Chemistry: Principles and Reactions
8th Edition
ISBN: 9781305079373
Author: William L. Masterton, Cecile N. Hurley
Publisher: Cengage Learning
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- A buffered solution containing dissolved aniline, C, H, NH₂, and aniline hydrochloride, C, H, NH, Cl, has a pH of 5.60. A. Determine the concentration of C, H, NH; in the solution if the concentration of C, H, NH, is 0.275 M. The pK, of aniline is 9.13. |C HẠNH;] = M B. Calculate the change in pH of the solution, ApH, if 0.363 g NaOH is added to the buffer for a final volume of 1.95 L. Assume that any contribution of NaOH to the volume is negligible. ApHarrow_forwardCalculate the pH of a buffered solution that contains 0.150 M benzoic acid (C&HSCO2H) (K = 6.4 x 10-) and 0.200 M sodium benzoate (C&HSCO,Na). | Hint: CHsCO2Na completely dissociates in water and benzoic acid is a monoprotic acid. C,H;CO,Na(aq) → C;H;CO, (aq) + Na* (aq) C,H;CO,H(aq) + H20(1) = C,H;Co, (aq) + H30* (aq)arrow_forwardA buffer solution is made that is 0.355 M in HCN and 0.355 M in KCN. If K, for HCN is 4.00 x 10-10, what is the pH of the buffer solution? pH =| Write the net ionic equation for the reaction that occurs when 0.095 mol HNO, is added to 1.00 L of the buffer solution. (Use the lowest possible coefficients. Omit states of matter. Use H;0* instead of Ht) A buffer solution is made that is 0.376 M in HCN and 0.376 M in NaCN. If K, for HCN is 4.00 x 10-10, what is the pH of the buffer solution? pH = Write the net ionic equation for the reaction that occurs when 0.105 mol KOH is added to 1.00 L of the buffer solution. (Use the lowest possible coefficients. Omit states of matter.) +arrow_forward
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