Titanium occurs in the magnetic mineral ilmenite (FeTiO3), which is often found mixed up with sand. The ilmenite can be separated from the sand with magnets. The titanium can then be extracted from the ilmenite by the following set of reactions: FeTiO3(s)+3Cl₂(g) +3C(s)-3CO(g)+FeCl₂ (s) +TiCl, (g) TiCL (9)+2Mg(s)-2MgCl₂(1)+Ti(s) Suppose that an ilmenite-sand mixture contains 23.8 % ilmenite by mass and that the first reaction is carried out with a 90.4% yield. Part A If the second reaction is carried out with an 87.0 % yield, what mass of titanium can be obtained from 1.20 kg of the ilmenite-sand mixture? Express your answer with the appropriate units. 1- μA ? 4

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Chapter13: Electrochemistry
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Titanium occurs in the magnetic mineral ilmenite (FeTiO3), which is
often found mixed up with sand. The ilmenite can be separated from
the sand with magnets. The titanium can then be extracted from the
ilmenite by the following set of reactions:
FeTiO3(s)+3Cl₂(g) +3C(s)-3CO(g)+FeCl₂ (s)+TiCl, (g)
TiCL (9)+2Mg(s)-2MgCl₂(1)+Ti(s)
Suppose that an ilmenite-sand mixture contains 23.8 % ilmenite by
mass and that the first reaction is carried out with a 90.4% yield.
Part A
If the second reaction is carried out with an 87.0 % yield, what mass of titanium can be obtained from 1.20 kg of the ilmenite-sand mixture?
Express your answer with the appropriate units.
1-
μA
?
Transcribed Image Text:Titanium occurs in the magnetic mineral ilmenite (FeTiO3), which is often found mixed up with sand. The ilmenite can be separated from the sand with magnets. The titanium can then be extracted from the ilmenite by the following set of reactions: FeTiO3(s)+3Cl₂(g) +3C(s)-3CO(g)+FeCl₂ (s)+TiCl, (g) TiCL (9)+2Mg(s)-2MgCl₂(1)+Ti(s) Suppose that an ilmenite-sand mixture contains 23.8 % ilmenite by mass and that the first reaction is carried out with a 90.4% yield. Part A If the second reaction is carried out with an 87.0 % yield, what mass of titanium can be obtained from 1.20 kg of the ilmenite-sand mixture? Express your answer with the appropriate units. 1- μA ?
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