Metallurgy - Formula Sheet
Thermodynamic Principles
Gibbs Free Energy Change: \(\Delta G = \Delta H - T\Delta S\)
- \(\Delta G\): Change in standard free energy.
- \(\Delta H\): Change in enthalpy (heat content).
- \(T\): Absolute temperature in Kelvin.
- \(\Delta S\): Change in entropy (randomness).
For a reaction to be spontaneous, \(\Delta G\) must be negative.
Electrochemical Principles
Standard Free Energy and EMF: \(\Delta G^{0} = -nFE^{0}\)
- \(n\): Number of moles of electrons exchanged.
- \(F\): Faraday's constant (\(96485\) \(C\,mol^{-1}\)).
- \(E^{0}\): Standard electrode potential of the cell.
A positive \(E^{0}\) value results in a negative \(\Delta G^{0}\), indicating a spontaneous process.
Specific Metallurgical Formulas
- Bauxite (Aluminum Ore): \(Al_{2}O_{3}.nH_{2}O\)
- Haematite (Iron Ore): \(Fe_{2}O_{3}\)
- Magnetite (Iron Ore): \(Fe_{3}O_{4}\)
- Copper Pyrite: \(CuFeS_{2}\)
- Calamine (Zinc Ore): \(ZnCO_{3}\)
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