The oxidation state is +1 for hydrogen and -1 for chlorine.
Hydrogen chloride (HCl) is a covalent compound, where hydrogen typically has an oxidation number of +1 and chlorine has an oxidation number of -1.
In hydrochloric acid (HCl), the oxidation number of hydrogen is +1 and the oxidation number of chlorine is -1.
The oxidation state of chlorine in bleaching powder (CaOCl2) is +1. This is because calcium has an oxidation state of +2 and oxygen has an oxidation state of -2, so the total charge must be balanced by the chlorine with an oxidation state of +1.
The oxidation state of phosphorus (P) in PCl5 is +5. Each chlorine atom has an oxidation state of -1, and since there are 5 chlorine atoms in PCl5, the total charge contributed by chlorine is -5. To balance this, the oxidation state of phosphorus must be +5.
the most common oxidation state of chlorine is -1.
Chlorine typically has an oxidation state of -1 in its most common compounds, such as NaCl (sodium chloride) or HCl (hydrochloric acid). However, it can also have oxidation states of +1, +3, +5, or +7 in certain compounds.
Hydrogen chloride (HCl) is a covalent compound, where hydrogen typically has an oxidation number of +1 and chlorine has an oxidation number of -1.
In hydrochloric acid (HCl), the oxidation number of hydrogen is +1 and the oxidation number of chlorine is -1.
I didn't know there was an element called Ci?? I presume u meant Cl (CL) Chlorine It is 0 if it exist as a free element. (Which means that it is 0 if is not chemically combined to anything) But if it is in a compound, it is usually -1 (minus one) e.g HCl (The oxidation state of Cl in HCl is -1 (negative one) But in ZnCl2 (The oxidation state of Cl is still -1 BUT there is two chlorine atoms inside the compound, so it is -1 x(times/multiply) 2 = which is -2. The oxidation state in ZnCl2 is -2)
The oxidation state of chlorine in bleaching powder (CaOCl2) is +1. This is because calcium has an oxidation state of +2 and oxygen has an oxidation state of -2, so the total charge must be balanced by the chlorine with an oxidation state of +1.
The oxidation state of chlorine in potassium chlorate (KClO3) is +5.
The oxidation state of phosphorus (P) in PCl5 is +5. Each chlorine atom has an oxidation state of -1, and since there are 5 chlorine atoms in PCl5, the total charge contributed by chlorine is -5. To balance this, the oxidation state of phosphorus must be +5.
In the given unbalanced reaction, the chlorine (Cl) from Cl2 is reduced. This is because chlorine goes from an oxidation state of 0 in Cl2 to -1 in HCl. The sulfur (S) in SO2, on the other hand, is oxidized from an oxidation state of +4 to +6 in H2SO4. Thus, Cl is the atom that undergoes reduction in this reaction.
the most common oxidation state of chlorine is -1.
In bleaching powder (calcium hypochlorite), the oxidation state of chlorine is +1.
The central atom in this molecule is chlorine. It is bonded with two oxygen atoms and a hydrogen atoms. The oxidation number of chlorine is +3: four covalent bonds with oxygen yields +4 and the bond with hydrogen yields -1.
The oxidation state of phosphorus in PCl5 is +5. Each chlorine atom contributes an oxidation state of -1, so the sum of the oxidation states in PCl5 equals the overall charge of the molecule, which is 0.