A 1.7483-g sample containing Al(NO:)s, AICI, and inert material was dissolved in acid and divided into two equal portions. One portion was treated with 5.00 mmol of AgNO.. The excess Ag' required 28.89 mL of 0.1002 M KSCN for titration. The other portion required 26.02 mL of 0.1193 M NAOH for titration: Al* +3 OH → Al(OH);(s) Calculate the percentage composition of Al(NO3); and AlICI; in the sample.

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
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A 1.7483-g sample containing Al(NO:)3, AICI, and inert material was dissolved in acid and
divided into two equal portions. One portion was treated with 5.00 mmol of AGNO:. The excess
Ag" required 28.89 mL of 0.1002 M KSCN for titration. The other portion required 26.02 mL of
0.1193 M NaOH for titration:
Al* +3 OH → AI(OH):(s)
Calculate the percentage composition of Al(NO:)s and AICl3s in the sample.
Transcribed Image Text:A 1.7483-g sample containing Al(NO:)3, AICI, and inert material was dissolved in acid and divided into two equal portions. One portion was treated with 5.00 mmol of AGNO:. The excess Ag" required 28.89 mL of 0.1002 M KSCN for titration. The other portion required 26.02 mL of 0.1193 M NaOH for titration: Al* +3 OH → AI(OH):(s) Calculate the percentage composition of Al(NO:)s and AICl3s in the sample.
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