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What is neon? The characteristic brilliant red-orange color emitted by gaseous neon when excited electrically was noted immediately.

Travers later wrote: "the blaze of crimson light from the tube told its own story and was a sight to dwell upon and never forget. A second gas was also reported along with neon, having approximately the same density as argon but with a different spectrum — Ramsay and Travers named it metargon.

Finally, the same team discovered xenon by the same process, in September Neon's scarcity precluded its prompt application for lighting along the lines of Moore tubes , which used nitrogen and which were commercialized in the early s.

After , Georges Claude 's company Air Liquide produced industrial quantities of neon as a byproduct of his air-liquefaction business.

In December Claude demonstrated modern neon lighting based on a sealed tube of neon. Claude tried briefly to sell neon tubes for indoor domestic lighting, due to their intensity, but the market failed because homeowners objected to the color.

In , Claude's associate began selling neon discharge tubes as eye-catching advertising signs and was instantly more successful.

Neon tubes were introduced to the U. The glow and arresting red color made neon advertising completely different from the competition.

Neon played a role in the basic understanding of the nature of atoms in , when J. Thomson , as part of his exploration into the composition of canal rays , channeled streams of neon ions through a magnetic and an electric field and measured the deflection of the streams with a photographic plate.

Thomson observed two separate patches of light on the photographic plate see image , which suggested two different parabolas of deflection. Thomson eventually concluded that some of the atoms in the neon gas were of higher mass than the rest.

Though not understood at the time by Thomson, this was the first discovery of isotopes of stable atoms. Thomson's device was a crude version of the instrument we now term a mass spectrometer.

Neon is the second lightest inert gas. Neon has three stable isotopes : 20 Ne In contrast, 20 Ne the chief primordial isotope made in stellar nucleosynthesis is not known to be nucleogenic or radiogenic.

The causes of the variation of 20 Ne in the Earth have thus been hotly debated. The principal nuclear reactions generating nucleogenic neon isotopes start from 24 Mg and 25 Mg, which produce 21 Ne and 22 Ne respectively, after neutron capture and immediate emission of an alpha particle.

The neutrons that produce the reactions are mostly produced by secondary spallation reactions from alpha particles , in turn derived from uranium -series decay chains.

In addition, isotopic analysis of exposed terrestrial rocks has demonstrated the cosmogenic cosmic ray production of 21 Ne. This isotope is generated by spallation reactions on magnesium , sodium , silicon , and aluminium.

By analyzing all three isotopes, the cosmogenic component can be resolved from magmatic neon and nucleogenic neon. This suggests that neon will be a useful tool in determining cosmic exposure ages of surface rocks and meteorites.

Similar to xenon , neon content observed in samples of volcanic gases is enriched in 20 Ne and nucleogenic 21 Ne relative to 22 Ne content.

The neon isotopic content of these mantle-derived samples represents a non-atmospheric source of neon. The 20 Ne-enriched components are attributed to exotic primordial rare-gas components in the Earth, possibly representing solar neon.

Elevated 20 Ne abundances are found in diamonds , further suggesting a solar-neon reservoir in the Earth. Neon is the second-lightest noble gas, after helium.

It glows reddish-orange in a vacuum discharge tube. Also, neon has the narrowest liquid range of any element: from It has over 40 times the refrigerating capacity per unit volume of liquid helium and three times that of liquid hydrogen.

Neon plasma has the most intense light discharge at normal voltages and currents of all the noble gases. The average color of this light to the human eye is red-orange due to many lines in this range; it also contains a strong green line, which is hidden, unless the visual components are dispersed by a spectroscope.

Two quite different kinds of neon lighting are in common use. Neon glow lamps are generally tiny, with most operating between and volts.

These simple neon devices were the forerunners of plasma displays and plasma television screens. Stable isotopes of neon are produced in stars.

Neon's most abundant isotope 20 Ne This requires temperatures above megakelvins , which occur in the cores of stars of more than 8 solar masses.

Neon is abundant on a universal scale; it is the fifth most abundant chemical element in the universe by mass, after hydrogen, helium, oxygen, and carbon see chemical element.

Neon is monatomic, making it lighter than the molecules of diatomic nitrogen and oxygen which form the bulk of Earth's atmosphere; a balloon filled with neon will rise in air, albeit more slowly than a helium balloon.

