These lamps make bright light. 
These lights make bright light. 


A fluorescent lamp is a type of light. 
When you turn the light on, electricity flows through the gas. This electricity makes the mercury vapor excited. The gas then gives off ultraviolet light. We cannot see this kind of light. But the inside of the tube has a phosphor coating. Phosphor is a material that glows when hit by light. The ultraviolet light hits the coating. This makes the coating glow with bright, visible light. 
These lamps are very useful. They use much less power than old incandescent bulbs. This helps save energy. Some people use compact fluorescent lamps, or CFLs, at home. These are small bulbs that save power too. 
A fluorescent lamp is a special way to make light. 
How does the light actually happen? It works through a step-by-step process inside a glass tube. First, an electric current flows through a gas inside the tube. This gas contains mercury vapor. The electricity excites the mercury vapor. This causes the gas to produce ultraviolet light. We cannot see ultraviolet light with our eyes. However, the inside of the tube has a phosphor coating. When the ultraviolet light hits this coating, the phosphor glows. This glow is the bright light we see. 
Many scientists helped discover these ideas over a long time. In 1852, an Irish scientist named Sir George Stokes explained fluorescence. He named it after a mineral called fluorite. Later, a German glassblower named Heinrich Geissler made a mercury vacuum pump in 1856. This helped create the first gas-discharge lamps. Other scientists like Julius Plücker and Alexandre Edmond Becquerel studied these glowing tubes. Becquerel even tried putting coatings on the tubes to make them glow. These early experiments were the building blocks for the lamps we use today. 
Different inventors worked on different parts of the lamp. In 1901, Peter Cooper Hewitt patented a mercury-vapor lamp. His lamp was efficient but produced a blue-green light. Around the same time, Daniel McFarlan Moore made lamps that used gases like nitrogen. These lamps were more expensive and needed high voltage. In 1915, Georges Claude improved electrodes for neon lights. This helped stop a problem called sputtering. Sputtering happens when tiny bits of metal are torn off an electrode. These many steps were needed to make a working lamp. 
Today, we see these lights in many different forms. You might see long tubes in a pedestrian tunnel. 

A fluorescent lamp, often called a fluorescent tube, is a low-pressure mercury-vapor gas-discharge lamp. It uses the process of fluorescence to produce visible light for our surroundings. These lamps are highly valued because they convert electrical energy into visible light much more efficiently than traditional incandescent lamps. While a standard incandescent bulb provides about 16 lumens per watt, a fluorescent lamp typically offers between 50 and 100 lumens per watt. 
The mechanism of light production follows a specific sequence of physical events. First, an electric current is passed through a gas inside a glass tube. This gas contains mercury vapor. As the electricity flows, it excites the mercury vapor, which causes the gas to produce ultraviolet light. This ultraviolet light is invisible to the human eye. To make the light visible, the inside of the glass tube is coated with a phosphor coating. When the ultraviolet light hits this phosphor, the coating glows, creating the bright light we see. 
Because these lamps rely on a specific electrical discharge, they require specialized components to function. A key part of the fixture is the ballast, which is a device used to regulate the current flowing through the lamp. Without a ballast, the lamp could not maintain the correct electrical conditions. 

The history of this technology is a long chain of scientific discoveries. In 1852, the Irish scientist Sir George Stokes explained the phenomenon of fluorescence. He named it after the mineral fluorite, which glows strongly due to impurities. In 1856, German glassblower Heinrich Geissler created a mercury vacuum pump. This allowed him to invent the Geissler tube, the first gas-discharge lamp. These tubes used metal electrodes at each end of a partially evacuated glass tube. Scientists like Julius Plücker and Alexandre Edmond Becquerel later studied these tubes. Becquerel even began applying thin coatings of luminescent materials to the surfaces of the tubes. 
Many inventors contributed to the different parts of the modern lamp. In 1901, Peter Cooper Hewitt patented a mercury-vapor lamp. His lamp was efficient but produced a blue-green light that limited its use. Around 1904, Daniel McFarlan Moore introduced lamps that used gases like carbon dioxide or nitrogen. These were much more efficient than incandescent lamps and produced light closer to natural daylight. In 1915, Georges Claude developed an improved electrode for neon lighting. This was a major breakthrough because it helped stop a problem called sputtering. Sputtering occurs when ionized particles strike an electrode and tear off small bits of metal. 
By the end of the 1920s, all the essential elements for the modern fluorescent lamp were in place. These elements included glass tubing, inert gases, electrical ballasts, long-lasting electrodes, and mercury vapor. Researchers also perfected the fluorescent coatings that react to ultraviolet light. In 1926, Jacques Risler received a patent for applying fluorescent coatings to neon tubes. This led to the first commercially successful fluorescent lamps, though they were used mainly for advertising. By 1934, physicists like Arthur Compton were conducting successful experiments that helped move the technology toward general use.
While fluorescent lamps are very useful, they require careful handling due to their chemical makeup. These lamps contain mercury, which is a substance that must be managed safely. In the United States, the Environmental Protection Agency classifies fluorescent lamps as universal waste. This means they should be kept separate from general household trash. Many jurisdictions require that these lamps be recycled or disposed of through specific safe methods. 
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