Matter is not created nor destroyed in chemical reactions, the total mass and number of atoms before the reaction equals the total number of atoms and mass after the reaction. Conservation of mass law.
In the balanced chemical equation for the reaction of carbon (C) with oxygen (O2) to form carbon dioxide (CO2), one molecule of carbon reacts with one molecule of O2 to form one molecule of CO2. Therefore, to form 14 molecules of CO2, 14 molecules of O2 will react with 14 molecules of carbon, containing a total of 14 carbon atoms.
Me2CCl2 does not react with water because it is a stable compound with strong carbon-chlorine bonds that are not easily broken by water. Additionally, the carbon atoms in the compound are not electrophilic enough to undergo nucleophilic attack by water molecules.
4.5*10^23
2C + O2 represents the chemical reaction where 2 carbon atoms react with oxygen molecules to form carbon dioxide (CO2). This reaction results in the complete oxidation of carbon to produce carbon dioxide.
When ozone react with UV, oxygen is formed. Nascent oxygen is also formed with it.
With the chemical equation given, each molecule of carbon dioxide contains 1 carbon atom. Therefore, 14 molecules of carbon dioxide will require 14 carbon atoms to react with the 14 molecules of oxygen.
In the balanced chemical equation for the reaction of carbon (C) with oxygen (O2) to form carbon dioxide (CO2), one molecule of carbon reacts with one molecule of O2 to form one molecule of CO2. Therefore, to form 14 molecules of CO2, 14 molecules of O2 will react with 14 molecules of carbon, containing a total of 14 carbon atoms.
Me2CCl2 does not react with water because it is a stable compound with strong carbon-chlorine bonds that are not easily broken by water. Additionally, the carbon atoms in the compound are not electrophilic enough to undergo nucleophilic attack by water molecules.
4.5*10^23
2C + O2 represents the chemical reaction where 2 carbon atoms react with oxygen molecules to form carbon dioxide (CO2). This reaction results in the complete oxidation of carbon to produce carbon dioxide.
Because carbon has four electrons in its outer energy level, it can readily form covalent bonds with other atoms, allowing it to form a wide variety of compounds. This ability to form diverse bonds is the basis for the vast array of organic molecules found in living organisms.
When ozone react with UV, oxygen is formed. Nascent oxygen is also formed with it.
Two molecules of ammonia contain 6 hydrogen atoms.
The product of this reaction is 2 water molecules (H2O).
Graphite does not react with oxygen at room temperature because graphite has a stable structure of carbon atoms bonded to each other in layers, which makes it highly resistant to chemical reactions. The strong carbon-carbon bonds in graphite make it difficult for oxygen to break into the structure and react with the carbon atoms.
If all the magnesium atoms are going to react, they will each need to combine with two oxygen atoms to form magnesium oxide. Therefore, for 100 magnesium atoms, you would need 200 oxygen atoms, which is equivalent to 100 oxygen molecules.
Two atoms of sodium are required to react with one molecule of Br2 to form sodium bromide. Therefore, to completely react with 5 molecules of Br2, you would need 10 atoms of sodium.