Neon's abundance in the universe is about 1 part in ; in the Sun and presumably in the proto-solar system nebula, about 1 part in The Galileo spacecraft atmospheric entry probe found that even in the upper atmosphere of Jupiter, the abundance of neon is reduced depleted by about a factor of 10, to a level of 1 part in 6, by mass.

This may indicate that even the ice- planetesimals which brought neon into Jupiter from the outer solar system, formed in a region which was too warm to retain the neon atmospheric component abundances of heavier inert gases on Jupiter are several times that found in the Sun.

Neon comprises 1 part in 55, in the Earth's atmosphere , or It comprises a smaller fraction in the crust. It is industrially produced by cryogenic fractional distillation of liquefied air.

Neon is the first p-block noble gas, and the first element with a true octet of electrons. It is inert : as is the case with its lighter analogue, helium , no strongly bound neutral molecules containing neon have been identified.

They can be extracted by placing the clathrate into a vacuum chamber for several days, yielding ice XVI , the least dense crystalline form of water.

The familiar Pauling electronegativity scale relies upon chemical bond energies, but such values have obviously not been measured for inert helium and neon.

The Allen electronegativity scale , which relies only upon measurable atomic energies, identifies neon as the most electronegative element, closely followed by fluorine and helium.

Neon is often used in signs and produces an unmistakable bright reddish-orange light. Although tube lights with other colors are often called "neon", they use different noble gases or varied colors of fluorescent lighting.

Neon is used in vacuum tubes , high-voltage indicators, lightning arresters , wavemeter tubes, television tubes, and helium—neon lasers.

Liquefied neon is commercially used as a cryogenic refrigerant in applications not requiring the lower temperature range attainable with more extreme liquid-helium refrigeration.

Driving neon's expense is the rarity of neon, which, unlike helium, can only be obtained from air. The triple point temperature of neon From Wikipedia, the free encyclopedia.

Chemical element with atomic number This article is about the chemical element. For other uses, see Neon disambiguation. Main article: Isotopes of neon.

Main article: Neon compounds. Pure and Applied Chemistry. CRC press. Bibcode : Metro.. Lein, Daniel A. Morgan Proceedings of the Royal Society of London.

Retrieved See also Group periodic table. Kendall Hunt.

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This gas, identified in June, was named "neon", the Greek analogue of the Latin novum 'new' [15] suggested by Ramsay's son.

The characteristic brilliant red-orange color emitted by gaseous neon when excited electrically was noted immediately. Travers later wrote: "the blaze of crimson light from the tube told its own story and was a sight to dwell upon and never forget.

A second gas was also reported along with neon, having approximately the same density as argon but with a different spectrum — Ramsay and Travers named it metargon.

Finally, the same team discovered xenon by the same process, in September Neon's scarcity precluded its prompt application for lighting along the lines of Moore tubes , which used nitrogen and which were commercialized in the early s.

After , Georges Claude 's company Air Liquide produced industrial quantities of neon as a byproduct of his air-liquefaction business.

In December Claude demonstrated modern neon lighting based on a sealed tube of neon. Claude tried briefly to sell neon tubes for indoor domestic lighting, due to their intensity, but the market failed because homeowners objected to the color.

In , Claude's associate began selling neon discharge tubes as eye-catching advertising signs and was instantly more successful. Neon tubes were introduced to the U.

The glow and arresting red color made neon advertising completely different from the competition. Neon played a role in the basic understanding of the nature of atoms in , when J.

Thomson , as part of his exploration into the composition of canal rays , channeled streams of neon ions through a magnetic and an electric field and measured the deflection of the streams with a photographic plate.

Thomson observed two separate patches of light on the photographic plate see image , which suggested two different parabolas of deflection.

Thomson eventually concluded that some of the atoms in the neon gas were of higher mass than the rest. Though not understood at the time by Thomson, this was the first discovery of isotopes of stable atoms.

Thomson's device was a crude version of the instrument we now term a mass spectrometer. Neon is the second lightest inert gas. Neon has three stable isotopes : 20 Ne In contrast, 20 Ne the chief primordial isotope made in stellar nucleosynthesis is not known to be nucleogenic or radiogenic.

The causes of the variation of 20 Ne in the Earth have thus been hotly debated. The principal nuclear reactions generating nucleogenic neon isotopes start from 24 Mg and 25 Mg, which produce 21 Ne and 22 Ne respectively, after neutron capture and immediate emission of an alpha particle.

The neutrons that produce the reactions are mostly produced by secondary spallation reactions from alpha particles , in turn derived from uranium -series decay chains.

