Home
Class 11
CHEMISTRY
Calculate the molarity of a solution con...

Calculate the molarity of a solution containing 2.3 moles of solute dissolved in 4.6 litres.

A

0.5

B

1

C

1.5

D

2

Text Solution

Verified by Experts

The correct Answer is:
A
Doubtnut Promotions Banner Mobile Dark
|

Topper's Solved these Questions

  • ANNUAL EXAMINATION QUESTION PAPER SOUTH-2019

    SUBHASH PUBLICATION|Exercise PART-C|9 Videos
  • ANNUAL EXAMINATION QUESTION PAPER SOUTH-2019

    SUBHASH PUBLICATION|Exercise PART-D|19 Videos
  • ANNUAL EXAMINATION QUESTION PAPER SOUTH-2019

    SUBHASH PUBLICATION|Exercise PART-E|7 Videos
  • ANNUAL EXAMINATION QUESTION PAPER SOUTH-2018

    SUBHASH PUBLICATION|Exercise PART-E|7 Videos
  • CHEMICAL BONDING AND MOLECULAR STRUCTURE

    SUBHASH PUBLICATION|Exercise THREE MARKS QUESTIONS|28 Videos

Similar Questions

Explore conceptually related problems

Calculate the molarity of a solution containing 5 g of NaOH in 450 mL solution.

The osmotic pressure of a solution containing 0.1 mol of solute per litre at 273 K is

Knowledge Check

  • What volume of 0.8 M solution contains 0.1 mole of solute

    A
    500 ml
    B
    125 ml
    C
    0.125 ml
    D
    100 ml
  • The molarity of a solution containing 5 g of NaOH in 250cm^3 solution is

    A
    0.5
    B
    0.1
    C
    2
    D
    1
  • The normality of a solution containing 60 g of CH_3COOH per litre is

    A
    `1.5 n`
    B
    `2N`
    C
    `0.5N`
    D
    1N
  • Similar Questions

    Explore conceptually related problems

    Calculate the normality of solution containing 3.15 g of hydrated oxalic acid (H_2C_2O_4. 2H_2O) in 250 ml of solution ( Mol. Mass = 126).

    Calculate the molarity of KOH in solution prepared by dissolving 5.6 g in enough water to form 250 mL of the solution.

    Calculate the molarity of KCl solution prepared by dissolving 7.45 g of KCl in 500 mL of the solution. (d_(sol) = 1.2 g mL^(-1))

    100 ml of CCl_4 is added to one litre of an aqueous solution containing 2g of iodine dissolved in it what is the mass of iodine left in the aqueous layer of the distribution coefficient favouring CCl_4 is 85 at 25^@C

    The osmotic pressure of a solution containing 4.0 g of solute (molar mass 246) per litre at 27^@C is (R=0.082 l atm k^(-1) mol^(-1)),