2KClO3 --> 2KCl + 3O2
The chemical formula (not equation) is KClO3
An example of a binary compound is potassium chloride, which is composed of only potassium and chlorine ions. The other compounds listed, potassium chlorate, ammonium chloride, and ammonium chlorate, are not binary compounds as they contain more than two different elements.
You do NOT produce oxygen from potassium chloride(KCl), There are no oxygen atoms present in the chloride, so you cannot produce oxygen. However, potassium chlorate (KClO3), Note the spelling and the chemical formula, Oxygen can be produced as the potassium chlorate decomposes to liberate oxygen.
The balanced equation for the decomposition of potassium chlorate is: 2KClO3 (s) → 2KCl (s) + 3O2 (g)
To determine the grams of potassium chloride formed, you first need to calculate the moles of oxygen produced by the decomposition of potassium chlorate. Then, use the stoichiometry of the balanced chemical equation to convert moles of oxygen to moles of potassium chloride. Finally, from the molar mass of potassium chloride, you can calculate the grams formed.
The chemical formula (not equation) is KClO3
The balanced equation for this reaction is: 2 KClO3 -> KClO4 + KCl
It is impossible to balance that equation.
An example of a binary compound is potassium chloride, which is composed of only potassium and chlorine ions. The other compounds listed, potassium chlorate, ammonium chloride, and ammonium chlorate, are not binary compounds as they contain more than two different elements.
You do NOT produce oxygen from potassium chloride(KCl), There are no oxygen atoms present in the chloride, so you cannot produce oxygen. However, potassium chlorate (KClO3), Note the spelling and the chemical formula, Oxygen can be produced as the potassium chlorate decomposes to liberate oxygen.
The balanced equation for the decomposition of potassium chlorate is: 2KClO3 (s) → 2KCl (s) + 3O2 (g)
To determine the grams of potassium chloride formed, you first need to calculate the moles of oxygen produced by the decomposition of potassium chlorate. Then, use the stoichiometry of the balanced chemical equation to convert moles of oxygen to moles of potassium chloride. Finally, from the molar mass of potassium chloride, you can calculate the grams formed.
This reaction is:2 KClO3 = 3 O2 + 2 KCl
No, KClO3 is not the same as potassium chloride. KClO3 is potassium chlorate, a compound that contains potassium, chlorine, and oxygen. Potassium chloride, on the other hand, is a compound that contains only potassium and chlorine.
we can know that potassium chlorate is very poisonous.
Potassium chlorate can be decomposed into potassium chloride and oxygen gas by heating it to high temperatures. This process is typically carried out in a laboratory setting using a test tube or other heat-resistant container. The balanced chemical equation for this decomposition reaction is: 2KClO3 -> 2KCl + 3O2.
Potassium chloride is melted at 770 oC.