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Question: How many moles of sodium bicarbonate, \[NaHC{O_3}\], are in \[508g\], of \[NaHC{O_3}\]?...

How many moles of sodium bicarbonate, NaHCO3NaHC{O_3}, are in 508g508g, of NaHCO3NaHC{O_3}?

Explanation

Solution

Sodium bicarbonate is an inorganic salt of sodium cation and bicarbonate anion. A mole of a compound is the weight of a compound equal to the molar mass of the compound.

Complete step by step answer:
A mole of a substance is the ratio of the amount of the substance and the molar mass of the substance
Moles=amount of substancemolar mass of the substanceMoles = \dfrac{{amount{\text{ }}of{\text{ }}substance}}{{molar{\text{ }}mass{\text{ }}of{\text{ }}the{\text{ }}substance}}
In order to determine the number of moles of any substance we need the molar mass of that particular substance. The molar mass is generally calculated using the atomic mass of individual atoms present in the compound. The molar mass for a compound with molecular formula AxBy{A_x}{B_y} = x ×x{\text{ }} \times atomic mass of AA + y ×y{\text{ }} \times atomic mass of BB. The unit of molar mass is expressed in g/molg/mol.
The given compound is sodium bicarbonate. It is an inorganic compound. It is sparingly soluble in water. The molar mass of sodium carbonate (NaHCO3NaHC{O_3}) = atomic mass of NaNa+ atomic mass of HH+ atomic mass of CC+ 3 ×3{\text{ }} \times atomic mass of OO.
=23+1+12+3×16=84g/mol= 23 + 1 + 12 + 3 \times 16 = 84g/mol.
The given amount of NaHCO3NaHC{O_3} is 508g508g. Thus the moles of sodium bicarbonate is calculated as
Moles=amount of NaHCO3molar mass of NaHCO3Moles = \dfrac{{amount{\text{ }}of{\text{ }}NaHC{O_3}}}{{molar{\text{ }}mass{\text{ }}of{\text{ }}NaHC{O_3}}}
=508g84g/mol= \dfrac{{508g}}{{84g/mol}}
=6.05moles.= 6.05moles. .

Note: The mole concept is necessary for conveniently expressing the amount of a substance. The mole of a substance is equal to the amount of a substance which contains exactly6.023×10236.023 \times {10^{23}} numbers of particles of the substance. The mole of substance gives the information about the amount of substance and also the number of elements present in it.