Advertisements
Advertisements
प्रश्न
Concentrated nitric acid used in laboratory work is 68% nitric acid by mass in aqueous solution. What should be the molarity of such a sample of the acid if the density of the solution is 1.504 g mL−1?
उत्तर
Concentrated nitric acid used in laboratory work is 68% nitric acid by mass in an aqueous solution. This means that 68 g of nitric acid are dissolved in 100 g of the solution.
Molar mass of nitric acid (HNO3) = 1 × 1 + 1 × 14 + 3 × 16 = 63 g mol−1
Then, the number of moles of HNO3 = `68/63` mol
= 1.079 mol
Given,
Density of solution = 1.504 g mL−1
∴ Volume of solution = `(100 "g")/(1.504 "g mL"^(-1))`
= 66.5 mL
= 0.0665 L
Molarity of Solution = `"Number of moles of the solute"/"Volume of solution in L"`
= `1.079/0.0665`
= 16.23 M
APPEARS IN
संबंधित प्रश्न
A solution is obtained by mixing 300 g of 25% solution and 400 g of 40% solution by mass. Calculate the mass percentage of the resulting solution.
If the solubility product of CuS is 6 × 10−16, calculate the maximum molarity of CuS in aqueous solution.
Define Normality.
Molality of a solution relates the ____________.
Molarity of liquid HCl will be if the density of the solution is 1.17 gm/cc.
An X molal solution of a compound in benzene has mole fraction of solute equal to 0.2. The value of X is ____________.
The molarity of the solution containing 7.1 g of Na2SO4 in 100 ml of aqueous solution is ____________.
The molarity of pure water is ____________.
An aqueous solution of glucose is 10% in strength. The volume in which 1 g mole of it is dissolved, will be:
25 ml of a solution of barium hydroxide on titration with a 0.1 molar solution of hydrochloric acid gave a titre value of 35 ml. The molarity of barium hydroxide solution was:
The volume of 4 N HCl and 10 N HCl required to make 1 litre of 6 N HCl are ____________.
Which of the following concentration unit is independent of temperature?
The number of moles of NaCl in 3 litres of 3 M solution is ____________.
Define the following modes of expressing the concentration of a solution. Which of these modes are independent of temperature and why?
(iii) w/V (mass by volume percentage)
Define the following modes of expressing the concentration of a solution. Which of these modes are independent of temperature and why?
M (Molarity)
Match List-I with List-II:
List-I | List-II |
A. ppm | I. molL-¹ |
B. Molarity | II. No units |
C. Molality | III. Independent of temperature |
D. Mole fraction | IV. Very dilute solutions |
Choose the correct answer from the options given below:
138 g ethyl alcohol is mixed with 72 g of water. The ratio of mole fraction of alcohol to water is ______.
4.5 g of compound A (MW = 90) was used to make 250 mL of its aqueous solution. The molarity of the solution in M is x × 10−1. The value of x is ______. (Rounded-off to the nearest integer)