The following information was obtained when carrying out an experiment to determine the Enthalpy (AH)of neutralization reaction between HCI and NaOH. 100 mL of 2.00 M HCI solution was added to 95.00 mL of 2.00 M solution of NaOH. The final temperature reached was 35.40 °C and the initial temperature at mixing was 22.15 °C. The density of the reaction mixture was 1.04 g/ml and its specific heat capacity was 3.89 J/g-°C. Calculate the weight of the reaction mixture? (A) 202.8 g B) 195 g C) 13.25 g D) 0.19 g
The following information was obtained when carrying out an experiment to determine the Enthalpy (AH)of neutralization reaction between HCI and NaOH. 100 mL of 2.00 M HCI solution was added to 95.00 mL of 2.00 M solution of NaOH. The final temperature reached was 35.40 °C and the initial temperature at mixing was 22.15 °C. The density of the reaction mixture was 1.04 g/ml and its specific heat capacity was 3.89 J/g-°C. Calculate the weight of the reaction mixture? (A) 202.8 g B) 195 g C) 13.25 g D) 0.19 g
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Transcribed Image Text:The following information was obtained when carrying out an experiment to determine the Enthalpy (AH)of neutralization reaction
between HCI and NaOH.
100 mL of 2.00 M HCI solution was added to 95.00 mL of 2.00 M solution of NaOH. The final temperature reached was 35.40 °C and
the initial temperature at mixing was 22.15 °C. The density of the reaction mixture was 1.04 g/ml and its specific heat capacity was
3.89 J/g-°C.
Calculate the weight of the reaction mixture?
(A) 202.8 g
B) 195 g
C) 13.25 g
D) 0.19 g
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