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OCR AS Chemistry

Revision Notes

Home / AS / Chemistry / OCR / Revision Notes / 2. Foundations in Chemistry / 2.3 Acid-base & Redox Reactions / 2.3.1 Acids


2.3.1 Acids


Acids, Bases & Dissociation

Strong acids dissociating 

  • Strong acids will fully dissociate in solution 
  • For example, when hydrogen chloride (HCl) is dissolved in water 100% of the product will be ions. 
    • HCl (aq) → H+ (aq) + Cl- (aq)
    • In this case hydrogen ions are released, H+ (aq) 
    • The same applies with strong bases

Strong bases dissociating

  • Strong bases will fully dissociate in solution
    • NaOH (aq) → Na+ (aq) + OH- (aq)
    • In this case hydroxide ions are released, OH- (aq) 

Weak acids dissociating

  • Weak acids only partially dissociate in solution, only a small percentage of the products will be ions
  • In an equilibrium reaction, the products are formed at the same rate as the reactants are used
  • This means that at equilibrium, both reactants and products are present in the solution
  • For example, ethanoic acid (CH3COOH) is a weak acid that partially dissociates in solution
    • CH3COOH (aq) ⇌ CH3COO- (aq) + H+ (aq)
    • The same applies with weak bases

Weak bases dissociating

  • Weak bases only partially dissociate in solution, only a small percentage of the products will be ions
  • An equilibrium is established containing reactants and products
  • For example, ethylamine (CH3CH2NH2) is a weak base and will partially dissociate in solution and produce hydroxide ions 
    • CH3CH2NH2 (aq) + H2O (l) ⇌ CH3CH2NH3+ (aq) + OH- (aq) 
Examples of acids and bases 

2-3-1-examples-of-acids-and-bases

Neutralisation

  • A neutralisation reaction is one in which an acid (pH <7) and a base/alkali (pH >7) react together to form water (pH = 7) and a salt

Equilibria Neutralisation Reaction, downloadable AS & A Level Chemistry revision notes

  • The proton of the acid reacts with the hydroxide of the base to form water

Equilibria Neutralisation Reaction Ions, downloadable AS & A Level Chemistry revision notes

  • The spectator ions which are not involved in the formation of water, form the salt

Equilibria Neutralisation Reaction of HCl and NaOH, downloadable AS & A Level Chemistry revision notes

The diagram shows a neutralisation reaction of HCl and NaOH and the two individual reactions that take place to form the water and salt

  • The name of the salt produced can be predicted from the acid that has reacted

Acid Reacted & Salt Table

Equilibria Table 1_Neutralisation Reactions, downloadable AS & A Level Chemistry revision notes

Metals and acids

  • The typical reaction of a metal and an acid can be summarized as

acid + metal  →  salt + hydrogen

  • For example:

2HCl (aq) + Zn (s)  → ZnCl2 (aq) +   H2 (g)

hydrochloric acid + zinc →  zinc chloride + hydrogen

  • Clearly, the extent of reaction depends on the reactivity of the metal and the strength of the acid
  • Very reactive metals would react dangerously with acids and these reactions are not usually carried out
  • Metals low in reactivity do not react at all, for instance copper does not react with dilute acids
  • Stronger acids will react more vigorously with metals than weak acids. What signs of reaction would be expected to be different between the two?
    • Faster reaction, seen as
      • more effervescence
      • the metal dissolves faster
      • more exothermic

Metals and oxides

  • The reaction of an acid with a metal oxide forms two products:

acid + metal oxide →  salt + water

  • For example:

2HCl (aq) + CaO (s)     → CaCl2 (aq) + H2O (l)

  hydrochloric acid + calcium oxide →  calcium chloride + water

Metals and hydroxides

  • The reaction with a metal hydroxide and an acid follows the same pattern as an oxide:

acid + metal hydroxide →  salt + water

  • For example

 H2SO4 (aq) + Mg(OH)2 (s)  → MgSO4 (aq)  + 2H2O (l)

 sulfuric acid  + magnesium hydroxide →  magnesium sulfate + water

Metals and carbonates

  • The reaction between a metal carbonate and an acid produces three products:

acid + metal carbonate → salt + water + carbon dioxide

  • For example:

