By definition, one mole would be the same as the Atomic Mass. You take the number of moles and multiply it by the atomic mass. So if you have just 1 mole, the number of grams will be the atomic mass. Holmium's atomic mass is 164.93 grams.
The molar mass of C5H12 is 72 grams/mole.
One mole of ice, which is the same as one mole of water, has a molar mass of approximately 18 grams/mol.
The molar mass of xenon is approximately 131.3 grams per mole. Therefore, one mole of xenon contains 131.3 grams.
One mole of phosphorus, which has a molar mass of about 31 grams per mole, contains 31 grams of naturally occurring phosphorus.
The molecular weight of 1 mole of sulfur is 32 amu or grams.
The molar mass of C5H12 is 72 grams/mole.
One mole of ice, which is the same as one mole of water, has a molar mass of approximately 18 grams/mol.
The molar mass of xenon is approximately 131.3 grams per mole. Therefore, one mole of xenon contains 131.3 grams.
One mole of phosphorus, which has a molar mass of about 31 grams per mole, contains 31 grams of naturally occurring phosphorus.
The molecular weight of 1 mole of sulfur is 32 amu or grams.
The answer is 165,23 grams.
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.
That depends on the substance, and on whether you are considering atoms ore molecules. One mole has as many grams as the atomic or molecular mass of the substance. For example, one mole of atomic hydrogen has 1 gram; one mole of molecular hydrogen has 2 grams, one mole water has 18 grams, etc., since those numbers are the corresponding atomic or molecular masses.
36 grams
The molar mass of zirconium is approximately 91.22 grams per mole.
By definition, one mole would be the same as the atomic mass. You take the number of moles and multiply it by the atomic mass. So if you have just 1 mole, the number of grams will be the atomic mass. Polonium's atomic mass is 209 grams.
One pound-mole (lbmol) of a substance is equal to the molar mass of the substance in grams.