A chemist must prepare 550.0 mL of hydrochloric acid solution with a pH of 0.50 at 25 °C. He will do this in three steps: • Fill a 550.0 mL volumetric flask about halfway with distilled water. • Measure out a small volume of concentrated (6.0M) stock hydrochloric acid solution and add it to the flask. • Fill the flask to the mark with distilled water. Calculate the volume of concentrated hydrochloric acid that the chemist must measure out in the second step. Round your answer to 2 significant digits.

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter15: Additional Aqueous Equilibria
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A chemist must prepare 550.0 mL of hydrochloric acid solution with a pH of 0.50 at 25 °C.
He will do this in three steps:
• Fill a 550.0 mL volumetric flask about halfway with distilled water.
• Measure out a small volume of concentrated (6.0M) stock hydrochloric acid solution and add it to the flask.
• Fill the flask to the mark with distilled water.
Calculate the volume of concentrated hydrochloric acid that the chemist must measure out in the second step. Round your answer to 2 significant digits.
Transcribed Image Text:A chemist must prepare 550.0 mL of hydrochloric acid solution with a pH of 0.50 at 25 °C. He will do this in three steps: • Fill a 550.0 mL volumetric flask about halfway with distilled water. • Measure out a small volume of concentrated (6.0M) stock hydrochloric acid solution and add it to the flask. • Fill the flask to the mark with distilled water. Calculate the volume of concentrated hydrochloric acid that the chemist must measure out in the second step. Round your answer to 2 significant digits.
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