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The most common mono-atomic sulfur ion is its anion with valence 2 and charge -2.

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What is the valence of a monoatomic chlorine ion?

The valence of a monoatomic chlorine ion is 1 and its charge is -1.


The monoatomic sodium ion would have a valence of?

The monoatomic sodium ion, Na+, would have a valence of +1. This is because sodium typically loses one electron to achieve a stable electron configuration, resulting in a positive charge of +1.


What is the oxidation number of any monoatomic ions?

The oxidation number of any monoatomic ion is equal to the charge of the ion. For example, the oxidation number of the sodium ion (Na+) is +1, and the oxidation number of the chloride ion (Cl-) is -1.


What is the most stable ion of sulfur?

The most stable ion of sulfur is the sulfide ion (S^2-). This ion has a full valence shell, giving it greater stability compared to other sulfur ions.


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What is the oxidation number of a monotomic ion?

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What is true about the electrons in a sulfur ion?

Sulfur ion has gained or lost electrons, making it positively or negatively charged. In a sulfur ion, the number of protons remains the same, but the number of electrons changes. This change in electrons leads to the ion having a different charge than a neutral sulfur atom.


How many valence electrons are there in the sulfite ion?

The sulfite ion (SO3^2-) has 18 valence electrons. There are six valence electrons from the sulfur atom (Group 16, 6 valence electrons) and four valence electrons from each of the three oxygen atoms (Group 16, 6 valence electrons each).


What is the number of valence in hydrogen sulfate?

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What is the term for a single atom bearing a negative or a positive chargeas a result of gaining or losing valence electrons?

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Is the oxidation number of an ion equal to the number of valence electrons the ion contains?

Yes, the oxidation number of an ion is equal to the number of valence electrons the ion contains. Valence electrons are the electrons in the outermost shell of an atom, and they are involved in forming chemical bonds, which also determines the oxidation state of an ion.