According to the Periodic Table, the Atomic Mass of rubidium, Rb is 85.5. This is numerically equal to the molar mass in g/mol. Therefore the mass of 1 mol of Rb is 85.5g.
Mass of 1 mol means the molar mass of the element. Molar mass of Rubidium is 85.47 gmol-1. Rb is in the 1st group.
The atomic mass of rubidium (Rb) is approximately 85.4678 atomic mass units.
the 1st ionization energy is 403.03 kJ/mol.. since it's oxidation state is +1, you don't normally take away more than one electron so the 2nd and 3rd ionization energies are much larger and don't usually matter
To find the mass of 350 mol of bromine, you need to multiply the number of moles by the molar mass of bromine. The molar mass of bromine is approximately 79.9 g/mol. So, 350 mol * 79.9 g/mol = 27965 g. Therefore, the mass of 350 mol of bromine is 27965 grams.
The molecular mass of As2O5 (arsenic pentoxide) is 229.84 g/mol.
Rubidium is a metal element. Atomic mass of it is 85.46.
The atomic mass of rubidium (Rb) is approximately 85.4678 atomic mass units.
The atomic weight of rubidium is approximately 85.47 grams per mole.
The molar mass of sulfur is approximately 32.06 grams/mol. Therefore, 1 mol of sulfur atoms will have a mass of 32.06 grams.
Rubidium is a metal element. Mass number of it is 85.
the 1st ionization energy is 403.03 kJ/mol.. since it's oxidation state is +1, you don't normally take away more than one electron so the 2nd and 3rd ionization energies are much larger and don't usually matter
3.55g
Rubidium Rubidium has atomic mass 85.5.
Mole / Molar mass = mass = 0.118 [mol] /169.87 [g mol−1] = 20.05 grams
15.99 x 2 g
The mass of 0.75 mol of sulfur can be calculated by multiplying the number of moles by the molar mass. Therefore, the mass would be 0.75 mol x 32 g/mol = 24 grams.
To find the mass of 350 mol of bromine, you need to multiply the number of moles by the molar mass of bromine. The molar mass of bromine is approximately 79.9 g/mol. So, 350 mol * 79.9 g/mol = 27965 g. Therefore, the mass of 350 mol of bromine is 27965 grams.
To find the mass of 0.500 mol of dichlorodifluoromethane (CCl2F2), you need to calculate the molar mass of the compound. The molar mass of CCl2F2 is 120.91 g/mol. Therefore, 0.500 mol of CCl2F2 would have a mass of 0.500 mol x 120.91 g/mol = 60.455 g.