The pH of a buffer is calculated by using the Henderson-Hasselbalch equation:
pH=pKa +log[Base]/[Acid]
Part A:
What is the pH of a buffer prepared by adding 0.809mol of the weak acid HA to 0.406mol of NaA in 2.00 L of solution? The dissociation constant Ka of HA is 5.66
(A) pH = pKa + log([NaA]/[HA])
= -log Ka + log(moles of NaA/moles of HA)
= -log(5.66 x 10^(-7)) + log(0.406/0.809)
= 5.948
(B) NaA + HCl => NaCl + HA
Moles of HA = 0.809 + 0.150 = 0.959 mol
Moles of NaA = 0.406 - 0.150 = 0.256 mol
pH = pKa + log([NaA]/[HA])
= -log Ka + log(moles of NaA/moles of HA)
= -log(5.66 x 10^(-7)) + log(0.256/0.959)
= 5.674
(C) HA + NaOH => NaA + H2O
Moles of HA = 0.809 - 0.195 = 0.614 mol
Moles of NaA = 0.406 + 0.195 = 0.601 mol
pH = pKa + log([NaA]/[HA])
= -log Ka + log(moles of NaA/moles of HA)
= -log(5.66 x 10^(-7)) + log(0.601/0.614)
= 6.238
The pH of a buffer is calculated by using the Henderson-Hasselbalch equation: pH=pKa +log[Base]/[Acid] Part A: What...
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change in Ph in buffers part A What is the pH of a buffer prepared by adding 0.607mol of the weak acid HA to 0.608mol of NaA in 2.00 L of solution? The dissociation constant Ka of HA is 5.66
Part A: What is the pH of a buffer prepared by adding 0.708 mol of the weak acid HA to 0.406 mol of NaA in 2.00 L of solution? The dissociation constant Ka of HA is 5.66×10−7. Part B:What is the pH after 0.150 mol of HCl is added to the buffer from Part A? Assume no volume change on the addition of the acid. Part C: What is the pH after 0.195 mol of NaOH is added to the...
PART A: What is the pH of a buffer prepared by adding 0.809 mol of the weak acid HA to 0.507 mol of NaA in 2.00 L of solution? The dissociation constant Ka of HA is 5.66×10−7. PART B: What is the pH after 0.150 mol of HCl is added to the buffer from Part A? Assume no volume change on the addition of the acid. PART C:What is the pH after 0.195 mol of NaOH is added to the...
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± pH Changes in Buffers Part A What is the pH of a buffer prepared by adding 0.708 mol of the weak acid HA to 0.608 mol of NaA in 2.00 L of solution? The dissociation constant Ka of HA is 5.66×10−7. Express the pH numerically to three decimal places. Part B What is the pH after 0.150 mol of HCl is added to the buffer from Part A? Assume no volume change on the addition of the acid. Express...
M Review | Constants | Periodic Table - Part A When a solution contains a weak acid and its conjugate base or a weak base and its conjugate acid, it will be a buffer solution. Buffers resist change in pH following the addition of acid or base. A buffer solution prepared from a weak acid (HA) and its conjugate base (A) is represented as What is the pH of a buffer prepared by adding 0.405 mol of the weak acid...
The Henderson-Hasselbalch equation relates the pH of a buffer solution to the pKa of its conjugate acid and the ratio of the concentrations of the conjugate base and acid. The equation is important in laboratory work that makes use of buffered solutions, in industrial processes where pH needs to be controlled, and in medicine, where understanding the Henderson-Hasselbalch equation is critical for the control of blood pH. Part A As a technician in a large pharmaceutical research firm, you need...
Part A What is the pH of a buffer prepared by adding 0.708 mol of the weak acid HA to 0.406 mol of NaA in 2.00 Lof solution? The dissociation constant Ka of HA is 5.66×10−7. Express the pH numerically to three decimal places. Part B What is the pH after 0.150 mol of HCl is added to the buffer from Part A? Assume no volume change on the addition of the acid. Express the pH numerically to three decimal...
Part A What is the pH of a buffer prepared by adding 0.506 mol of the weak acid HA to 0.608 mol of NaA in 2.00 L of solution? The dissociation constant Ka of HA is 5.66×10−7. Express the pH numerically to three decimal places. pH = SubmitHintsMy AnswersGive UpReview Part Part B What is the pH after 0.150 mol of HCl is added to the buffer from Part A? Assume no volume change on the addition of the acid....