This stops the light from rotating, so the second filter blocks it. This makes the pixel look black. By changing the amount of voltage, we can let different amounts of light through. This creates different levels of gray. 

Scientists have studied liquid crystals for a long time. In 1888, Friedrich Reinitzer discovered them in cholesterol from carrots. Later, in 1927, Vsevolod Frederiks found a way to switch them with electricity. This was a very important step for all LCD technology. In the 1960s, George H. Heilmeier worked at RCA laboratories. He is credited with inventing the first working LCD. He used something called the dynamic scattering mode to make a display. 
Making these screens is a very precise job. Manufacturers use a process called photolithography to make color filters on glass sheets. They use tiny particles of pigment that are only 40 nanometers across. 
A liquid-crystal display, or LCD, is an electronically modulated optical device. It is a type of flat-panel display used to show information. 

The mechanism of an LCD relies on the light-modulating properties of liquid crystals. A typical pixel consists of a layer of molecules between two transparent electrodes. These electrodes are often made of indium tin oxide (ITO). The layer is sandwiched between two polarizing filters. These filters are placed in a crossed arrangement, meaning their axes of transmission are perpendicular. 
Electricity is used to control how much light passes through each pixel. When a voltage is applied, the liquid crystal molecules in the center untwist. This means the light is no longer rotated as it passes through the layer. The light remains polarized perpendicular to the second filter. Because the filters are crossed, the light is blocked and the pixel appears black. By varying the voltage, engineers can control the amount of light that passes through. This allows the display to show different levels of gray. 
Most modern color LCD systems use subpixels to create images. These subpixels use color filters to produce red, green, and blue light. The manufacturing process involves photolithography on large glass sheets. These sheets are later glued to other glass sheets containing a thin-film transistor (TFT) array. 
There are different types of LCD technologies used for different needs. Twisted nematic (TN) displays are common for devices with low information content. However, many smartphones now use In-Plane Switching (IPS) LCDs instead. 

The history of liquid crystals began with scientific discoveries in the late 19th century. In 1888, Friedrich Reinitzer discovered the liquid crystalline nature of cholesterol. In 1927, Vsevolod Frederiks described the Fréedericksz transition. This is the essential effect that allows liquid crystals to be switched by electricity. 
LCD technology has significantly changed how we view digital information. Since the late 2000s and early 2010s, LCDs have replaced cathode-ray tube (CRT) displays. CRTs were heavy, bulky, and used more energy. LCDs are much more energy-efficient. Unlike CRTs, LCDs are not subject to screen burn-in. However, they can still experience image persistence. This is a known characteristic of the technology. 
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