The molarity and molality of the solution are to be calculated if one gram of aluminum nitrate is dissolved in 1 L of water at 20 ° C . The density of water at this temperature is 0.9982 g/cm 3 and the density of the resulting solution is 0.9989 g/cm 3 . Concept Introduction: The number of moles of solute which are dissolved in one kilogram of the solvent is known as molality. It can be determined as: m = mol of solute ( n ) kg of solvent The number of moles present in one liter of solution is known as molarity of the solution. It is calculated as: M = n V Here, M is the molarity, V is the volume of solution in liters, and n is the number of moles of solute. The number of moles of solute is calculated by dividing the mass of solute by the molar mass of the solute as: n = m M w Here, m is the mass of solute and M w is the molar mass of the solute. The term percentage by mass ( % w / w ) shows the weight of solute dissolved in 100 g of solution. The percentage can be calculated as: % = mass of solute mass of solution × 100 Density is determined as: d = m V Here, d is density, m is mass, and V is volume.
The molarity and molality of the solution are to be calculated if one gram of aluminum nitrate is dissolved in 1 L of water at 20 ° C . The density of water at this temperature is 0.9982 g/cm 3 and the density of the resulting solution is 0.9989 g/cm 3 . Concept Introduction: The number of moles of solute which are dissolved in one kilogram of the solvent is known as molality. It can be determined as: m = mol of solute ( n ) kg of solvent The number of moles present in one liter of solution is known as molarity of the solution. It is calculated as: M = n V Here, M is the molarity, V is the volume of solution in liters, and n is the number of moles of solute. The number of moles of solute is calculated by dividing the mass of solute by the molar mass of the solute as: n = m M w Here, m is the mass of solute and M w is the molar mass of the solute. The term percentage by mass ( % w / w ) shows the weight of solute dissolved in 100 g of solution. The percentage can be calculated as: % = mass of solute mass of solution × 100 Density is determined as: d = m V Here, d is density, m is mass, and V is volume.
Solution Summary: The author calculates the molarity and molality of a solution based on aluminum nitrate dissolved in water at 20°C.
The molarity and molality of the solution are to be calculated if one gram of aluminum nitrate is dissolved in 1 L of water at 20°C. The density of water at this temperature is 0.9982g/cm3 and the density of the resulting solution is 0.9989g/cm3.
Concept Introduction:
The number of moles of solute which are dissolved in one kilogram of the solvent is known as molality. It can be determined as:
m=mol of solute(n)kg of solvent
The number of moles present in one liter of solution is known as molarity of the solution. It is calculated as:
M=nV
Here, M is the molarity, V is the volume of solution in liters, and n is the number of moles of solute.
The number of moles of solute is calculated by dividing the mass of solute by the molar mass of the solute as:
n=mMw
Here, m is the mass of solute and Mw is the molar mass of the solute.
The term percentage by mass (%w/w) shows the weight of solute dissolved in 100 g of solution. The percentage can be calculated as:
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell