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- Generally, all noble gases except oganesson (helium, neon, argon, krypton, xenon, and radon), nitrogen, and carbon dioxide are considered inert gases.
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Which of the following is an inert gas? Group of answer choices Hydrogen Oxygen Nitrogen Helium
Inert Gases (Noble Gases) These gases do not react with other substances. Helium (He), neon (Ne), argon (Ar), krypton (Kr), xenon (Xe), radon (Rn) Helium. -Fill weather balloon and airships. -Used in thermometre to measure low temperature. - Mixture of oxygen gas and helium is used by divers. Neon.
Generally, all noble gases except oganesson (helium, neon, argon, krypton, xenon, and radon), nitrogen, and carbon dioxide are considered inert gases. The term inert gas is context-dependent because several of the inert gases, including nitrogen and carbon dioxide, can be made to react under certain conditions.
Oct 2, 2024 · Study with Quizlet and memorize flashcards containing terms like Which of the following represents a hypothesis? a) When a substance combusts, it combines with air. b) Nitrogen gas is a a fairly inert substance. c) Nickel has a silvery sheen. d) When wood burns, heat is given off.
Sep 14, 2019 · These elements are noble gases, sometimes called inert gases. Atoms belonging to the noble gas group have completely filled their outer electron shells. Each element is non-reactive, has high ionization energy, electronegativity near zero, and a low boiling point.
- Anne Marie Helmenstine, Ph.D.
Oct 3, 2024 · Detailed Solution. An inert gas is a gas that has extremely low reactivity with other substances. The term inert means non-reactive. Inert gases are also known as noble gases which are placed in group 18 of the periodic table. Inert gases are Helium, Neon, Argon, Krypton, Radon, and Xenon.
The noble gases, also known as the inert gases and aerogens, are the elements that belong to group 18 of the modern periodic table. The elements that belong to this group are: Under standard conditions for temperature and pressure, all the noble gases exist in the gaseous phase.