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.
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.
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 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.
the most common oxidation state of chlorine is -1.
In bleaching powder (calcium hypochlorite), the oxidation state of chlorine is +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.
The formation of chlorine involves the loss of electrons by the chlorine atoms, leading to an increase in their oxidation state. Since oxidation is defined as the loss of electrons or an increase in oxidation state, the formation of chlorine is classified as oxidation.
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.