The molar mass of AuCl 3 = 235.41955 g/mol
Molar mass of ammonia = (14.01 + 3.03) (Molar mass of nitrogen + 3 times molar mass of hydrogen, as chemical formula of ammonia is NH3). Molar mass= 17.04 Molar mass x moles = mass 17.04 x 3 = 51.12 Mass of 3 moles of ammonia is 51.12g.
Ozone contains 3 molecules of oxygen. Molar mass of ozone is 48.
The molar mass of lead(III) phosphate (Pb3(PO4)2) can be calculated by adding the molar mass of lead (Pb) and the molar mass of phosphate (PO4) in the compound. The molar mass of Pb is 207.2 g/mol and the molar mass of PO4 is 94.97 g/mol. Therefore, the molar mass of Pb3(PO4)2 is 3(207.2) + 2(94.97) = 611.54 g/mol.
The molar mass of chromic sulfate (Cr2(SO4)3) is approximately 392.15 g/mol.
The molar mass of NH3 is 17.03 g/mol. To find the mass of 3 moles of NH3, you would multiply the molar mass by 3. Therefore, the mass of 3 moles of ammonia would be 51.09 grams.
to find molar mass you add the molar mass of the carbons 3(amu)+ molar mass of the hydrogens 8(amu) to find molar mass you add the molar mass of the carbons 3(amu)+ molar mass of the hydrogens 8(amu)
Molar mass of ammonia = (14.01 + 3.03) (Molar mass of nitrogen + 3 times molar mass of hydrogen, as chemical formula of ammonia is NH3). Molar mass= 17.04 Molar mass x moles = mass 17.04 x 3 = 51.12 Mass of 3 moles of ammonia is 51.12g.
The molar mass of H2Te = 129.61588 g/mol
Ozone contains 3 molecules of oxygen. Molar mass of ozone is 48.
The molar mass of K3PO4 (potassium phosphate) is calculated by adding the atomic masses of all the elements present in the compound. Molar mass of K3PO4 = (3 x molar mass of K) + (1 x molar mass of P) + (4 x molar mass of O) = (3 x 39.10 g/mol) + (1 x 30.97 g/mol) + (4 x 16.00 g/mol) = 212.27 g/mol.
The molar mass of lead(III) phosphate (Pb3(PO4)2) can be calculated by adding the molar mass of lead (Pb) and the molar mass of phosphate (PO4) in the compound. The molar mass of Pb is 207.2 g/mol and the molar mass of PO4 is 94.97 g/mol. Therefore, the molar mass of Pb3(PO4)2 is 3(207.2) + 2(94.97) = 611.54 g/mol.
The molar mass of chromic sulfate (Cr2(SO4)3) is approximately 392.15 g/mol.
The molar mass of Ag NO3 is 169.8731 g/mol
To find the number of moles of Al(CN)3 in 235 g, first calculate the molar mass of Al(CN)3. Aluminum (Al) has a molar mass of approximately 26.98 g/mol, and cyanide (CN) has a molar mass of about 26.02 g/mol, so the molar mass of Al(CN)3 is approximately 26.98 + (3 × 26.02) = 105.04 g/mol. Finally, divide the mass of the compound by its molar mass: 235 g ÷ 105.04 g/mol ≈ 2.24 moles of Al(CN)3.
The molar mass of aluminum acetate (Al(C2H3O2)3) is approximately 204.11 g/mol.
The molar mass of NH3 is 17.03 g/mol. To find the mass of 3 moles of NH3, you would multiply the molar mass by 3. Therefore, the mass of 3 moles of ammonia would be 51.09 grams.
Molar Mass of Carbon + Molar Mass of Silicon = Molar Mass of SiC. 12.0107 + 28.0855 = 40.0962 g / mol.