AP Chemistry Flashcards: Properties Of Buffers

Study Properties Of Buffers in AP Chemistry with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.

AP Chemistry

Properties Of Buffers

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QUESTION
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Which solution is a buffer: NaOH/NaCl or NH₄Cl/NH₃?

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ANSWER

NH₄Cl/NH₃. NH₄⁺/NH₃ is a weak acid/base pair; NaOH/NaCl is not.

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This deck focuses on Properties Of Buffers, giving you a quick way to review the definitions, rules, and examples that matter most for AP Chemistry.

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Flashcard 1: Which solution is a buffer: NaOH/NaCl or NH₄Cl/NH₃?

Answer: NH₄Cl/NH₃. NH₄⁺/NH₃ is a weak acid/base pair; NaOH/NaCl is not.

Flashcard 2: What is the relation between KaK_a and buffer strength?

Answer: Larger KaK_a values indicate stronger acids, affecting buffer strength. KaK_a determines pKapK_a, which sets the optimal pH range.

Flashcard 3: Calculate the pH of a buffer with [HA]=0.10[\text{HA}] = 0.10 M, [A]=0.10[\text{A}^-] = 0.10 M, pKa=4.75pK_a = 4.75.

Answer: pH = 4.75. Equal concentrations make log term zero, so pH = pKapK_a.

Flashcard 4: Identify the role of the conjugate base in a buffer.

Answer: The conjugate base neutralizes added acids. A⁻ reacts with H⁺ to prevent pH decrease.

Flashcard 5: Determine the pH of a buffer: pKa=4.76pK_a = 4.76, [HA]=0.1[\text{HA}] = 0.1 M, [A]=0.1[\text{A}^-] = 0.1 M.

Answer: pH = 4.76. Equal concentrations make the log term zero.

Flashcard 6: Determine the pH of a buffer: pKa=4.76pK_a = 4.76, [HA]=0.1[\text{HA}] = 0.1 M, [A]=0.1[\text{A}^-] = 0.1 M.

Answer: pH = 4.76. Equal concentrations make the log term zero.

Flashcard 7: Calculate the pH of a buffer with [HA]=0.10[\text{HA}] = 0.10 M, [A]=0.10[\text{A}^-] = 0.10 M, pKa=4.75pK_a = 4.75.

Answer: pH = 4.75. Equal concentrations make log term zero, so pH = pKapK_a.

Flashcard 8: Which buffer component neutralizes added OH⁻ ions?

Answer: The weak acid of the buffer. HA donates protons to neutralize added base.

Flashcard 9: What does the term 'buffer action' refer to?

Answer: The ability of a buffer to resist pH change. Describes the mechanism by which buffers maintain pH.

Flashcard 10: Which factors do not affect the pH of a buffer?

Answer: The absolute concentrations of the buffer components. pH depends only on the concentration ratio, not individual amounts.

Flashcard 11: What effect does adding a strong base have on a buffer?

Answer: The buffer neutralizes it, minimizing pH change. Weak acid consumes OH⁻, preventing pH rise.

Flashcard 12: Which property is enhanced by equal concentrations of buffer components?

Answer: Buffer capacity is maximized. Equal amounts optimize neutralization in both directions.

Flashcard 13: What components make up a typical buffer solution?

Answer: A weak acid and its conjugate base, or a weak base and its conjugate acid. The pair must have weak acid/base relationship for buffering action.

Flashcard 14: Which property of a buffer determines its capacity?

Answer: The concentrations of the acid and conjugate base. Higher concentrations provide more buffering molecules.

Flashcard 15: What is the maximum buffer capacity condition?

Answer: When [HA]=[A][\text{HA}] = [\text{A}^-] and pH = pKapK_a. Equal concentrations provide optimal neutralization for both directions.

Flashcard 16: What does the term 'buffer action' refer to?

Answer: The ability of a buffer to resist pH change. Describes the mechanism by which buffers maintain pH.

Flashcard 17: Identify the role of the weak acid in a buffer.

Answer: The weak acid neutralizes added bases. HA reacts with OH⁻ to prevent pH increase.

Flashcard 18: What is the effect of adding a salt of the weak acid to a buffer?

