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AQA CHEM4 |
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4.1 - KINETICS |
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Introduction
to kinetics |
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A2.CHEM.4.1.001 |
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Introduction
to orders |
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A2.CHEM.4.1.002 |
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Rate
constant units |
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A2.CHEM.4.1.003 |
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Kinetics
calculations 1 |
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A2.CHEM.4.1.004 |
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Kinetics
calculations 2 |
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A2.CHEM.4.1.005 |
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The
iodine clock reaction |

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AS.CHEM.A24.1A |
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4.2 - EQUILIBRIA |
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Equilibrium
quantities 1 |
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A2.CHEM.4.2.001 |
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Equilibrium quantities 2 |
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A2.CHEM.4.2.002 |
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Kc
calculations |
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A2.CHEM.4.2.003 |
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Kc
for esterification |

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AS.CHEM.A24.2A |
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4.3 - ACIDS |
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Acids
theory |
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PPTAcidstheory |
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pH
curves & indicators |
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PPT.phcurves&indicators |
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Acids
and bases |
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A2.CHEM.4.3.001 |
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Finding
Ka for a weak acid |

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AS.CHEM.A24.3A |
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Plotting
a pH curve |

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AS.CHEM.A24.3B |
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Making
a buffer solution |

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AS.CHEM.A24.3C |
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4.4 - NOMENCLATURE & ISOMERISM |
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Geometric
isomerism |
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PPTGeometricisomerism |
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Optical
isomerism |
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PPTOpticalisomerism |
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Nomenclature |
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A2.CHEM.4.4.001 |
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Isomerism |
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A2.CHEM.4.4.002 |
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4.5 - CARBONYL COMPOUNDS |
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Fats,
oils and soaps |
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PPTGeometricisomerism |
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Acylation
reactions |
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A2.CHEM.4.5.001 |
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Carboxylic
acids and esters |
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A2.CHEM.4.5.002 |
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Making
esters |

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A2.CHEM.A24.5A |
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Identifying
an ester |

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A2.CHEM.A24.5B |
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Making
biodiesel |

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A2.CHEM.A24.5C |
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Acylation
reactions |

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A2.CHEM.A24.5D |
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Making
aspirin |

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A2.CHEM.A24.5E |
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4.6 - AROMATICS |
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Benzene |
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PPT.Benzene |
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Structure
and bonding in benzene |
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A2.CHEM.4.6.001 |
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Naming
aromatic compounds |
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A2.CHEM.4.6.002 |
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4.7 - AMINES |
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Amines |
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PPT.Amines |
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Amines |
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A2.CHEM.4.7.001 |
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4.8 - AMINES |
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Amino
acids & proteins |
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PPT.Aminoacids&proteins |
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Amino
acids & proteins |
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A2.CHEM.4.8.001 |
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4.9 - POLYMERS |
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Polymers |
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PPT.Polymers |
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Polymers |
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A2.CHEM.4.9.001 |
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4.10 - POLYMERS |
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Organic
synthesis |
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A2.CHEM.4.10.001 |
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Organic
synthesis |
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A2.CHEM.4.10.002 |
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4.11 - STRUCTURE DETERMINATION |
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Structure
determination |
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A2.CHEM.4.11.001 |
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AQA CHEM5 |
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5.1 - THERMODYNAMICS |
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Born
Haber cycles |
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PPT.BornHanerCycles |
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AS
Enthalpy changes revision |
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A2.CHEM.5.1.001 |
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Enthalpy
change definitions |
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A2.CHEM.5.1.002 |
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Hess's
law calculations |
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A2.CHEM.5.1.003 |
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Entropy
& free energy calculations |
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A2.CHEM.5.1.004 |
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Sorting
out enthalpy changes |
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A2.CHEM.5.1.010 |
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Hess's
Law 1 |

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A2.CHEM.A25.1A |
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Hess's
Law 2 |

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A2.CHEM.A25.1B |
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Finding
enthalpy and entropy change for water vaporisation |

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A2.CHEM.A25.1C |
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5.2 - PERIODICITY |
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Period
3 trends |
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PPT.Period3trends |
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Reactions
of period 3 elements |
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A2.CHEM.5.2.001 |
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Period
3 oxides + water |
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A2.CHEM.5.2.002 |
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Period
3 oxides - acid/base properties |
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A2.CHEM.5.2.003 |
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5.3 - REDOX |
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Electrode
potentials |
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PPT.Electrodepotentials |
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AS
redox recap |
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A2.CHEM.5.3.001 |
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Electrode
potentials |
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A2.CHEM.5.3.002 |
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Electrode
potentials |
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A2.CHEM.5.3.003 |
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Redox
equilibria problems |
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A2.CHEM.5.3.004 |
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Electrochemical
cells |

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A2.CHEM.AS5.3A |
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Redox
predictions |

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A2.CHEM.AS5.3B |
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5.4/5 - TRANSITION METALS |
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Transition
metals introduction |
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PPT.Transitionmetalsintroduction |
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Complex
ions in solution |
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PPT.Complexionsinsolution |
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Catalysis |
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PPT.Catalysis |
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Transition
metals introduction |
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A2.CHEM.5.45.001 |
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Catalysis |
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A2.CHEM.5.45.002 |
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Reactions
of aqueous metal ions |
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A2.CHEM.5.45.003 |
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Summary
of aqueous metal ion reactions |
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A2.CHEM.5.45.004 |
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Summary
of aqueous metal ion reactions |
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A2.CHEM.5.45.005 |
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Transition
metal questions |
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A2.CHEM.5.45.006 |
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Iron
redox titrations |
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A2.CHEM.5.45.007 |
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Colorimetry |

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A2.CHEM.A25.45B |
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The
chelate effect |

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A2.CHEM.A25.45E |
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Analysis
of zinc supplements |

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A2.CHEM.A25.45F |
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Making
an inorganic complex |

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A2.CHEM.A25.45G |
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Redox
titration |

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A2.CHEM.A25.45H |
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