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When you write out the number of products, you can see that the equation isn’t balanced, because there are different amounts of each atom on the reactant side and the product side.
Bess Ruff is a Ph D student of Geography in Florida.
She received her MA in Environmental Science and Management from Bren School of Environmental Science & Management, UC Santa Barbara in 2016.
On the reactant side, we have one atom of iron and two atoms of oxygen.
On the product side, we have two atoms of iron and three atoms of oxygen.
A balanced chemical equation has the correct number of reactants and products to satisfy the Law of Conservation of Mass.
In this article, we’ll talk about what a chemical equation is, how to balance chemical equations, and give you some examples to aid in your balancing chemical equations practice.Simply put, a chemical equation tells you what’s happening in a chemical reaction.Here’s what a chemical equation looks like: Fe O2 → Fe2O3 On the left side of the equation are the reactants.This result proves that increasing the temperature causes the particles move faster.When particles move faster, more collisions occur and the collisions are more violent.The products are the substances that are made as a result of a chemical reaction.In order for a chemical reaction to be correct, it needs to satisfy something called the Law of Conservation of Mass, which states that mass can’t be created or destroyed during a chemical reaction.The law of conservation of mass states that no atoms can be created or destroyed in a chemical reaction, so the number of atoms that are present in the reactants has to balance the number of atoms that are present in the products.Follow this guide to learn how to balance chemical equations differently.That is why the higher temperature increased an experimental reaction rate from 5.63472E-5 M/sec to 0.013475894 M/sec.A chemical equation tells you what happens during a chemical reaction.