Oxygen has an oxidation state of zero (0) in HOF. F has an oxidation state of -1 and H has +1.
The oxidation state of oxygen in alkaline earth metal oxides is -2. Alkaline earth metals always have a +2 oxidation state, which means oxygen has to have a -2 oxidation state to balance the charges in the compound.
Ah, the oxidation state of Cl in ClO is -1. You see, in compounds with oxygen, like ClO, oxygen usually has an oxidation state of -2. Since the overall charge of ClO is 0, chlorine must have an oxidation state of +1 to balance out the -2 from oxygen.
The oxidation state of carbon in methanol (CH3OH) is +2. This is because oxygen has an oxidation state of -2 and hydrogen has an oxidation state of +1, so the carbon must have an oxidation state of +2 to balance the charges in the molecule.
+3 oxygen is always -2 and the complex total oxidation=0 -6+(3*2)=0
The oxidation state of phosphate (PO4) is -3. This is because oxygen (O) typically has an oxidation state of -2, so there are 4 oxygen atoms in the phosphate molecule, contributing to a total charge of -8. This leaves the phosphorus atom with an oxidation state of +5 to balance the overall charge to -3.
The oxidation state of F in HOF (hydrogen monofluoride) is -1. Hydrogen is typically assigned an oxidation state of +1, leaving the fluorine with an oxidation state of -1.
Oxidation state of Oxygen in:Peroxides is -1Superoxides is - 1/2
Oxygen usually has an oxidation state of -2.
The oxidation state of oxygen in the compound is -2.
The oxidation state for oxygen in the oxide ion (O2-) is -2. Oxygen typically has an oxidation state of -2 in most of its compounds.
As with any element, the oxidation state of oxygen is 0 in its elemental form.
In this ion the oxidation state of sulfur is 6+ and the oxidation state of each oxygen is 2-
The oxidation state of oxygen in the hydroxide ion (OH-) is -2.
The oxidation state of oxygen in O2PtF6 is zero. In a molecule of O2, the oxidation state of each oxygen atom is -2. Additionally, the compound PtF6 has a +6 charge, so the two oxygen atoms in O2PtF6 must have an oxidation state of zero to balance the overall charge of the compound.
Well, well, well, look who's curious about some chemistry! The oxidation state of oxygen in the OCl- compound is -1. Oxygen usually has an oxidation state of -2, but in this case, it's -1 because chlorine is more electronegative and steals some of oxygen's electrons. So, there you have it - oxygen in OCl- has an oxidation state of -1.
For the hydrogen atoms the oxidation state is 1+, for the oxygen it is 2-
The oxidation state of Mo in MoO4 is +6. This is because each oxygen atom has an oxidation state of -2, and since there are four oxygen atoms in the compound, the total oxidation state contributed by oxygen is -8. In order to balance the charge of the compound, the oxidation state of Mo must be +6.