This is the third element Lithium: 6.94 g is the mass of 1 mole Li. The mass in grams of one mole of any element is exactly its atomic mass (in a.m.u.)
The molar mass of an element is the mass of one mole of atoms in that element. It is directly related to the average atomic mass, which is the weighted average of the masses of all isotopes of that element based on their natural abundance. The molar mass is usually very close to the average atomic mass of the element.
The molar mass of an element is the mass of one mole of atoms of that element, typically expressed in grams per mole (g/mol). It is numerically equivalent to the atomic mass of the element, which is found on the periodic table, but is specifically expressed in terms of mass per mole. For example, the molar mass of carbon is approximately 12.01 g/mol.
When isotopes are considered, they have the same atomic number but differed mass numbers.
The atomic mass, in grams, is the mass of one mole of atoms.
The molar mass of an element is the mass of one mole of atoms of that element, measured in grams per mole. It is calculated by summing the atomic masses of the atoms in a chemical formula.
This is the third element Lithium: 6.94 g is the mass of 1 mole Li. The mass in grams of one mole of any element is exactly its atomic mass (in a.m.u.)
The molar mass of an element is the mass of one mole of atoms in that element. It is directly related to the average atomic mass, which is the weighted average of the masses of all isotopes of that element based on their natural abundance. The molar mass is usually very close to the average atomic mass of the element.
6.02 x 1023 atoms of an element is one mole of that element. The mole, based on Avagadro's number, is defined as the number of Carbon atoms that would have a mass of 12 grams. This is a scaling factor related to atomic mass. Krypton has an atomic mass of 83.8, so if a mole of an unknown element is 83.8 grams, then that element is Krypton.
The mole is the atomic weight expressed in grams.
The atomic mass of an element is the average mass of one atom of that element, measured in atomic mass units (amu). This value is also equivalent to the mass of one mole of atoms of that element, expressed in grams per mole (g/mol).
The molar mass of an element is the mass of one mole of atoms of that element, typically expressed in grams per mole (g/mol). It is numerically equivalent to the atomic mass of the element, which is found on the periodic table, but is specifically expressed in terms of mass per mole. For example, the molar mass of carbon is approximately 12.01 g/mol.
The element's average atomic mass.
The atomic mass of the element in atomic mass units
The mass of 1 mole of an element is determined by summing the atomic masses of each atom in the element's chemical formula. This value is typically expressed in grams per mole, referred to as the molar mass. It is based on the relative atomic masses of the isotopes that make up the element.
The atomic weight in grams per mole of an element is the average mass of one mole of atoms of that element, measured in grams.
When isotopes are considered, they have the same atomic number but differed mass numbers.