The molarity of iodine in solution can be determined by titration with arsenious acid, H 3 AsO 4 . The unbalanced equation for the reaction is H 3 AsO 3 ( a q ) + I 2 ( a q ) + H 2 O → 2 I − ( a q ) + H 3 AsO 4 ( a q ) + 2 H + ( a q ) A 243-mL solution of aqueous iodine is prepared by dissolving iodine crystals in water. A fifty-mL portion of the solution requires 15.42 mL of 0.134 M H 3 AsO 3 for complete reaction. What is the molarity of the solution? How many grams of iodine were added to the solution?
The molarity of iodine in solution can be determined by titration with arsenious acid, H 3 AsO 4 . The unbalanced equation for the reaction is H 3 AsO 3 ( a q ) + I 2 ( a q ) + H 2 O → 2 I − ( a q ) + H 3 AsO 4 ( a q ) + 2 H + ( a q ) A 243-mL solution of aqueous iodine is prepared by dissolving iodine crystals in water. A fifty-mL portion of the solution requires 15.42 mL of 0.134 M H 3 AsO 3 for complete reaction. What is the molarity of the solution? How many grams of iodine were added to the solution?
Solution Summary: The author explains that the molarity of the solution should be calculated along with the mass of iodine in grams.
The molarity of iodine in solution can be determined by titration with arsenious acid, H3AsO4. The unbalanced equation for the reaction is
H
3
AsO
3
(
a
q
)
+
I
2
(
a
q
)
+
H
2
O
→
2
I
−
(
a
q
)
+
H
3
AsO
4
(
a
q
)
+
2
H
+
(
a
q
)
A 243-mL solution of aqueous iodine is prepared by dissolving iodine crystals in water. A fifty-mL portion of the solution requires 15.42 mL of 0.134 M H3AsO3 for complete reaction. What is the molarity of the solution? How many grams of iodine were added to the solution?
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell