First convert grams to molesusing molar mass of butane that is 58.1 g
3.50g C4H10 x (1 molC4H10)/(58.1g C4H10) = 0.06024 mol C4H10
Now convert moles to molecules by using Avogadro’s number
0.06024 mol C4H10 x (6.022x10^23 molecules C4H10)/(1 molC4H10) = 3.627x10^22 molecules C4H10
And there are 4 carbon atoms in 1 molecule of butane, so usethe following ratio:
3.627 x 10^22 molecules C4H10 x (4 atoms C)/(1 moleculeC4H10)
= 1.45 x 10^23 atoms of carbon are present
of carbon is present in 3.50 g of butane.
Further Explanation:
Mole is a measure of the amount of substance. It is defined as the mass of a substance that has the same number of fundamental units as there are atoms in 12 g of carbon-12. Such fundamental units can be atoms, molecules or formula units.
Avogadro’s number is the number of units that are present in one mole of the substance. Its value is equal to per mole of substance. These units can be electrons, atoms, molecules or ions.
The formula to calculate the moles of butane is as follows:
......(1)
The given mass of butane is 3.50 g.
The molar mass of butane is 58.12 g/mol.
Substitute these values in equation (1).
The molecules of butane are calculated as follows:
......(2)
The moles of butane is 0.060220234 mol.
The value of Avogadro’s number is .
Substitute these values in equation (2).
One molecule of butane has four carbon atoms. So the number of carbon atoms in of butane is calculated as follows:
.......(3)
Substitute for the molecules of butane in equation (3).
Therefore the number of atoms of carbon is .
Learn more:
1. Calculate the moles of chlorine in 8 moles of carbon tetrachloride: brainly.com/question/3064603
2. Calculate the moles of ions in the solution: brainly.com/question/5950133
Answer details:
Grade: Senior School
Subject: Chemistry
Chapter: Mole concept
Keywords: mole, atoms of carbon, molecules of butane, carbon-12, 12 g, Avogadro’s number, butane, moles of butane, electrons, molecules, atoms.
Answer:
Molar concentration of HCl in this Solution = 0.01 molar
Explanation:
Given pH = 1.37
So Concentration of H⁺ is equal to = 0.042 molar
Volume of HCl solution = 250 ml
Since,
1000 ml solution contain 0.042 mole of HCl
250 ml solution contain = = 0.01 molar
Round off value = 0.01
Molar concentration of HCl in this Solution = 0.01 molar
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