Answer: It increases buffer capacity. More conjugate base increases neutralization ability.

Flashcard 19: What is the pH of a solution with [HA]=[A][\text{HA}] = [\text{A}^-] and pKa=5.00pK_a = 5.00?

Answer: pH = 5.00. When concentrations are equal, pH equals pKapK_a exactly.

Flashcard 20: How is the pKapK_a of a buffer related to its effective pH range?

Answer: The effective range is pKa±1pK_a \pm 1. Buffers work within one pH unit of their pKapK_a.

Flashcard 21: What is the primary purpose of a buffer solution?

Answer: To resist changes in pH upon addition of small amounts of acid or base. Buffers maintain pH stability through weak acid/base equilibrium.

Flashcard 22: Identify a real-world application of buffers.

Answer: Blood pH regulation. Maintains physiological pH around 7.4 for proper function.

Flashcard 23: What is the effect of adding water to a buffer solution?

Answer: Dilution reduces buffer capacity but does not significantly change pH. Dilution affects capacity but concentration ratio remains constant.

Flashcard 24: What is the effect of adding water to a buffer solution?

Answer: Dilution reduces buffer capacity but does not significantly change pH. Dilution affects capacity but concentration ratio remains constant.

Flashcard 25: Find the pH of a buffer with pKa=5.00pK_a = 5.00, [HA]=0.05[\text{HA}] = 0.05 M, [A]=0.10[\text{A}^-] = 0.10 M.

Answer: pH = 5.30. Using Henderson-Hasselbalch: pH = 5.00 + log(0.10/0.05).

Flashcard 26: What is the pH of a buffer if pKa=6.5pK_a = 6.5 and [A]/[HA]=10[\text{A}^-]/[\text{HA}] = 10?

Answer: pH = 7.5. Using Henderson-Hasselbalch: pH = 6.5 + log(10) = 7.5.

Flashcard 27: What is the primary purpose of a buffer solution?

Answer: To resist changes in pH upon addition of small amounts of acid or base. Buffers maintain pH stability through weak acid/base equilibrium.

Flashcard 28: In what pH range does an acetic acid/sodium acetate buffer work best?

Answer: pH 3.74 to 5.74. Acetic acid has pKapK_a = 4.74, so range is 3.74-5.74.

Flashcard 29: What is the optimal pH range of a buffer in relation to its pKapK_a?

Answer: Within 1 pH unit above or below pKapK_a. Buffer works best when pH is close to its pKapK_a value.

Flashcard 30: Which buffer component neutralizes added H⁺ ions?

Answer: The conjugate base of the buffer. A⁻ accepts protons from added acid.

Flashcard 31: Which buffer component neutralizes added H⁺ ions?

Answer: The conjugate base of the buffer. A⁻ accepts protons from added acid.

Flashcard 32: Why are buffers important in biochemical systems?

Answer: They maintain stable pH, crucial for enzyme activity. Enzymes require specific pH ranges for optimal activity.

Flashcard 33: What is the buffer capacity?

Answer: The amount of acid or base a buffer can neutralize before pH changes significantly. Measures how much acid/base can be added before breakdown.

Flashcard 34: How does temperature affect buffer pH?

Answer: Temperature can affect the dissociation of the acid/base, altering pH. Temperature changes KaK_a values, shifting equilibrium.

Flashcard 35: Determine the pH of a buffer: pKa=4.76pK_a = 4.76, [HA]=0.1[\text{HA}] = 0.1 M, [A]=0.1[\text{A}^-] = 0.1 M.

Answer: pH = 4.76. Equal concentrations make the log term zero.

Flashcard 36: Identify the weak acid in the buffer: NH₄Cl/NH₃.

Answer: NH₄^+$ (ammonium ion). NH₄⁺ donates protons as the weak acid component.

Flashcard 37: How does a buffer maintain a nearly constant pH?

Answer: By neutralizing added acids or bases with its components. Weak acid/base equilibrium maintains constant H⁺ concentration.

Flashcard 38: What is the primary purpose of a buffer solution?

Answer: To resist changes in pH upon addition of small amounts of acid or base. Buffers maintain pH stability through weak acid/base equilibrium.

