To determine the concentration of a solution of hydrochloric acid, a 125.0-mL sample is placed in a flask and titrated with a 0.1169 M solution of barium hydroxide. A volume of 40.55 mL is required to reach the phenolphthalein endpoint. Calculate the concentration of hydrochloric acid in the original sample. M

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To determine the concentration of a solution of hydrochloric acid, a 125.0-mL sample is placed in a flask and titrated with a 0.1169 M solution of barium
hydroxide. A volume of 40.55 mL is required to reach the phenolphthalein endpoint. Calculate the concentration of hydrochloric acid in the original
sample.
M
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Transcribed Image Text:d Tap - Cengage Learning vo/index.html?deploymentld%3D55750828934189288909969212&elSBN 781305657571&snapshotld%=2199898&id%3.. * Tp * NDTAP Q Search this course Use the References to access important values if needed for this question. To determine the concentration of a solution of hydrochloric acid, a 125.0-mL sample is placed in a flask and titrated with a 0.1169 M solution of barium hydroxide. A volume of 40.55 mL is required to reach the phenolphthalein endpoint. Calculate the concentration of hydrochloric acid in the original sample. M Submit Answer 5 question attempts remaining
Expert Solution
Step 1

Using Molarity equation 

M1V1                    =                   M2V2

[Ba(OH)2]                             (HCl)

M= 0.1169M

V1 = 40.55ml

M= ?

V2 = 125ml

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