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  2. Noble gas - Wikipedia

    en.wikipedia.org/wiki/Noble_gas

    The noble gases show extremely low chemical reactivity; consequently, only a few hundred noble gas compounds have been formed. Neutral compounds in which helium and neon are involved in chemical bonds have not been formed (although some helium-containing ions exist and there is some theoretical evidence for a few neutral helium-containing ones ...

  3. CPK coloring - Wikipedia

    en.wikipedia.org/wiki/CPK_coloring

    Several of the CPK colors refer mnemonically to colors of the pure elements or notable compound. For example, hydrogen is a colorless gas, carbon as charcoal, graphite or coke is black, sulfur powder is yellow, chlorine is a greenish gas, bromine is a dark red liquid, iodine in ether is violet, amorphous phosphorus is red, rust is dark orange-red, etc.

  4. Noble gas compound - Wikipedia

    en.wikipedia.org/wiki/Noble_gas_compound

    Structure of a noble-gas atom caged within a buckminsterfullerene (C 60) molecule. Noble gases can also form endohedral fullerene compounds where the noble gas atom is trapped inside a fullerene molecule. In 1993, it was discovered that when C 60 is exposed to a pressure of around 3 bar of He or Ne, the complexes He@C 60 and Ne@C 60 are formed ...

  5. Krypton - Wikipedia

    en.wikipedia.org/wiki/Krypton

    Krypton is highly volatile and does not stay in solution in near-surface water, but 81 Kr has been used for dating old (50,000–800,000 years) groundwater. [25] 85 Kr is an inert radioactive noble gas with a half-life of 10.76 years.

  6. Color of chemicals - Wikipedia

    en.wikipedia.org/wiki/Color_of_chemicals

    The color of chemicals is a physical property of chemicals that in most cases comes from the excitation of electrons due to an absorption of energy performed by the chemical. The study of chemical structure by means of energy absorption and release is generally referred to as spectroscopy .

  7. Chemically inert - Wikipedia

    en.wikipedia.org/wiki/Chemically_inert

    The noble gases (helium, neon, argon, krypton, xenon and radon) were previously known as 'inert gases' because of their perceived lack of participation in any chemical reactions. The reason for this is that their outermost electron shells (valence shells) are completely filled, so that they have little tendency to gain or lose electrons.

  8. Neon compounds - Wikipedia

    en.wikipedia.org/wiki/Neon_compounds

    The cyclic molecule Be 2 O 2 can be made by evaporating Be with a laser with oxygen and an excess of inert gas. It coordinates two noble gas atoms and has had spectra measured in solid neon matrices. Known neon containing molecules are the homoleptic Ne.Be 2 O 2.Ne, and heteroleptic Ne.Be 2 O 2.Ar and Ne.Be 2 O 2.Kr. The neon atoms are ...

  9. Wikipedia : Featured picture candidates/Five Noble Gases

    en.wikipedia.org/.../Five_Noble_Gases

    Support noble gasses and N2 N2 is also a relatively unreactive gas, so it falls within the same general category. Hence, I support the noble gas photos as well as nitrogen. -- mcshadypl T C 03:26, 8 July 2010 (UTC) Though it would be ideal to merge all of these images into one. -- mcshadypl T C 03:28, 8 July 2010 (UTC)