Chemistry - 9202 OxfordAQA

Molar Concentrations

Overview

A technician hands you two identical bottles. Both hold a colourless liquid, both are labelled dilute hydrochloric acid, and both look exactly the same through the glass. One of them would sting for a second on your skin. The other would ruin your laboratory coat. Nothing you can see, smell or weigh from the outside separates them, because what differs is not what the liquid is made of but how tightly the acid is packed into the water. That quantity has a name, a unit and an equation, and without it a bottle of solution is chemically anonymous.

This lesson gives you the number and the method for measuring it. You will learn why chemists count solutions in moles rather than grams, why a careful worker deliberately throws the first result of an experiment away, and how a single drop from a burette can settle a question that no amount of looking at the bottle ever could. At the end you will meet a shortcut that lets you count the particles in a gas simply by measuring the space they occupy, no balance required.

Objectives

  1. The concentration of a solution is related to the mass of the solute (in terms of number of moles) and the volume of the solution. The concentration of a solution is calculated as follows: Concentration (mol/dm3) = number of moles/volume of solution (in dm3).
  2. The volumes of acid and alkali solutions that react with each other can be measured by titration using a suitable indicator. Students should be able to carry out titrations using strong acids and strong alkalis only (sulfuric, hydrochloric and nitric acids only). Required practical: Establish the concentration of an unknown strong acid through titration with a strong base.
  3. If the concentration of one of the reactants is known, the results of a titration can be used to find the concentration of the other reactant. Students should know how to carry out a titration and be able to calculate the chemical quantities in titrations involving concentrations in mol/dm3 and in g/dm3.
  4. The molar gas volume at room temperature and pressure is assumed to be 24 dm3. Students are expected to be able to calculate the number of moles or the volume of gas in a reaction.

Mind map

This topic is mapped out so you can see how the ideas connect.

Open the mind map in the app

Lesson Note

Picture the end of a titration. A conical flask sits on a white tile, the liquid inside is being swirled, and above it a burette is releasing alkali one drop at a time. For twenty minutes nothing visible has happened. Then a single drop lands, the swirl carries it through, and the whole flask turns pink and stays pink. The person doing the work stops, bends down until their eye is level with the liquid, and writes down a number with two decimal places in it.

Complete Note Available on the Green Bridge App

Get the Green Bridge CBT app on your phone or computer for the complete IGCSE library: past papers, mark schemes, mind maps, flashcards and audio lessons.

Full lesson notes with diagrams
AI-powered learning assistant
Timed mock exams marked the moment you finish
Available on Android, Windows, macOS, and Linux iOS app coming soon

Lesson Evaluation

Congratulations on completing the lesson on Molar Concentrations. Now that youve explored the key concepts and ideas, its time to put your knowledge to the test. This section offers a variety of practice questions designed to reinforce your understanding and help you gauge your grasp of the material.

You will encounter a mix of question types, including multiple-choice questions, short answer questions, and essay questions. Each question is thoughtfully crafted to assess different aspects of your knowledge and critical thinking skills.

Use this evaluation section as an opportunity to reinforce your understanding of the topic and to identify any areas where you may need additional study. Don't be discouraged by any challenges you encounter; instead, view them as opportunities for growth and improvement.

  1. What is 500 cm3 expressed in dm3? A. 0.05 dm3 B. 0.5 dm3 C. 5 dm3 D. 5000 dm3 Answer: B
  2. A solution contains 0.100 mol of solute in 250 cm3 of solution. What is its concentration? A. 0.025 mol/dm3 B. 0.400 mol/dm3 C. 2.50 mol/dm3 D. 25.0 mol/dm3 Answer: B
  3. A solution of sodium hydroxide has a concentration of 0.500 mol/dm3. The relative formula mass of NaOH is 40. What is the concentration in g/dm3? A. 0.0125 g/dm3 B. 8.00 g/dm3 C. 20.0 g/dm3 D. 80.0 g/dm3 Answer: C
  4. What volume is occupied by 2.0 mol of oxygen gas at room temperature and pressure? A. 12 dm3 B. 24 dm3 C. 48 dm3 D. 12 000 dm3 Answer: C
  5. A student records four titres: 25.30 cm3, 24.45 cm3, 24.50 cm3 and 24.40 cm3. What is the correct mean titre? A. 24.40 cm3 B. 24.45 cm3 C. 24.66 cm3 D. 25.30 cm3 Answer: B

Work through these questions in the app

Work through these questions in the app

Practice Mock Questions

Want to practice mock questions on Molar Concentrations? Download the Green Bridge CBT app to access mock questions and full practice assessments for this topic.

Download The App On Google Playstore

Everything you need to excel in your exams

Green Bridge CBT Mobile App
Personalized AI Learning Chat Assistant
200,000+ Exam Questions Across IGCSE, JAMB, WAEC & NECO
Over 3,900 Lesson Notes
Offline Support - Learn Anytime, Anywhere
Green Bridge Timetable
Literature Summaries & Potential Questions
Track Your Performance & Progress
In-depth Explanations for Comprehensive Learning