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C1.3.3.2 The ion product of water
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C1.5.3.3 Electrochemical corrosion protection
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C1.5.3.4 Chemical corrosion protection
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C3.5.2.3 Conductometric titration using the Electrochemistry demonstration unit
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C4.4.1.2 Determination of migration velocity of permanganate ions
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C4.4.1.3 Determination of specific conductivity
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C4.4.1.4 Electrolytic dissociation: Dependence of conductivity on electrolyte concentration
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C4.4.1.5 Conductivity of solids
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C4.4.1.6 Temperature-dependency of the conductivity of solids
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C4.4.1.7 Conductivity of aqueous solutions
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C4.4.1.8 Conductivity of melts
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C4.4.3.1p The electrochemical series
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C4.4.3.2p Standard potentials of metals
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C4.4.3.3 Standard potentials of non-metals
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C4.4.3.4 Concentration potentials (Nernst equation)
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C4.4.3.5 Temperature dependency of the potential (Nernst equation)
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C4.4.4.1a The Daniell cell
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C4.4.4.2a The Leclanché cell
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C4.4.4.4 Influence of electrolyte concentration on the Daniell element
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C4.4.4.5 Influence of the electrode gap on the Daniell element
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C4.4.4.6 Serial and parallel connection of elements
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C4.4.4.7a Recording characteristics of a Daniell element with the electrochemistry demonstration unit
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C4.4.4.8 Edison accumulator
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C4.4.5.1p Electrolytic polarisation
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C4.4.5.3 The Faraday laws
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C4.4.6.2 The Eloxal process
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C4.4.7.3 The alkaline fuel cell/The detonating gas cell
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C5.1.1.3 Chlorine-alkali electrolysis
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C5.1.2.3 Copper refining
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