The amount of I (aq) in a solution can be determined by titration with a solution containing a known concentration of S,O (aq) (thiosulfate ion). The determination is based on the net ionic equation 2S,0 (aq) + I5 (aq) → S,0 (aq) + 31 (aq) Given that it requires 44.4 mL of 0.470 M Na, S, O, (aq) to titrate a 25.0 mL sample of I, (aq), calculate the molarity of I, (aq) in the solution. [] = %3D

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Σ
人
* 00
LL
The amount of I (aq) in a solution can be determined by titration with a solution containing a known concentration of S,O? (aq)
(thiosulfate ion). The determination is based on the net ionic equation
2 S,O} (aq) + I (aq) S,0 (aq) + 31 (aq)
Given that it requires 44.4 mL of 0.470 M Na, S,0,(aq) to titrate a 25.0 mL sample of I, (aq), calculate the molarity of I, (aq) in
the solution.
M
= []
Question Source: McQuarrie, Rock, And Gallogly 4e - General Chemsitry Publisher: University Science.
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11/9/2021
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Transcribed Image Text:Σ 人 * 00 LL The amount of I (aq) in a solution can be determined by titration with a solution containing a known concentration of S,O? (aq) (thiosulfate ion). The determination is based on the net ionic equation 2 S,O} (aq) + I (aq) S,0 (aq) + 31 (aq) Given that it requires 44.4 mL of 0.470 M Na, S,0,(aq) to titrate a 25.0 mL sample of I, (aq), calculate the molarity of I, (aq) in the solution. M = [] Question Source: McQuarrie, Rock, And Gallogly 4e - General Chemsitry Publisher: University Science. 10:17 AM 11/9/2021 F11 F12 PrtScr Insert Delete F4 F5 F7 Backspace V 2$ %3D 5. 7. 3. } { R. Enter G H. K. Shif х B. 1 PgUp Alt Ctrl Home 目
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