Conditional Probability and Independence: Formulas and Examples
A lesson in conditional probability and independence that moves from intuition and definitions to worked reasoning, error correction, and independent practice.
Lesson Goals: Conditional Probability Rules
Conditional probability restricts the sample space to the conditioning event, and independence holds only when conditioning leaves the relevant probability unchanged.
Conditional probability
Conditional probability in conditional probability rules: and . The conditional probability restricts the reference group to outcomes where B occurs.
Worked reasoning
For Conditional probability in conditional probability rules, For constructed events A and B in a package-delivery sample, , , and . Apply conditional probability.
When the idea is valid
For Conditional probability in conditional probability rules, Check that probabilities are coherent and that the denominator event has positive probability.
Misconception to remove
For Conditional probability in conditional probability rules, reject this error: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
General multiplication rule
General multiplication rule in conditional probability rules: and . The conditional probability restricts the reference group to outcomes where B occurs.
Worked reasoning
For General multiplication rule in conditional probability rules, For constructed events A and B in a package-delivery sample, , , and . Apply general multiplication rule.
When the idea is valid
For General multiplication rule in conditional probability rules, Check that probabilities are coherent and that the denominator event has positive probability.
Misconception to remove
For General multiplication rule in conditional probability rules, reject this error: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Independent events
Independent events in conditional probability rules: and . The conditional probability restricts the reference group to outcomes where B occurs.
Worked reasoning
For Independent events in conditional probability rules, For constructed events A and B in an online-course completion sample, , , and . Apply independent events.
When the idea is valid
For Independent events in conditional probability rules, Check that probabilities are coherent and that the denominator event has positive probability.
Misconception to remove
For Independent events in conditional probability rules, reject this error: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Testing independence
Testing independence in conditional probability rules: and . The conditional probability restricts the reference group to outcomes where B occurs.
Worked reasoning
For Testing independence in conditional probability rules, For constructed events A and B in a battery-life laboratory trial, , , and . Apply testing independence.
When the idea is valid
For Testing independence in conditional probability rules, Check that probabilities are coherent and that the denominator event has positive probability.
Misconception to remove
For Testing independence in conditional probability rules, reject this error: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Two-way tables
Two-way tables in conditional probability rules: and . The conditional probability restricts the reference group to outcomes where B occurs.
Worked reasoning
For Two-way tables in conditional probability rules, For constructed events A and B in a quality-control inspection, , , and . Apply two-way tables.
When the idea is valid
For Two-way tables in conditional probability rules, Check that probabilities are coherent and that the denominator event has positive probability.
Misconception to remove
For Two-way tables in conditional probability rules, reject this error: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tree diagrams
Tree diagrams in conditional probability rules: and . The conditional probability restricts the reference group to outcomes where B occurs.
Worked reasoning
For Tree diagrams in conditional probability rules, For constructed events A and B in a package-delivery sample, , , and . Apply tree diagrams.
When the idea is valid
For Tree diagrams in conditional probability rules, Check that probabilities are coherent and that the denominator event has positive probability.
Misconception to remove
For Tree diagrams in conditional probability rules, reject this error: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Bayes rule as enrichment
Bayes rule as enrichment in conditional probability rules: and . The conditional probability restricts the reference group to outcomes where B occurs.
Worked reasoning
For Bayes rule as enrichment in conditional probability rules, For constructed events A and B in a campus dining survey, , , and . Apply bayes rule as enrichment.
When the idea is valid
For Bayes rule as enrichment in conditional probability rules, Check that probabilities are coherent and that the denominator event has positive probability.
Misconception to remove
For Bayes rule as enrichment in conditional probability rules, reject this error: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Practice
Practice in conditional probability rules: and . The conditional probability restricts the reference group to outcomes where B occurs.
Worked reasoning
For Practice in conditional probability rules, For constructed events A and B in a city bus arrival investigation, , , and . Apply practice.
When the idea is valid
For Practice in conditional probability rules, Check that probabilities are coherent and that the denominator event has positive probability.
Misconception to remove
For Practice in conditional probability rules, reject this error: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Formula and Notation Reference
Conditional probability
Conditional probability in Conditional Probability Rules: Define the event or random variable first; complements, conditioning, and trial assumptions determine which probability expression applies.
Independence criterion
Independence criterion in Conditional Probability Rules: Define the event or random variable first; complements, conditioning, and trial assumptions determine which probability expression applies.
