15.99 g/mol
The atomic mass of oxygen (O) is approximately 16 atomic mass units.
Yes, nitrous oxide (N₂O) is heavier than molecular oxygen (O₂). The molar mass of N₂O is approximately 44 g/mol, while the molar mass of O₂ is about 32 g/mol. This difference in molar mass indicates that N₂O is denser than O₂.
the element that has an atomic mass of 16.00 is sulfer.
To find the mass of 3.25 moles of O₂, first determine the molar mass of O₂, which is approximately 32 grams per mole (16 g/mol for each oxygen atom). Multiply the number of moles by the molar mass: 3.25 moles × 32 g/mol = 104 grams. Therefore, the mass of 3.25 moles of O₂ is 104 grams.
The formula mass of H2SO4 (Sulfuric acid) is calculated by adding up the atomic masses of each element in the compound. For H2SO4, it is 2 atoms of hydrogen (H), 1 atom of sulfur (S), and 4 atoms of oxygen (O). The atomic masses of H, S, and O are 1, 32.06, and 16, respectively. Therefore, the formula mass of H2SO4 = (21) + 32.06 + (416) = 98.08 grams/mol.
The atomic mass of oxygen (O) is approximately 16 atomic mass units.
FeO is 50 mole % Fe and 50 mole % O FeO is 77.73 mass % Fe and 22.27 mass % O mass fraction X = molar mass X / (total molar mass of compound) mass % Fe = [atomic mass Fe] / ([atomic mass Fe] + [atomic mass O])
88.5%
Yes, nitrous oxide (N₂O) is heavier than molecular oxygen (O₂). The molar mass of N₂O is approximately 44 g/mol, while the molar mass of O₂ is about 32 g/mol. This difference in molar mass indicates that N₂O is denser than O₂.
The molar mass of Mg O = 40.3044 g/mol
Fidelis O. Eke has written: 'Dynamics of variable mass systems' -- subject(s): Dynamic characteristics, Losses, Mass, Systems stability, Variable mass systems
0.515 moles
L O v E
2,500 lbs
Mass O Kist
O. David Sparkman has written: 'Gas chromatography and mass spectrometry' -- subject(s): Gas chromatography, Mass spectrometry
the element that has an atomic mass of 16.00 is sulfer.