In addition, isotopic analysis of exposed terrestrial rocks has demonstrated the cosmogenic cosmic ray production of 21 Ne.

This isotope is generated by spallation reactions on magnesium , sodium , silicon , and aluminium. By analyzing all three isotopes, the cosmogenic component can be resolved from magmatic neon and nucleogenic neon.

This suggests that neon will be a useful tool in determining cosmic exposure ages of surface rocks and meteorites.

Similar to xenon , neon content observed in samples of volcanic gases is enriched in 20 Ne and nucleogenic 21 Ne relative to 22 Ne content.

The neon isotopic content of these mantle-derived samples represents a non-atmospheric source of neon. The 20 Ne-enriched components are attributed to exotic primordial rare-gas components in the Earth, possibly representing solar neon.

Elevated 20 Ne abundances are found in diamonds , further suggesting a solar-neon reservoir in the Earth.

Neon is the second-lightest noble gas, after helium. It glows reddish-orange in a vacuum discharge tube. Also, neon has the narrowest liquid range of any element: from It has over 40 times the refrigerating capacity per unit volume of liquid helium and three times that of liquid hydrogen.

Neon plasma has the most intense light discharge at normal voltages and currents of all the noble gases. The average color of this light to the human eye is red-orange due to many lines in this range; it also contains a strong green line, which is hidden, unless the visual components are dispersed by a spectroscope.

Two quite different kinds of neon lighting are in common use. Neon glow lamps are generally tiny, with most operating between and volts.

These simple neon devices were the forerunners of plasma displays and plasma television screens. Stable isotopes of neon are produced in stars.

Neon's most abundant isotope 20 Ne This requires temperatures above megakelvins , which occur in the cores of stars of more than 8 solar masses.

Neon is abundant on a universal scale; it is the fifth most abundant chemical element in the universe by mass, after hydrogen, helium, oxygen, and carbon see chemical element.

Neon is monatomic, making it lighter than the molecules of diatomic nitrogen and oxygen which form the bulk of Earth's atmosphere; a balloon filled with neon will rise in air, albeit more slowly than a helium balloon.

Neon's abundance in the universe is about 1 part in ; in the Sun and presumably in the proto-solar system nebula, about 1 part in The Galileo spacecraft atmospheric entry probe found that even in the upper atmosphere of Jupiter, the abundance of neon is reduced depleted by about a factor of 10, to a level of 1 part in 6, by mass.

This may indicate that even the ice- planetesimals which brought neon into Jupiter from the outer solar system, formed in a region which was too warm to retain the neon atmospheric component abundances of heavier inert gases on Jupiter are several times that found in the Sun.

Neon comprises 1 part in 55, in the Earth's atmosphere , or It comprises a smaller fraction in the crust. It is industrially produced by cryogenic fractional distillation of liquefied air.

Neon is the first p-block noble gas, and the first element with a true octet of electrons. It is inert : as is the case with its lighter analogue, helium , no strongly bound neutral molecules containing neon have been identified.

They can be extracted by placing the clathrate into a vacuum chamber for several days, yielding ice XVI , the least dense crystalline form of water.

The familiar Pauling electronegativity scale relies upon chemical bond energies, but such values have obviously not been measured for inert helium and neon.

The Allen electronegativity scale , which relies only upon measurable atomic energies, identifies neon as the most electronegative element, closely followed by fluorine and helium.

Neon is often used in signs and produces an unmistakable bright reddish-orange light. Although tube lights with other colors are often called "neon", they use different noble gases or varied colors of fluorescent lighting.

Neon is used in vacuum tubes , high-voltage indicators, lightning arresters , wavemeter tubes, television tubes, and helium—neon lasers.

Liquefied neon is commercially used as a cryogenic refrigerant in applications not requiring the lower temperature range attainable with more extreme liquid-helium refrigeration.

Driving neon's expense is the rarity of neon, which, unlike helium, can only be obtained from air. The triple point temperature of neon From Wikipedia, the free encyclopedia.

Chemical element with atomic number This article is about the chemical element. For other uses, see Neon disambiguation. Main article: Isotopes of neon.

Main article: Neon compounds. Pure and Applied Chemistry. CRC press. Bibcode : Metro.. Lein, Daniel A.

Morgan Proceedings of the Royal Society of London. Retrieved See also Group periodic table. Drama Drama W Drama. Trackers Trackers W W Trackers.

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