NaClO3
First, calculate the moles of each reactant. Next, determine which reactant is the limiting reactant by comparing the moles of each reactant to the stoichiometry of the balanced chemical equation. The reactant that produces the least amount of product based on stoichiometry is the limiting reactant.
A reversible reaction. In a reversible reaction, the products can react with each other to reform the original reactants. This type of reaction can proceed in both the forward and reverse directions.
No, an element does not react with itself.
This is a spontaneous reaction.
When an acid and base combine, they participate in a neutralization reaction forming water and a salt.
First, calculate the moles of each reactant. Next, determine which reactant is the limiting reactant by comparing the moles of each reactant to the stoichiometry of the balanced chemical equation. The reactant that produces the least amount of product based on stoichiometry is the limiting reactant.
When 2AgClO3 and Na2CO3 react, they will form Ag2CO3 and NaClO3 as products.
The reaction is called a neutralization reaction, where an acid and a base react to form salt and water.
The noun forms of the verb to react are reactor, reaction, and the gerund, reacting,
Neon does not react with water. It doesn't react with anything.
When an acid and a base or an alkali react they form corresponding salt and water.
provoke to action or reaction / to keep irritating or annoying somebody something until they react: Goaded past he limit she turned on him and hit out. He finally goaded her into saying yes.
The noun form of the verb "react" is "reaction." In grammar, a noun is a word that represents a person, place, thing, or idea. When we talk about the response or behavior resulting from a stimulus or situation, we use the word "reaction" to denote that concept.
The reaction is called neutralization.
Any reaction.
reaction
A reversible reaction. In a reversible reaction, the products can react with each other to reform the original reactants. This type of reaction can proceed in both the forward and reverse directions.