Guided, Independent and Challenge Practice
Every question in Conditional Probability and Independence: Formulas and Examples is newly written from the revised framework and the logic visible in public College Board materials. Constructed numerical settings are identified as instructional scenarios and are never represented as measurements from a real population. No released or secure question wording is reproduced.
Easy Practice
Easy 1: Testing independence
Question P42-Easy-1. For constructed events A and B in a reading-speed investigation, , , and . Apply testing independence.
Worked solution and validity check
Worked solution P42-Easy-1. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 2: Two-way tables
Question P42-Easy-2. For constructed events A and B in a water-filtration experiment, , , and . Apply two-way tables.
Worked solution and validity check
Worked solution P42-Easy-2. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 3: Tree diagrams
Question P42-Easy-3. For constructed events A and B in a public-parks visitor survey, , , and . Apply tree diagrams.
Worked solution and validity check
Worked solution P42-Easy-3. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 4: Bayes rule as enrichment
Question P42-Easy-4. For constructed events A and B in a website response-time study, , , and . Apply bayes rule as enrichment.
Worked solution and validity check
Worked solution P42-Easy-4. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 5: Practice
Question P42-Easy-5. For constructed events A and B in a classroom memory study, , , and . Apply practice.
Worked solution and validity check
Worked solution P42-Easy-5. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 6: Conditional probability
Question P42-Easy-6. For constructed events A and B in a battery-life laboratory trial, , , and . Apply conditional probability.
Worked solution and validity check
Worked solution P42-Easy-6. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 7: General multiplication rule
Question P42-Easy-7. For constructed events A and B in a commuter route study, , , and . Apply general multiplication rule.
Worked solution and validity check
Worked solution P42-Easy-7. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 8: Independent events
Question P42-Easy-8. For constructed events A and B in a water-filtration experiment, , , and . Apply independent events.
Worked solution and validity check
Worked solution P42-Easy-8. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 9: Testing independence
Question P42-Easy-9. For constructed events A and B in a school library checkout study, , , and . Apply testing independence.
Worked solution and validity check
Worked solution P42-Easy-9. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 10: Two-way tables
Question P42-Easy-10. For constructed events A and B in a commuter route study, , , and . Apply two-way tables.
Worked solution and validity check
Worked solution P42-Easy-10. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 11: Tree diagrams
Question P42-Easy-11. For constructed events A and B in a package-delivery sample, , , and . Apply tree diagrams.
Worked solution and validity check
Worked solution P42-Easy-11. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 12: Bayes rule as enrichment
Question P42-Easy-12. For constructed events A and B in a water-filtration experiment, , , and . Apply bayes rule as enrichment.
Worked solution and validity check
Worked solution P42-Easy-12. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 13: Practice
Question P42-Easy-13. For constructed events A and B in a manufacturing fill-volume check, , , and . Apply practice.
Worked solution and validity check
Worked solution P42-Easy-13. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 14: Conditional probability
Question P42-Easy-14. For constructed events A and B in a water-filtration experiment, , , and . Apply conditional probability.
Worked solution and validity check
Worked solution P42-Easy-14. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 15: General multiplication rule
Question P42-Easy-15. For constructed events A and B in a campus dining survey, , , and . Apply general multiplication rule.
Worked solution and validity check
Worked solution P42-Easy-15. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 16: Independent events
Question P42-Easy-16. For constructed events A and B in a package-delivery sample, , , and . Apply independent events.
Worked solution and validity check
Worked solution P42-Easy-16. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 17: Testing independence
Question P42-Easy-17. For constructed events A and B in a recycling-behavior survey, , , and . Apply testing independence.
Worked solution and validity check
Worked solution P42-Easy-17. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 18: Two-way tables
Question P42-Easy-18. For constructed events A and B in a reading-speed investigation, , , and . Apply two-way tables.
Worked solution and validity check
Worked solution P42-Easy-18. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 19: Tree diagrams
Question P42-Easy-19. For constructed events A and B in a water-filtration experiment, , , and . Apply tree diagrams.
Worked solution and validity check
Worked solution P42-Easy-19. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Easy 20: Bayes rule as enrichment
Question P42-Easy-20. For constructed events A and B in a tutoring-program evaluation, , , and . Apply bayes rule as enrichment.
