Question
Question: Calculate the molecular mass of \(N{{H}_{3}}\),\(C{{O}_{2}}\),\(HCl\) and \(C{{l}_{2}}\)?...
Calculate the molecular mass of NH3,CO2,HCl and Cl2?
Solution
Before answering this question, we should know what is Molecular mass? The molecular mass is the summation of the masses of the atoms or elements that are there in the molecule. It is measured in daltons. Now we can easily find the value of the compounds that are asked in the question.
Complete step by step solution:
How to calculate the molecular mass of the molecule?
We can find it through these steps-
Identify the formula of the compound.
With the help of the formula, find out the number of atoms that are present in each element of the compound.
The atomic weight of each element should be multiplied by the number of atoms of that element.
Follow the same procedure for all the elements in the compound.
Find the total sum of all the values determined in the above step.
Then, using the unit grams/mole, we will be able to determine the molecular mass of the substance.
Now, we have to determine the molecular formula of the given compounds:
NH3
The molecular mass of NH3= Atomic mass of Nitrogen + 3×Atomic mass of Hydrogen
The atomic mass of Nitrogen= 14
The atomic mass of Hydrogen= 1
So, the molecular mass of NH3= 14+3×1
= 17 grams
CO2
The molecular mass ofCO2= Atomic mass of carbon + 2(Atomic mass of oxygen)
The atomic mass of carbon = 12
The atomic mass of oxygen = 16
So, the molecular mass of CO2= 12+2(16)
= 12+32
= 44 grams
HCl
The molecular mass of HCl = Atomic mass of hydrogen + Atomic mass of chlorine
The atomic mass of Hydrogen= 1
The atomic mass of chlorine= 35.5
So, the molecular mass of HCl = 1+35.5
= 36.5 grams
Cl2
The molecular mass of Cl2 = 2×Atomic mass of Cl
= 2×35.5
= 71 grams
Note: The difference between the molar mass and molecular mass is that the mass of a mole of a particular substance is given by the molar mass whereas the mass of a molecule of a particular substance is given by molecular mass. The value of both comes out to be the same but they have different units.