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CCEA A-Level Chemistry

A-Level · CCEAChemistry1465 cards

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Flashcards for CCEA GCE Chemistry (2016, subject code 1110), split into the four examined units, AS 1, AS 2, A2 1 and A2 2, and the two practical units, then by topic in the specification's numbering. Practical units cover the examinable practical knowledge: methods, observations and safety. Delete or suspend any subdeck your course leaves out once the deck is yours.

Adding it gives you your own copy, with every subdeck below. Each card then comes back just before you would forget it, and every one you get right or wrong counts towards your mastery of its topic. You can delete or suspend the parts you are not studying once it is yours.

What is inside (61 subdecks)

  • A2 1 Further Physical and Organic Chemistry284 cards
    • 4.1 Lattice enthalpy20 cards
    • 4.2 Enthalpy, entropy and free energy21 cards
    • 4.3 Rates of reaction35 cards
    • 4.4 Equilibrium20 cards
    • 4.5 Acid-base equilibria41 cards
    • 4.6 Isomerism28 cards
    • 4.7 Aldehydes and ketones38 cards
    • 4.8 Carboxylic acids25 cards
    • 4.9 Derivatives of carboxylic acids23 cards
    • 4.10 Aromatic chemistry33 cards
  • A2 2 Analytical, Transition Metals, Electrochemistry and Organic Nitrogen Chemistry310 cards
    • 5.1 Mass spectrometry22 cards
    • 5.2 Nuclear magnetic resonance spectroscopy27 cards
    • 5.3 Volumetric analysis21 cards
    • 5.4 Chromatography22 cards
    • 5.5 Transition metals82 cards
      • Colours and hydroxide tests27 cards
      • Definitions and complexes37 cards
      • Vanadium, redox and catalysis18 cards
    • 5.6 Electrode potentials26 cards
    • 5.7 Amines24 cards
    • 5.8 Amides20 cards
    • 5.9 Amino acids, proteins and enzymes24 cards
    • 5.10 Polymer chemistry21 cards
    • 5.11 Chemistry in medicine21 cards
  • A2 3 Further Practical Chemistry78 cards
    • 1. Rates, buffers and titration curves19 cards
    • 2. Carbonyl compounds, carboxylic acids and esters27 cards
    • 3. Volumetric analysis11 cards
    • 4. Chromatography6 cards
    • 5. Transition metals and complex ions15 cards
  • AS 1 Basic Concepts in Physical and Inorganic Chemistry394 cards
    • 1.1 Formulae, equations and amounts of substance59 cards
    • 1.2 Atomic structure71 cards
    • 1.3 Bonding33 cards
    • 1.4 Intermolecular forces22 cards
    • 1.5 Structure25 cards
    • 1.6 Shapes of molecules and ions26 cards
    • 1.7 Redox36 cards
    • 1.8 Halogens42 cards
    • 1.9 Acid-base titrations44 cards
    • 1.10 Qualitative tests36 cards
  • AS 2 Further Physical and Inorganic Chemistry and an Introduction to Organic Chemistry325 cards
    • 2.1 Formulae and amounts of substance23 cards
    • 2.2 Nomenclature and isomerism in organic compounds32 cards
    • 2.3 Alkanes32 cards
    • 2.4 Alkenes33 cards
    • 2.5 Halogenoalkanes38 cards
    • 2.6 Alcohols26 cards
    • 2.7 Infrared spectroscopy23 cards
    • 2.8 Energetics34 cards
    • 2.9 Kinetics25 cards
    • 2.10 Equilibrium34 cards
    • 2.11 Group II elements and their compounds25 cards
  • AS 3 Basic Practical Chemistry74 cards
    • 1. Hydrated salts, polarity, conductivity and solubility17 cards
    • 2. Halogens, halides and qualitative tests8 cards
    • 3. Titration and standard solutions12 cards
    • 4. Organic preparations and tests23 cards
    • 5. Energetics and Group II metals14 cards

Some of its cards

  • How do ethylenediamine, ammonia and phenylamine compare as ligands in replacing water on copper(II)?
    Ethylenediamine replaces water most readily, then ammonia, and phenylamine least
  • Why can primary amines have higher boiling points than alkanes of similar mass?
    They form hydrogen bonds between N-H groups and the nitrogen lone pair
  • Why do boiling points of halogenoalkanes increase from chloro- to iodo-?
    The molecules get larger with more electrons, so van der Waals' forces increase
  • How is paper chromatography carried out?
    Spot the mixture on a pencil baseline, stand the paper in a shallow solvent, and let it rise until near the top
  • What is the stationary phase in paper chromatography?
    Water held in the cellulose fibres of the paper
  • What is done with the volumetric flask when preparing a standard solution?
    The solid is dissolved in a beaker, transferred with washings, and made up to the mark
  • In the Brønsted-Lowry theory an acid is a [...] and a base is a proton acceptor.
    In the Brønsted-Lowry theory an acid is a proton donor and a base is a proton acceptor.
  • How is a reactivity order of the halogens produced?
    Add each halogen solution to solutions of the other halide ions and record any colour change
  • The standard electrode potential of a half-cell is the emf of that half-cell connected to a [...] under standard conditions.
    The standard electrode potential of a half-cell is the emf of that half-cell connected to a standard hydrogen electrode under standard conditions.
  • Describe the shape of the benzene molecule.
    Planar hexagon, with bond angles of 120 degrees

And 1455 more once you add the deck.