Worked solution and validity check
Worked solution P42-Easy-20. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough Practice
Tough 1: Conditional probability
Question P42-Tough-1. For constructed events A and B in a tutoring-program evaluation, , , and . Apply conditional probability.
Worked solution and validity check
Worked solution P42-Tough-1. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 2: General multiplication rule
Question P42-Tough-2. For constructed events A and B in a website response-time study, , , and . Apply general multiplication rule.
Worked solution and validity check
Worked solution P42-Tough-2. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 3: Independent events
Question P42-Tough-3. For constructed events A and B in a public-parks visitor survey, , , and . Apply independent events.
Worked solution and validity check
Worked solution P42-Tough-3. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 4: Testing independence
Question P42-Tough-4. For constructed events A and B in a quality-control inspection, , , and . Apply testing independence.
Worked solution and validity check
Worked solution P42-Tough-4. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 5: Two-way tables
Question P42-Tough-5. For constructed events A and B in a classroom memory study, , , and . Apply two-way tables.
Worked solution and validity check
Worked solution P42-Tough-5. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 6: Tree diagrams
Question P42-Tough-6. For constructed events A and B in a quality-control inspection, , , and . Apply tree diagrams.
Worked solution and validity check
Worked solution P42-Tough-6. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 7: Bayes rule as enrichment
Question P42-Tough-7. For constructed events A and B in a tutoring-program evaluation, , , and . Apply bayes rule as enrichment.
Worked solution and validity check
Worked solution P42-Tough-7. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 8: Practice
Question P42-Tough-8. For constructed events A and B in a campus dining survey, , , and . Apply practice.
Worked solution and validity check
Worked solution P42-Tough-8. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 9: Conditional probability
Question P42-Tough-9. For constructed events A and B in a campus dining survey, , , and . Apply conditional probability.
Worked solution and validity check
Worked solution P42-Tough-9. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 10: General multiplication rule
Question P42-Tough-10. For constructed events A and B in a package-delivery sample, , , and . Apply general multiplication rule.
Worked solution and validity check
Worked solution P42-Tough-10. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 11: Independent events
Question P42-Tough-11. For constructed events A and B in a tutoring-program evaluation, , , and . Apply independent events.
Worked solution and validity check
Worked solution P42-Tough-11. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 12: Testing independence
Question P42-Tough-12. For constructed events A and B in a seedling-growth comparison, , , and . Apply testing independence.
Worked solution and validity check
Worked solution P42-Tough-12. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 13: Two-way tables
Question P42-Tough-13. For constructed events A and B in a manufacturing fill-volume check, , , and . Apply two-way tables.
Worked solution and validity check
Worked solution P42-Tough-13. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 14: Tree diagrams
Question P42-Tough-14. For constructed events A and B in a battery-life laboratory trial, , , and . Apply tree diagrams.
Worked solution and validity check
Worked solution P42-Tough-14. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 15: Bayes rule as enrichment
Question P42-Tough-15. For constructed events A and B in a seedling-growth comparison, , , and . Apply bayes rule as enrichment.
Worked solution and validity check
Worked solution P42-Tough-15. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 16: Practice
Question P42-Tough-16. For constructed events A and B in a website response-time study, , , and . Apply practice.
Worked solution and validity check
Worked solution P42-Tough-16. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 17: Conditional probability
Question P42-Tough-17. For constructed events A and B in a quality-control inspection, , , and . Apply conditional probability.
Worked solution and validity check
Worked solution P42-Tough-17. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 18: General multiplication rule
Question P42-Tough-18. For constructed events A and B in a recycling-behavior survey, , , and . Apply general multiplication rule.
Worked solution and validity check
Worked solution P42-Tough-18. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 19: Independent events
Question P42-Tough-19. For constructed events A and B in a seedling-growth comparison, , , and . Apply independent events.
Worked solution and validity check
Worked solution P42-Tough-19. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Tough 20: Testing independence
Question P42-Tough-20. For constructed events A and B in a tutoring-program evaluation, , , and . Apply testing independence.
Worked solution and validity check
Worked solution P42-Tough-20. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest Practice
Toughest 1: Conditional probability
Question P42-Toughest-1. For constructed events A and B in a reading-speed investigation, , , and . Apply conditional probability.
Worked solution and validity check
Worked solution P42-Toughest-1. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 2: General multiplication rule
Question P42-Toughest-2. For constructed events A and B in a quality-control inspection, , , and . Apply general multiplication rule.
