0,044 moles of NH3 can be produced.
To calculate the molarity of a solution, you first need to find the number of moles of the solute. In this case, the molar mass of CuSO4 · 5H2O is 249.68 g/mol. So, 75 g is equal to 0.3 moles (75g / 249.68 g/mol). Next, divide the moles of the solute by the volume of the solution in liters to get the molarity. In this case, the molarity is 0.3 moles / 1.0 L = 0.3 M.
It means that 100mL of solution has 75g of solute dissolved in it.
To teach you how to do this problem: 1. Look at the Periodic Table. O =16 grams/mole, H =1.01 grams/mole 2. Calculate the Molecular Weight of Water. 1*O + 2*H: 16+2.02=18.02g/mole 3. Divide the mass of what you have by the Molecular Weight: 35.1g H2O/(18.02 g H2O/mole H2O) 4. The units g H2O cancel leaving you with mole H2O. 5. 35.1 grams H2O= 1.95 moles H2O
2•10^2
The density of sea water is typically around 1.025 g/mL. To calculate the density of this particular sample, divide the mass (75g) by the volume (50mL): 75g / 50mL = 1.5 g/mL.
0.4469mol in 75g
75g is 75g
The number of stones in 75g would depend on the average weight of a stone. However, to give you an estimate, an average stone weighs around 5g. So, approximately, 75g would be equivalent to 15 stones.
is 75g of 1kg
753
That is 2.646 ounces
That is about 0.4 cups.
To calculate the molarity of a solution, you first need to find the number of moles of the solute. In this case, the molar mass of CuSO4 · 5H2O is 249.68 g/mol. So, 75 g is equal to 0.3 moles (75g / 249.68 g/mol). Next, divide the moles of the solute by the volume of the solution in liters to get the molarity. In this case, the molarity is 0.3 moles / 1.0 L = 0.3 M.
One cup.
about 1/3 cup
That is approximately 5 tbsp
75g = 2.65oz