METAL OXIDES
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Diagram showing the Apparatus needed to find the Formulae of a Metal Oxide
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METHOD:
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WORKING OUT EMPIRICAL FORMULA / FORMULAE:
Mass of Metal: Subtract mass of crucible from Metal and mass of empty crucible
Mass of Oxygen: Subtract mass of Metal used from the mass of Magnesium Oxide
STEP 1 - Divide each of the Two Masses by the Relative Atomic Masses of Elements
STEP 2 - Simplify the Ratio
Metal Oxygen
Mass x y
Mole x / Mr y / Mr
= a = b
Ratio a : b
STEP 3 - Represent the Ratio into the ‘ Metal O ‘ E.g, MgO
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WATER AND SALTS CONTAINING WATER OF CRYSTALLISATION
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Diagram showing the Apparatus Needed to find the Formulae of Crystals
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METHOD:
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WORKING OUT EMPIRICAL FORMULA / FORMULAE:
Mass of White Anhydrous Salt: Measure mass of White Anhydrous Salt remaining (salt with no water)
Mass of Water: Subtract mass of White Anhydrous Salt remaining from the mass of known Hydrated Salt
STEP 1 - Divide Each of the Two Masses by the Relative Atomic Masses of Elements
STEP 2 - Simplify the Ratio of Water to Anhydrous Salt
Anhydrous Salt Water
Mass a b
Mole a / Mr b / Mr
= y = x
Ratio 1 : x
STEP 3 - Represent the Ratio into ‘ Salt.xH2O ’
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Why is this the same as 1.31 understand how the formulae of simple compounds can be obtained experimentally,
ReplyDeleteincluding metal oxides, water and salts containing water of crystallisation
yh idk either
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