Flashcard 39: Which property is enhanced by equal concentrations of buffer components?

Answer: Buffer capacity is maximized. Equal amounts optimize neutralization in both directions.

Flashcard 40: What is the buffer capacity?

Answer: The amount of acid or base a buffer can neutralize before pH changes significantly. Measures how much acid/base can be added before breakdown.

Flashcard 41: Which buffer component neutralizes added H⁺ ions?

Answer: The conjugate base of the buffer. A⁻ accepts protons from added acid.

Flashcard 42: What effect does adding a strong base have on a buffer?

Answer: The buffer neutralizes it, minimizing pH change. Weak acid consumes OH⁻, preventing pH rise.

Flashcard 43: Identify the role of the conjugate base in a buffer.

Answer: The conjugate base neutralizes added acids. A⁻ reacts with H⁺ to prevent pH decrease.

Flashcard 44: What is the effect of adding a salt of the weak acid to a buffer?

Answer: It increases buffer capacity. More conjugate base increases neutralization ability.

Flashcard 45: Identify the weak acid in the buffer: NH₄Cl/NH₃.

Answer: NH₄^+$ (ammonium ion). NH₄⁺ donates protons as the weak acid component.

Flashcard 46: Which property is enhanced by equal concentrations of buffer components?

Answer: Buffer capacity is maximized. Equal amounts optimize neutralization in both directions.

Flashcard 47: How does a buffer maintain a nearly constant pH?

Answer: By neutralizing added acids or bases with its components. Weak acid/base equilibrium maintains constant H⁺ concentration.

Flashcard 48: What is the effect of dilution on buffer capacity?

Answer: Dilution decreases buffer capacity. Fewer buffer molecules means less neutralization ability.

Flashcard 49: Calculate the pH of a buffer with [HA]=0.20[\text{HA}] = 0.20 M, [A]=0.05[\text{A}^-] = 0.05 M, pKa=4.75pK_a = 4.75.

Answer: pH = 4.15. Using Henderson-Hasselbalch: pH = 4.75 + log(0.05/0.20).

Flashcard 50: Identify the role of the weak acid in a buffer.

Answer: The weak acid neutralizes added bases. HA reacts with OH⁻ to prevent pH increase.

Flashcard 51: Identify a real-world application of buffers.

Answer: Blood pH regulation. Maintains physiological pH around 7.4 for proper function.

Flashcard 52: Which buffer component neutralizes added OH⁻ ions?

Answer: The weak acid of the buffer. HA donates protons to neutralize added base.

Flashcard 53: Identify the role of the conjugate base in a buffer.

Answer: The conjugate base neutralizes added acids. A⁻ reacts with H⁺ to prevent pH decrease.

Flashcard 54: Calculate the pH of a buffer with [HA]=0.20[\text{HA}] = 0.20 M, [A]=0.05[\text{A}^-] = 0.05 M, pKa=4.75pK_a = 4.75.

Answer: pH = 4.15. Using Henderson-Hasselbalch: pH = 4.75 + log(0.05/0.20).

Flashcard 55: How does a buffer solution differ from a neutral solution?

Answer: A buffer resists pH changes; a neutral solution does not. Buffers actively resist pH change through chemical equilibrium.

Flashcard 56: What is the relationship between buffer concentration and buffer capacity?

Answer: Higher concentrations increase buffer capacity. More buffer molecules available for neutralization reactions.

Flashcard 57: Identify the role of the weak acid in a buffer.

Answer: The weak acid neutralizes added bases. HA reacts with OH⁻ to prevent pH increase.

Flashcard 58: How does temperature affect buffer pH?

Answer: Temperature can affect the dissociation of the acid/base, altering pH. Temperature changes KaK_a values, shifting equilibrium.

Flashcard 59: What is the pH of a solution with [HA]=[A][\text{HA}] = [\text{A}^-] and pKa=5.00pK_a = 5.00?

Answer: pH = 5.00. When concentrations are equal, pH equals pKapK_a exactly.

Flashcard 60: How is the pKapK_a of a buffer related to its effective pH range?

Answer: The effective range is pKa±1pK_a \pm 1. Buffers work within one pH unit of their pKapK_a.

