The oxidation number of phosphorus in ATP is +5. This is because each of the four oxygen atoms in the phosphate groups of ATP carries a charge of -2, and the overall molecule is neutral.
The oxidation number of phosphorus in white phosphorus is 0.
The oxidation number of phosphorus in PL3 is -3. Each hydrogen has an oxidation number of +1, so in order for the overall charge of the compound to be neutral, phosphorus must have an oxidation number of -3.
The oxidation number of calcium (Ca) is +2 and the oxidation number of phosphorus (P) is -3. Therefore, in Ca₃P₂, the oxidation number of calcium is +2 and the oxidation number of phosphorus is -3.
The oxidation number of phosphorus in red phosphorus is 0. This is because in red phosphorus, phosphorus is in its elemental form, and the oxidation number of any element in its elemental form is always 0.
The oxidation number of phosphorus in PH3 is -3.
The oxidation number of phosphorus in white phosphorus is 0.
The oxidation number of phosphorus in PL3 is -3. Each hydrogen has an oxidation number of +1, so in order for the overall charge of the compound to be neutral, phosphorus must have an oxidation number of -3.
The oxidation number of calcium (Ca) is +2 and the oxidation number of phosphorus (P) is -3. Therefore, in Ca₃P₂, the oxidation number of calcium is +2 and the oxidation number of phosphorus is -3.
The oxidation number of phosphorus in red phosphorus is 0. This is because in red phosphorus, phosphorus is in its elemental form, and the oxidation number of any element in its elemental form is always 0.
The oxidation number of phosphorus in PH3 is -3.
The oxidation number of phosphorus (P) in PH3 is -3. This is because hydrogen (H) has an oxidation number of +1, and there are three hydrogen atoms bonded to phosphorus, resulting in a total charge of +3 that is balanced by phosphorus having an oxidation number of -3.
The oxidation number of Phosphorus (P) in H3P2O7 is +5. This can be determined by assigning hydrogen an oxidation number of +1 and oxygen an oxidation number of -2, then setting up an equation to solve for the unknown oxidation number of Phosphorus.
c) Uses ATP to add phosphorus group
Phosphorus increases its oxidation number in this reaction. In H3PO4, phosphorus has an oxidation number of +5, and in K3PO4, it has an oxidation number of +5 as well. This means that phosphorus's oxidation state remains the same throughout the reaction.
The oxidation number of phosphorus in HPO₃²⁻ is +5. The total charge of the ion is -2, and since there are 3 oxygen atoms with a charge of -2 each, the oxidation number of phosphorus must be +5 to balance the charges.
NO!!! Phosphates it is '+5' Phosphides it is '-3'
The oxidation number of phosphorus in P4O6 is +3. This is because oxygen typically has an oxidation number of -2, and the overall charge of P4O6 is zero. Therefore, the four phosphorus atoms must have a combined oxidation number of +12 to balance out the -12 from the six oxygen atoms.