The oxidation number of sulfur in SO2 is +4, while the oxidation number of each oxygen is -2.
The oxidation state for sulfur (S) in SO3 is +6. Each oxygen atom in SO3 has an oxidation state of -2, and since the overall molecule is neutral, the sum of the oxidation states must equal zero. Therefore, sulfur must have an oxidation state of +6 to balance the -6 from the three oxygen atoms.
The oxidation number of S in HSO3- is +4. This is determined by assigning a -1 oxidation state to the hydrogen atom and a -2 oxidation state to the oxygen atoms, which leaves sulfur with a +4 oxidation state to balance the overall charge of -1 for the ion.
The oxidation state of K in K2O2 is +1. In this compound, each K atom has a +1 oxidation state and each O atom has a -1 oxidation state.
The oxidation state of sulfur in SO2Cl2 is +4. In this molecule, each oxygen atom has an oxidation state of -2, each chlorine atom has an oxidation state of -1, and the overall charge of the molecule is 0, which means the oxidation state of sulfur must be +4 to balance the charges.
S = +4 oxidation state O = -2 oxidation state
The oxidation state of sulfur in a thiosulfate ion is + 2.
The oxidation number of sulfur in SO2 is +4, while the oxidation number of each oxygen is -2.
Sulphar has +4 oxidation state.Oxygen has -2 oxidation state.
+6 oxidation state
The oxidation state for sulfur (S) in SO3 is +6. Each oxygen atom in SO3 has an oxidation state of -2, and since the overall molecule is neutral, the sum of the oxidation states must equal zero. Therefore, sulfur must have an oxidation state of +6 to balance the -6 from the three oxygen atoms.
The oxidation state of S in HgS is -2. Since Hg is +2, to make a neutral charge S must be -2.
The oxidation number of S in HSO3- is +4. This is determined by assigning a -1 oxidation state to the hydrogen atom and a -2 oxidation state to the oxygen atoms, which leaves sulfur with a +4 oxidation state to balance the overall charge of -1 for the ion.
In HSO4- sulfur's oxidation state is +5.
The oxidation state of K in K2O2 is +1. In this compound, each K atom has a +1 oxidation state and each O atom has a -1 oxidation state.
S has an oxidation state of +4 in a sulfite anion as stated. In oxyanions, oxygen always has an oxidation state of -2. Therefore, three oxygen atoms will have total oxidation number of -6, requiring an oxidation number of +4 for sulfur to sum to the charge of -2 on the anion as a whole.
The oxidation state of sulfur in SO2Cl2 is +4. In this molecule, each oxygen atom has an oxidation state of -2, each chlorine atom has an oxidation state of -1, and the overall charge of the molecule is 0, which means the oxidation state of sulfur must be +4 to balance the charges.