Flashcard 61: What effect does adding a strong base have on a buffer?

Answer: The buffer neutralizes it, minimizing pH change. Weak acid consumes OH⁻, preventing pH rise.

Flashcard 62: Which solution is a buffer: NaOH/NaCl or NH₄Cl/NH₃?

Answer: NH₄Cl/NH₃. NH₄⁺/NH₃ is a weak acid/base pair; NaOH/NaCl is not.

Flashcard 63: Choose the buffer pair: HCl/NaCl or CH₃COOH/CH₃COONa?

Answer: CH₃COOH/CH₃COONa. Acetic acid is weak; HCl is strong and cannot buffer.

Flashcard 64: What is the relationship between buffer concentration and buffer capacity?

Answer: Higher concentrations increase buffer capacity. More buffer molecules available for neutralization reactions.

Flashcard 65: What is the primary purpose of a buffer solution?

Answer: To resist changes in pH upon addition of small amounts of acid or base. Buffers maintain pH stability through weak acid/base equilibrium.

Flashcard 66: In what pH range does an acetic acid/sodium acetate buffer work best?

Answer: pH 3.74 to 5.74. Acetic acid has pKapK_a = 4.74, so range is 3.74-5.74.

Flashcard 67: How is the pKapK_a of a buffer related to its effective pH range?

Answer: The effective range is pKa±1pK_a \pm 1. Buffers work within one pH unit of their pKapK_a.

Flashcard 68: What is the optimal pH range of a buffer in relation to its pKapK_a?

Answer: Within 1 pH unit above or below pKapK_a. Buffer works best when pH is close to its pKapK_a value.

Flashcard 69: What effect does adding a strong acid have on a buffer?

Answer: The buffer neutralizes it, minimizing pH change. Conjugate base consumes H⁺, preventing pH drop.

Flashcard 70: Determine the pH change when 0.01 M HCl is added to 1 M acetate buffer.

Answer: Minimal pH change; buffer resists pH change. High buffer concentration overwhelms the small acid addition.

Flashcard 71: Determine the pH change when 0.01 M HCl is added to 1 M acetate buffer.

Answer: Minimal pH change; buffer resists pH change. High buffer concentration overwhelms the small acid addition.

Flashcard 72: Which property of a buffer determines its capacity?

Answer: The concentrations of the acid and conjugate base. Higher concentrations provide more buffering molecules.

Flashcard 73: What is the relation between KaK_a and buffer strength?

Answer: Larger KaK_a values indicate stronger acids, affecting buffer strength. KaK_a determines pKapK_a, which sets the optimal pH range.

Flashcard 74: How does a buffer solution differ from a neutral solution?

Answer: A buffer resists pH changes; a neutral solution does not. Buffers actively resist pH change through chemical equilibrium.

Flashcard 75: Which property is enhanced by equal concentrations of buffer components?

Answer: Buffer capacity is maximized. Equal amounts optimize neutralization in both directions.

Flashcard 76: What is the effect of adding water to a buffer solution?

Answer: Dilution reduces buffer capacity but does not significantly change pH. Dilution affects capacity but concentration ratio remains constant.

Flashcard 77: What happens to buffer effectiveness when [HA][\text{HA}] and [A][\text{A}^-] are equal?

Answer: The buffer is most effective; pH = pKapK_a. Equal concentrations optimize both acid and base neutralization.

Flashcard 78: What effect does adding a strong acid have on a buffer?

Answer: The buffer neutralizes it, minimizing pH change. Conjugate base consumes H⁺, preventing pH drop.

Flashcard 79: What is the pH of a solution with [HA]=[A][\text{HA}] = [\text{A}^-] and pKa=5.00pK_a = 5.00?

Answer: pH = 5.00. When concentrations are equal, pH equals pKapK_a exactly.

Flashcard 80: What is the relation between KaK_a and buffer strength?

Answer: Larger KaK_a values indicate stronger acids, affecting buffer strength. KaK_a determines pKapK_a, which sets the optimal pH range.

Flashcard 81: Identify the role of the weak acid in a buffer.

Answer: The weak acid neutralizes added bases. HA reacts with OH⁻ to prevent pH increase.

