The term "ion of bro" likely refers to the bromide ion, which is denoted as Br⁻. This ion is formed when a bromine atom gains an electron, resulting in a negatively charged ion. Bromide ions are commonly found in various compounds and play a role in biological and chemical processes. They are also used in applications such as Photography and water treatment.
Yes, the bromite ion (BrO₂⁻) is polar. This is due to its bent molecular geometry, which results from the presence of a lone pair of electrons on the bromine atom. The difference in electronegativity between bromine and oxygen creates a dipole moment, making the overall ion polar.
The chemical formula for strontium hypobromite is Sr(BrO)2. In this compound, strontium (Sr) has a +2 oxidation state, while hypobromite (BrO-) has a -1 oxidation state. The formula indicates that one strontium ion is combined with two hypobromite ions.
Na is positive ion,Cl is negative ion
the symbol of ion is base on the lemement that you are trying to fin out
The chemical formula of hydronium ion is (H3O)+.For the "oxide ion" check your spelling.
hypobromite ion
The conjugate acid of BrO is HBrO, which is formed when BrO accepts a proton (H+). It has one more hydrogen ion than its parent molecule BrO.
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The conjugate base of an acid is the species we get from from deprotonating it (the conjugate base is usually an anion). If we deprotonate hypobromous acid, HBrO, we can see that the hypobromite ion (BrO-) is the conjugate base. HBrO---> H+ + BrO-
The oxidation state of bromine in calcium hypobromite (Ca(BrO)2) is +1. This is because the calcium ion has a +2 charge, and since hypobromite (BrO-) ion has an overall -1 charge, the bromine atom must have a +1 oxidation state to balance the charges.
The chemical formula BaBrO2 corresponds to barium bromite. It is a compound made up of one barium ion (Ba2+) and a bromite ion (BrO2-).
The chemical formula for strontium hypobromite is Sr(BrO)2. In this compound, strontium (Sr) has a +2 oxidation state, while hypobromite (BrO-) has a -1 oxidation state. The formula indicates that one strontium ion is combined with two hypobromite ions.
Yes, the bromite ion (BrO₂⁻) is polar. This is due to its bent molecular geometry, which results from the presence of a lone pair of electrons on the bromine atom. The difference in electronegativity between bromine and oxygen creates a dipole moment, making the overall ion polar.
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