Matter cannot be created or destroyed in chemical reactions. This is the law of conservation of mass. In every chemical reaction, the same mass of matter must end up in the products as started in the reactants. Balanced chemical equations show that mass is conserved in chemical reactions.
The answer is <span>572.1235 grams of co2</span>
Answer:
If you heat a gas you give the molecules more energy so they move faster.
Explanation:
Answer:

Explanation:
Hello,
In this case, given the rate of production of C, we can compute the rate of consumption of A by using the rate relationships which include the stoichiometric coefficients at the denominators (-1 for A and 2 for C) as follows:

In such a way, solving the rate of consumption of A, we obtain:

Clearly, such rate is negative which account for consumption process.
Regards.
A chemical formula shows the atoms and their respective quantity in a compound or molecule. The chemical formula CO2 reads as carbon, one atom, oxygen, two atoms. Another example is H2O (water).