Flashcard 82: Find the pH of a buffer with pKa=5.00pK_a = 5.00, [HA]=0.05[\text{HA}] = 0.05 M, [A]=0.10[\text{A}^-] = 0.10 M.

Answer: pH = 5.30. Using Henderson-Hasselbalch: pH = 5.00 + log(0.10/0.05).

Flashcard 83: What effect does adding a strong acid have on a buffer?

Answer: The buffer neutralizes it, minimizing pH change. Conjugate base consumes H⁺, preventing pH drop.

Flashcard 84: What happens to buffer effectiveness when [HA][\text{HA}] and [A][\text{A}^-] are equal?

Answer: The buffer is most effective; pH = pKapK_a. Equal concentrations optimize both acid and base neutralization.

Flashcard 85: What does the term 'buffer action' refer to?

Answer: The ability of a buffer to resist pH change. Describes the mechanism by which buffers maintain pH.

Flashcard 86: How does a buffer maintain a nearly constant pH?

Answer: By neutralizing added acids or bases with its components. Weak acid/base equilibrium maintains constant H⁺ concentration.

Flashcard 87: Choose the buffer pair: HCl/NaCl or CH₃COOH/CH₃COONa?

Answer: CH₃COOH/CH₃COONa. Acetic acid is weak; HCl is strong and cannot buffer.

Flashcard 88: Find the pH of a buffer with pKa=5.00pK_a = 5.00, [HA]=0.05[\text{HA}] = 0.05 M, [A]=0.10[\text{A}^-] = 0.10 M.

Answer: pH = 5.30. Using Henderson-Hasselbalch: pH = 5.00 + log(0.10/0.05).

Flashcard 89: What is the relation between KaK_a and buffer strength?

Answer: Larger KaK_a values indicate stronger acids, affecting buffer strength. KaK_a determines pKapK_a, which sets the optimal pH range.

Flashcard 90: How does a buffer maintain a nearly constant pH?

Answer: By neutralizing added acids or bases with its components. Weak acid/base equilibrium maintains constant H⁺ concentration.

Flashcard 91: What happens to buffer effectiveness when [HA][\text{HA}] and [A][\text{A}^-] are equal?

Answer: The buffer is most effective; pH = pKapK_a. Equal concentrations optimize both acid and base neutralization.

Flashcard 92: What is the relationship between buffer concentration and buffer capacity?

Answer: Higher concentrations increase buffer capacity. More buffer molecules available for neutralization reactions.

Flashcard 93: In what pH range does an acetic acid/sodium acetate buffer work best?

Answer: pH 3.74 to 5.74. Acetic acid has pKapK_a = 4.74, so range is 3.74-5.74.

Flashcard 94: What is the pH of a buffer if pKa=6.5pK_a = 6.5 and [A]/[HA]=10[\text{A}^-]/[\text{HA}] = 10?

Answer: pH = 7.5. Using Henderson-Hasselbalch: pH = 6.5 + log(10) = 7.5.

Flashcard 95: Determine the pH change when 0.01 M HCl is added to 1 M acetate buffer.

Answer: Minimal pH change; buffer resists pH change. High buffer concentration overwhelms the small acid addition.

Flashcard 96: Identify the weak acid in the buffer: NH₄Cl/NH₃.

Answer: NH₄^+$ (ammonium ion). NH₄⁺ donates protons as the weak acid component.

Flashcard 97: Calculate the pH of a buffer with [HA]=0.20[\text{HA}] = 0.20 M, [A]=0.05[\text{A}^-] = 0.05 M, pKa=4.75pK_a = 4.75.

Answer: pH = 4.15. Using Henderson-Hasselbalch: pH = 4.75 + log(0.05/0.20).

Flashcard 98: How is the pKapK_a of a buffer related to its effective pH range?

Answer: The effective range is pKa±1pK_a \pm 1. Buffers work within one pH unit of their pKapK_a.

Flashcard 99: Which buffer component neutralizes added H⁺ ions?

Answer: The conjugate base of the buffer. A⁻ accepts protons from added acid.

Flashcard 100: Which property of a buffer determines its capacity?

Answer: The concentrations of the acid and conjugate base. Higher concentrations provide more buffering molecules.