    2HNO3 (aq) + CuCO3 (s)→ Cu(NO3)2 (aq) + H2O (l) + CO2 (g)

nitric acid + copper carbonate → copper nitrate + water + carbon dioxide



  • 1. Development of Practical Skills in Chemistry
    • 1.1 Physical Chemistry Practicals
      • 1.1.1 Moles Determination
        • 1.1.2 Acid-Base Titration
          • 1.1.3 Determination of Enthalpy Changes
            • 1.1.4 Reaction - Magnesium & Hydrochloric Acid
            • 1.2 Organic & Inorganic Practicals
              • 1.2.1 Qualitative Analysis of Ions
                • 1.2.2 Synthesis of a Haloalkane
                  • 1.2.3 Preparation of Cyclohexene
                    • 1.2.4 Oxidation of Ethanol
                  • 2. Foundations in Chemistry
                    • 2.1 Atoms & Reactions
                      • 2.1.1 Atomic Structure & Isotopes
                        • 2.1.2 Atomic Structure & Mass Spectrometry
                          • 2.1.3 Compounds, Formulae & Equations
                          • 2.2 Amount of Substance
                            • 2.2.1 Amount of Substance
                              • 2.2.2 Determining Formulae
                                • 2.2.3 Reaction Calculations
                                  • 2.2.4 The Ideal Gas Equation
                                    • 2.2.5 Percentage Yield & Atom Economy
                                    • 2.3 Acid-base & Redox Reactions
                                      • 2.3.1 Acids
                                        • 2.3.2 Acid-base Titrations
                                          • 2.3.3 Redox
                                          • 2.4 Electrons, Bonding & Structure
                                            • 2.4.1 Electron Structure
                                              • 2.4.2 Ionic Bonding & Structure
                                                • 2.4.3 Covalent Bonding & Structure
                                                • 2.5 The Shapes of Simple Molecules & Ions
                                                  • 2.5.1 The Shapes of Simple Molecules & Ions
                                                    • 2.5.2 Electronegativity & Bond Polarity
                                                      • 2.5.3 Intermolecular Forces
                                                    • 3. Periodic Table & Energy
                                                      • 3.1 Periodicity
                                                        • 3.1.1 Periodicity
                                                          • 3.1.2 Ionisation Energy
                                                            • 3.1.3 Structure & Physical Properties
                                                            • 3.2 Group 2
                                                              • 3.2.1 Group 2 Elements
                                                                • 3.2.2 Group 2 Compounds
                                                                • 3.3 The Halogens
                                                                  • 3.3.1 The Halogens
                                                                    • 3.3.2 Uses of Chlorine
                                                                      • 3.3.3 Qualitative Analysis
                                                                      • 3.4 Enthalpy Changes
                                                                        • 3.4.1 Enthalpy Changes
                                                                          • 3.4.2 Calorimetry
                                                                            • 3.4.3 Bond Enthalpies
                                                                              • 3.4.4 Hess' Law
                                                                              • 3.5 Reaction Rates
                                                                                • 3.5.1 Simple Collision Theory
                                                                                  • 3.5.2 Catalysis
                                                                                    • 3.5.3 The Boltzmann Distribution
                                                                                    • 3.6 Chemical Equilibrium
                                                                                      • 3.6.1 Dynamic Equilibrium
                                                                                        • 3.6.2 Le Chatelier’s Principle
                                                                                          • 3.6.3 The Equilibrium Constant, Kc
                                                                                        • 4. Core Organic Chemistry
                                                                                          • 4.1 Basic Concepts
                                                                                            • 4.1.1 Chemical Names & Formulae
                                                                                              • 4.1.2 Functional Groups
                                                                                                • 4.1.3 Structural Isomerism
                                                                                                  • 4.1.4 Reaction Mechanisms
                                                                                                  • 4.2 Alkanes
                                                                                                    • 4.2.1 Introduction to Alkanes
                                                                                                      • 4.2.2 Reactions of Alkanes
                                                                                                        • 4.2.3 Free Radical Substitution of Alkanes
                                                                                                        • 4.3 Alkenes
                                                                                                          • 4.3.1 Introduction to Alkenes
                                                                                                            • 4.3.2 Stereoisomerism in Alkenes
                                                                                                              • 4.3.3 Addition Reactions of Alkenes
                                                                                                                • 4.3.4 Electrophilic Addition
                                                                                                                  • 4.3.5 Polymers from Alkenes
                                                                                                                  • 4.4 Alcohols
                                                                                                                    • 4.4.1 Properties of Alcohols
                                                                                                                      • 4.4.2 Reactions of Alcohols
                                                                                                                      • 4.5 Haloalkanes
                                                                                                                        • 4.5.1 Reactions of Haloalkanes
                                                                                                                          • 4.5.2 Nucleophilic Substitution of Haloalkanes
                                                                                                                            • 4.5.3 Hydrolysis of Primary Haloalkanes
                                                                                                                              • 4.5.4 Environmental Concerns of Organohalogen Use
                                                                                                                              • 4.6 Organic Synthesis
                                                                                                                                • 4.6.1 Techniques
                                                                                                                                  • 4.6.2 Synthetic Routes
                                                                                                                                  • 4.7 Analytical Techniques
                                                                                                                                    • 4.7.1 Infrared Spectroscopy
                                                                                                                                      • 4.7.2 Mass Spectrometry
                                                                                                                                        • 4.7.3 Combined Techniques


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                                                                                                                                      Author: Philippa



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