The quantity of antimony in a sample can be determined by an oxidation-reduction titration with an oxidizing agent. A 5.95 g sample of stibnite, an ore of antimony, is dissolved in hot, concentrated HCl(aq) and passed over a reducing agent so that all the antimony is in the form Sb³*(aq). The Sb³+(aq) is completely oxidized by 25.0 mL of a 0.135 M aqueous solution of KBrO,(aq). The unbalanced equation for the reaction is BrO, (aq) + Sb³+(aq) Br¯(aq) + Sb³+(aq) (unbalanced) Calculate the amount of antimony in the sample and its percentage in the ore.

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The quantity of antimony in a sample can be determined by an oxidation-reduction titration with an oxidizing agent. A
5.95 g sample of stibnite, an ore of antimony, is dissolved in hot, concentrated HCl(aq) and passed over a reducing agent
+(aq) is completely oxidized by 25.0 mL of a 0.135 M aqueous
so that all the antimony is in the form Sb³+(aq). The Sb³
solution of KBrO,(aq). The unbalanced equation for the reaction is
BrO, (aq) + Sb³+(aq)
Br (aq) + Sb*(aq) (unbalanced)
Calculate the amount of antimony in the sample and its percentage in the ore.
mass of antimony:
percentage of antimony:
%
50
Transcribed Image Text:The quantity of antimony in a sample can be determined by an oxidation-reduction titration with an oxidizing agent. A 5.95 g sample of stibnite, an ore of antimony, is dissolved in hot, concentrated HCl(aq) and passed over a reducing agent +(aq) is completely oxidized by 25.0 mL of a 0.135 M aqueous so that all the antimony is in the form Sb³+(aq). The Sb³ solution of KBrO,(aq). The unbalanced equation for the reaction is BrO, (aq) + Sb³+(aq) Br (aq) + Sb*(aq) (unbalanced) Calculate the amount of antimony in the sample and its percentage in the ore. mass of antimony: percentage of antimony: % 50
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