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This deck focuses on Ph And Pk, giving you a quick way to review the definitions, rules, and examples that matter most for AP Chemistry.
Study Ph And Pk in AP Chemistry with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.
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Calculate Kb if Ka=1.0×10−5 for a conjugate acid-base pair.
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Kb=1.0×10−9. Using Ka×Kb=1.0×10−14.
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This deck focuses on Ph And Pk, giving you a quick way to review the definitions, rules, and examples that matter most for AP Chemistry.
Work through these flashcards in short sessions. Try to answer each prompt before flipping the card, then revisit any cards you miss until the explanation feels automatic.
Answer: Kb=1.0×10−9. Using Ka×Kb=1.0×10−14.
Answer: pH ≈ 1. H2SO4 is diprotic; [H+] = 0.10 M.
Answer: pH > 7. Higher OH− concentration than neutral solution.
Answer: Low pKb. Strong bases have very negative pKb values.
Answer: pH < 7. Higher H+ concentration than neutral solution.
Answer: Kb is the equilibrium constant for the dissociation of a base. Measures the extent of base ionization in solution.
Answer: pH = 1. HCl completely ionizes; [H+] = 0.1 M.
Answer: pOH = 12. Using the relationship pH + pOH = 14.
Answer: Weak acid. High pKa means low ionization tendency.
Answer: pKa ≈ 3.5. Using pKa=−log(3.2×10−4).
Answer: [H+] = 1.0×10−6 M. Using [H+] = 10−pH relationship.
Answer: pKa=−log10(Ka). Takes the negative logarithm of the acid constant.
Answer: Ka×Kb=Kw. Fundamental relationship for conjugate pairs.
Answer: [OH−] = 1.0×10−8 M. Using [OH−] = 10−pOH relationship.
Answer: pH ≈ 2.88. Using the weak acid approximation formula.
Answer: pH+pOH=14. Based on the ion product of water at 25°C.
Answer: pKb. Standard notation for base dissociation constant.
Answer: pH = 7. Autoionization gives equal H+ and OH−.
Answer: Ka is the equilibrium constant for the dissociation of an acid. Measures the extent of acid ionization in solution.
Answer: pH=−log10[H+]. Negative log base 10 of hydrogen ion concentration.
Answer: 0.1 M CH3COOH. Acetic acid is weak, HCl is strong acid.
Answer: pH = 3. HNO3 completely ionizes; [H+] = 0.001 M.
Answer: pH = 12. NaOH gives [OH−] = 0.01 M, so pOH = 2.
Answer: pKa ≈ 3.5. Using pKa=−log(3.2×10−4).
Answer: pH = 12. NaOH gives [OH−] = 0.01 M, so pOH = 2.
Answer: pH = 14. Strong base gives [OH−] = 1.0 M, pOH = 0.
Answer: pH = 1. Strong acids completely ionize in solution.
Answer: Weak acid. Small Ka means limited ionization.
Answer: Strong acid. Large Ka means extensive ionization.
Answer: pOH=−log10[OH−]. Negative log base 10 of hydroxide ion concentration.
Answer: Weak acid. High pKa means low ionization tendency.
Answer: pKb ≈ 7.35. Using pKb=−log(4.5×10−8).
Answer: pH ≈ 11.13. Using weak base approximation with given Kb.
Answer: pKb=−log10(Kb). Takes the negative logarithm of the base constant.
Answer: pH = 7. Equal concentrations of H+ and OH− ions.
Answer: Kw=1.0×10−14. Ion product constant for water at standard temperature.
Answer: pH = 3. Using pH=−log(1.0×10−3)=3.
Answer: Strong base. Low pKb means high ionization tendency.
Answer: pOH = 4. Using pOH=−log(1.0×10−4)=4.
Answer: Strong acid. Large Ka means extensive ionization.
Answer: pH = 9. Using the relationship pH + pOH = 14.
Answer: Weak acid. pKa = 4 indicates moderate acid strength.