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This deck focuses on Oxidation Reduction Redox Reactions, giving you a quick way to review the definitions, rules, and examples that matter most for AP Chemistry.
Study Oxidation Reduction Redox Reactions 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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What is the oxidation state of aluminum in Al2O3?
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+3. Calculate using: 2(Al) + 3(-2) = 0, so Al = +3.
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This deck focuses on Oxidation Reduction Redox Reactions, 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: +3. Calculate using: 2(Al) + 3(-2) = 0, so Al = +3.
Answer: Cu2+. Cu2+ gains electrons and gets reduced.
Answer: A reaction involving electron transfer. Involves oxidation and reduction occurring simultaneously.
Answer: Decreases from +3 to 0. Reduction decreases oxidation state by gaining electrons.
Answer: Gain of electrons. Reduction involves gaining electrons from another species.
Answer: H2. H2 loses electrons, so it's the reducing agent.
Answer: Zn. Zn loses electrons and gets oxidized.
Answer: +5. Calculate using: 3(+1) + P + 4(-2) = 0, so P = +5.
Answer: Reaction showing either oxidation or reduction alone. Shows one part of the complete redox process.
Answer: Charge of the ion. The sum equals the ion's overall charge.
Answer:
Answer: -2. Oxygen typically has -2 oxidation state in compounds.
Answer: Decreases. Reduction involves gain of electrons.
Answer: Electrons transfer from reducing to oxidizing agent. One species loses electrons while another gains them.
Answer: +6. Calculate using: 2(+1) + S + 4(-2) = 0, so S = +6.
Answer: Donates electrons. It loses electrons and gets oxidized itself.
Answer: -3. Calculate using: 3(+1) + N = 0, so N = -3.
Answer: O2. O2 gains electrons, so it's the oxidizing agent.
Answer: Loss of electrons. Oxidation involves losing electrons to another species.
Answer: +5. Calculate using: P + 5(-1) = 0, so P = +5.
Answer: +5. Calculate using: N + 3(-2) = -1, so N = +5.
Answer: Gain of electrons. Reduction involves gaining electrons from another species.
Answer: -1. Chlorine gains one electron to form chloride ion.
Answer: +5. Calculate using: N + 3(-2) = -1, so N = +5.
Answer: Cu. Copper's oxidation state decreases from +2 to 0.
Answer: Accepts electrons. It gains electrons and gets reduced itself.
Answer: Zn. Zn loses electrons and gets oxidized.
Answer: Accepts electrons. It gains electrons and gets reduced itself.
Answer: A reaction involving electron transfer. Involves oxidation and reduction occurring simultaneously.
Answer: -1. Chlorine gains one electron to form chloride ion.
Answer: -4. Calculate using: C + 4(+1) = 0, so C = -4.
Answer: H2. H2 loses electrons, so it's the reducing agent.
Answer: +5. Calculate using: 3(+1) + P + 4(-2) = 0, so P = +5.
Answer: Br2. Bromine's oxidation state decreases from 0 to -1.
Answer: Increases. Oxidation involves loss of electrons.
Answer: +4. Calculate using: S + 2(-2) = 0, so S = +4.
Answer: -1. In peroxide, oxygen has unusual -1 oxidation state.
Answer: K. Potassium's oxidation state increases from 0 to +1.
Answer: +4. Calculate using: C + 2(-2) = 0, so C = +4.
Answer: K. Potassium's oxidation state increases from 0 to +1.
Answer: +6. Calculate using: 2(Cr) + 7(-2) = -2, so Cr = +6.
Answer: Decreases from +2 to 0. Reduction decreases oxidation state by gaining electrons.
Answer: A single element undergoes both oxidation and reduction. Same element has atoms with different oxidation states.
Answer: +6. Calculate using: 2(+1) + S + 4(-2) = 0, so S = +6.
Answer: Increases. Oxidation involves loss of electrons.