To synthesize titanium (IV) chloride, the reaction below is used. a TIO2(s) + b C(s) + c Cl2(g) → d TiCl4(g) + e CO2(g) + f CO(g) If 35.0 g of TiO2, 45.0 g of Cl2, and 11.0 g of C were used in the preparation, what stoichiometric ratio should be used to solve for the amount of TİCI4? Hint: Express the ratio as a decimal in two decimal places. For example, 2 mol product - 0.67. 3 mol reactant

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
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To synthesize titanium (IV)
chloride, the reaction below is
used.
a TIO2(s) + b C(s) + c Cl2(g) → d
TiCl4(g) + e CO2(g) + f CO(g)
If 35.0 g of TiO2, 45.0 g of Cl2,
and 11.0 g of C were used in
the preparation, what
stoichiometric ratio should be
used to solve for the amount of
TiClą?
Hint: Express the ratio as a
decimal in two decimal places.
For example,
2 mol product
0.67.
3 mol reactant
Transcribed Image Text:To synthesize titanium (IV) chloride, the reaction below is used. a TIO2(s) + b C(s) + c Cl2(g) → d TiCl4(g) + e CO2(g) + f CO(g) If 35.0 g of TiO2, 45.0 g of Cl2, and 11.0 g of C were used in the preparation, what stoichiometric ratio should be used to solve for the amount of TiClą? Hint: Express the ratio as a decimal in two decimal places. For example, 2 mol product 0.67. 3 mol reactant
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