Gram-Atomic Mass
and Gram-Molecular Mass
Historically, the terms gram-atomic mass (or gram-atom),
gram-molecular mass (or gram-mole), and gram-ionic mass (or gram-ion), were
used to represent the mass of one Avogadro’s number of atom, molecule or ion
respectively.
These terms are no longer used.
The term which is used for representing one Avogadro‘s number of
chemical units, now-a-days is called a mole. Thus, for any substance, the practical unit
presently used for describing the atomic and molecular masses is mole.
Gram-Atomic mass
The gram atomic mass is defined as
“the number of grams of an
element numerically equal to its relative atomic mass is termed as the
gram-atomic mass of that element.”
For example, the relative atomic mass of hydrogen is 1.008. So,
the gram-atomic mass of hydrogen is 1.008 g.
In terms of the mole concept, the gram-atomic mass of an element
is equal to mass (in grams) of 6.02 × 1023 atoms of that element.
The number 6.02 × 1023 is termed as the Avogadro’s number. So, the
gram-atomic mass of an element is equal to mass (in gram units) of the
Avogadro’s number of atoms of the element.
1
gram-atomic mass = 1 gram-atom = Mass of 6.02 × 1023 atoms of the
substance
Gram-Molecular mass
The gram molecular mass is defined as,
“the
number of grams of a substance numerically equal to its relative molecular mass
is termed as the gram-molecular mass of that element.”
For example, the relative molecular mass of hydrogen is 2.016.
So, the gram-molecular mass of hydrogen is 2.016 g.
In terms of the mole concept, the gram-molecular mass of a
substance is equal to the mass (in gram units) of 6.02 × 1023
molecules of that substance. The number 6.02 × 1023 is termed as the
Avogadro’s number. So, the gram-molecular mass of a substance is equal to the
mass (in gram units) of the Avogadro’s number of molecules of that substance.
1 gram-molecular mass = 1
gram-mole
= Mass of 6.02 × 1023
molecules of the substance
Gram-Ion mass
In terms of the mole concept, the gram-ion mass of an ion is
equal to the mass (in gram units) of 6.02 × 1023 ions of that type.
Since the number 6.02 × 1023 is termed as the Avogadro’s number of
that ion,
1
gram-ionic mass = 1 gram-ion = Mass of 6.02 × 1023 ions
= Mass of
Avogadro’s number of that ion