There is no Atomic Mass - sulfate is a polyatomic ion. The molecular mass, however, is 80.1 g/mole.
The atomic mass of a sulfate ion (SO4) is calculated by adding up the atomic masses of its constituent atoms. This includes one sulfur atom (S) with an atomic mass of approximately 32.06 and four oxygen atoms (O) with an atomic mass of around 16.00 each. Therefore, the total atomic mass of a sulfate ion is around 96.06.
The molar mass for MnSO4 (manganese(II) sulfate) is approximately 151.0 g/mol. This value is calculated by adding the atomic masses of one manganese atom (Mn) and one sulfate ion (SO4).
Atomic mass
The atomic mass (or weight) of silver is 107.8682 amu (atomic mass units)
The atomic mass number of aluminum is 27. The atomic mass of aluminum is 26.98115386
The atomic mass of a sulfate ion (SO4) is calculated by adding up the atomic masses of its constituent atoms. This includes one sulfur atom (S) with an atomic mass of approximately 32.06 and four oxygen atoms (O) with an atomic mass of around 16.00 each. Therefore, the total atomic mass of a sulfate ion is around 96.06.
The molecular formula of aluminum sulfate is Al2(SO4)3. To calculate the molecular mass, multiply the atomic mass of each element by the number of atoms present in the formula and then add them up. The molecular mass of aluminum sulfate is 342.15 g/mol.
The anhydrous copper sulfate (CuSO4) has a molar mass of 159,62.
The molar mass for MnSO4 (manganese(II) sulfate) is approximately 151.0 g/mol. This value is calculated by adding the atomic masses of one manganese atom (Mn) and one sulfate ion (SO4).
To calculate the mass of iron (II) sulfate (FeSO4), you would first find the atomic mass of each element (iron, sulfur, and oxygen) using the periodic table. Then, add the atomic masses of each element (Fe + S + 4O) to find the molar mass of FeSO4, which is approximately 151.91 g/mol. Finally, you can then calculate the mass of FeSO4 by multiplying the molar mass by the number of moles.
Probably sulfur, not sulphate. The atomic number of sulfur is 16.
The formula mass of copper (II) sulfate, CuSO4, is calculated by adding the atomic masses of copper (Cu), sulfur (S), and four oxygen atoms (O) in the compound. The atomic masses are approximately: Cu = 63.5, S = 32.1, O = 16. The formula mass of CuSO4 is 63.5 + 32.1 + 4(16) = 159.5 grams/mole.
Tin sulfate is made out of the elements tin, sulfur and oxygen. The mass numbers of tin, oxygen and sulfur are 117, 16 and 32 respectively. Therefore the molecular weight of the empirical formula is 215 g/mol.
The mass of water does not increase when copper sulfate is added to the water, unless the copper sulfate is hydrated. The mass of the mixture of water and copper sulfate, of course, does increase.
The molar mass of aluminum sulfate, Al2(SO4)3, can be calculated by adding together the atomic masses of all the elements in the compound. Aluminum has a molar mass of 26.98 g/mol, sulfur has a molar mass of 32.06 g/mol, and oxygen has a molar mass of 16.00 g/mol. By calculating the total molar mass, the molar mass of aluminum sulfate is found to be approximately 342.14 g/mol.
The formula mass of ZnSO4 (zinc sulfate) is calculated by adding the atomic masses of each element in the compound. The atomic mass of zinc (Zn) is 65.38 g/mol, sulfur (S) is 32.07 g/mol, and oxygen (O) is 16.00 g/mol. Therefore, the formula mass of ZnSO4 is 161.38 g/mol.
Atomic no.=no. of protons Atomic mass=no. of protons+no. of neutrons Hence, atomic mass is greater