#moles = mass/molar mass
mass = #moles*molar mass
mass = .10 moles*(atomic weight of na+atomic weight of N+3(atomic weight of oxygen)
To calculate the amount of NaNO3 needed to prepare a specific volume (in mL) of a molarity (M) solution, you can use the formula: [ \text{mass (g)} = \text{molarity (M)} \times \text{volume (L)} \times \text{molar mass (g/mol)} ] First, convert the volume from mL to L by dividing by 1000. Then, multiply the molarity by the volume in liters and the molar mass of NaNO3 (which is approximately 85 g/mol) to find the required mass in grams.
To convert from kilojoules per mole to joules per gram, you need the molar mass of the substance. Once you have the molar mass, you can convert as follows: 1 kJ/mol = 1000 J/mol 40.79 kJ/mol = 40.79 * 1000 J/mol = 40790 J/mol Then, divide by the molar mass in grams/mol to get joules per gram.
To convert 2 lb mol of C3H8 to grams, you need to first determine the molar mass of C3H8 (propane) which is approximately 44.1 g/mol. Then, you can multiply the number of moles (2 lb mol) by the molar mass to get the mass in grams. So, 2 lb mol of C3H8 is equal to 2 lb mol * 44.1 g/mol = 88.2 g.
First find the molar mass of water using the atomic mass of the elements that make up water (H2O) = (2x1.01g/mol+16g/mol) = 18.02 g/mol. Then we know 1mol water is 18.02g so we multiply 18.02g/mol H20 x 1.5mol H2O to get 27.03g but rounds to 27 because 1.5mols has two significant digits.
To convert moles of CH4 (methane) to grams, you would use the molar mass of CH4, which is approximately 16.04 g/mol. Multiply the number of moles of CH4 by this molar mass to obtain the mass in grams. The formula is: grams of CH4 = moles of CH4 × 16.04 g/mol.
To find the mass in grams of 0.254 mol of sodium nitrate (NaNO3), you would multiply the number of moles by the molar mass of NaNO3. The molar mass of NaNO3 is 85 grams/mol. So, 0.254 mol x 85 g/mol = 21.59 grams of sodium nitrate.
The molar mass of NaNO3 is 85.0 g/mol. Therefore, 1 mole of NaNO3 is equal to 85.0 grams.
To calculate the amount of NaNO3 needed to prepare a specific volume (in mL) of a molarity (M) solution, you can use the formula: [ \text{mass (g)} = \text{molarity (M)} \times \text{volume (L)} \times \text{molar mass (g/mol)} ] First, convert the volume from mL to L by dividing by 1000. Then, multiply the molarity by the volume in liters and the molar mass of NaNO3 (which is approximately 85 g/mol) to find the required mass in grams.
Using atomic weights for Na = 23 and N=14 and O = 16, one arrives at a mass for 1 mole of NaNO3 of23 + 14 + (3x16) = 85 grams/mole
To find the mass of 6.0 moles of sodium nitrate (NaNO3), you first need to calculate the molar mass of NaNO3, which is 85.00 g/mol. Then, you multiply the molar mass by the number of moles: 85.00 g/mol x 6.0 mol = 510.0 g. Therefore, the mass of 6.0 moles of sodium nitrate is 510.0 grams.
To convert moles of lithium to grams, you need to multiply the number of moles by the molar mass of lithium. The molar mass of lithium is 6.94 g/mol. Therefore, 0.0295 mol of lithium is equal to 0.0295 mol * 6.94 g/mol = 0.2053 grams.
The conversion factor to convert daltons (Da) to grams per mole (g/mol) is 1 Da 1.66054 x 10-24 g/mol.
To convert from kilojoules per mole to joules per gram, you need the molar mass of the substance. Once you have the molar mass, you can convert as follows: 1 kJ/mol = 1000 J/mol 40.79 kJ/mol = 40.79 * 1000 J/mol = 40790 J/mol Then, divide by the molar mass in grams/mol to get joules per gram.
To convert Dalton to grams per mole (g/mol), you can use the conversion factor 1 Dalton 1 g/mol. This means that 1 Dalton is equal to 1 gram per mole.
To convert daltons to grams per mole (g/mol), you can use the conversion factor 1 dalton 1 g/mol. This means that 1 dalton is equal to 1 gram per mole.
To convert atomic mass units (amu) to grams per mole (g/mol), you need to multiply the amu value by the molar mass constant, which is approximately 1 g/mol. This will give you the mass of one mole of the substance in grams.
To convert moles to grams, you need to use the molar mass of NaCl. The molar mass of NaCl is approximately 58.44 g/mol. Therefore, 1.6 mol of NaCl would be equal to 1.6 mol * 58.44 g/mol = 93.504 grams of NaCl.