Worked solution and validity check
Worked solution P42-Toughest-2. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 3: Independent events
Question P42-Toughest-3. For constructed events A and B in a commuter route study, , , and . Apply independent events.
Worked solution and validity check
Worked solution P42-Toughest-3. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 4: Testing independence
Question P42-Toughest-4. For constructed events A and B in a quality-control inspection, , , and . Apply testing independence.
Worked solution and validity check
Worked solution P42-Toughest-4. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 5: Two-way tables
Question P42-Toughest-5. For constructed events A and B in a quality-control inspection, , , and . Apply two-way tables.
Worked solution and validity check
Worked solution P42-Toughest-5. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 6: Tree diagrams
Question P42-Toughest-6. For constructed events A and B in a city bus arrival investigation, , , and . Apply tree diagrams.
Worked solution and validity check
Worked solution P42-Toughest-6. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 7: Bayes rule as enrichment
Question P42-Toughest-7. For constructed events A and B in a website response-time study, , , and . Apply bayes rule as enrichment.
Worked solution and validity check
Worked solution P42-Toughest-7. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 8: Practice
Question P42-Toughest-8. For constructed events A and B in a manufacturing fill-volume check, , , and . Apply practice.
Worked solution and validity check
Worked solution P42-Toughest-8. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 9: Conditional probability
Question P42-Toughest-9. For constructed events A and B in a campus dining survey, , , and . Apply conditional probability.
Worked solution and validity check
Worked solution P42-Toughest-9. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 10: General multiplication rule
Question P42-Toughest-10. For constructed events A and B in a website response-time study, , , and . Apply general multiplication rule.
Worked solution and validity check
Worked solution P42-Toughest-10. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 11: Independent events
Question P42-Toughest-11. For constructed events A and B in a classroom memory study, , , and . Apply independent events.
Worked solution and validity check
Worked solution P42-Toughest-11. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 12: Testing independence
Question P42-Toughest-12. For constructed events A and B in a battery-life laboratory trial, , , and . Apply testing independence.
Worked solution and validity check
Worked solution P42-Toughest-12. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 13: Two-way tables
Question P42-Toughest-13. For constructed events A and B in a tutoring-program evaluation, , , and . Apply two-way tables.
Worked solution and validity check
Worked solution P42-Toughest-13. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 14: Tree diagrams
Question P42-Toughest-14. For constructed events A and B in a package-delivery sample, , , and . Apply tree diagrams.
Worked solution and validity check
Worked solution P42-Toughest-14. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 15: Bayes rule as enrichment
Question P42-Toughest-15. For constructed events A and B in a recycling-behavior survey, , , and . Apply bayes rule as enrichment.
Worked solution and validity check
Worked solution P42-Toughest-15. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 16: Practice
Question P42-Toughest-16. For constructed events A and B in a school library checkout study, , , and . Apply practice.
Worked solution and validity check
Worked solution P42-Toughest-16. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 17: Conditional probability
Question P42-Toughest-17. For constructed events A and B in a greenhouse germination experiment, , , and . Apply conditional probability.
Worked solution and validity check
Worked solution P42-Toughest-17. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 18: General multiplication rule
Question P42-Toughest-18. For constructed events A and B in a school library checkout study, , , and . Apply general multiplication rule.
Worked solution and validity check
Worked solution P42-Toughest-18. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 19: Independent events
Question P42-Toughest-19. For constructed events A and B in a campus dining survey, , , and . Apply independent events.
Worked solution and validity check
Worked solution P42-Toughest-19. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
Toughest 20: Testing independence
Question P42-Toughest-20. For constructed events A and B in a package-delivery sample, , , and . Apply testing independence.
Worked solution and validity check
Worked solution P42-Toughest-20. and . Interpretation: The conditional probability restricts the reference group to outcomes where B occurs. Validity: Check that probabilities are coherent and that the denominator event has positive probability. Error to reject: Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events.
AP Response and Publication Checklist
| Audit point | Required evidence for conditional probability rules |
|---|---|
| Scope | Disjoint events with positive probability are not independent. |
| Method or source | Conditional probability restricts the sample space to the conditioning event, and independence holds only when conditioning leaves the relevant probability unchanged. |
| Calculation | |
| Interpretation | The conditional probability restricts the reference group to outcomes where B occurs. |
| Validity | Check that probabilities are coherent and that the denominator event has positive probability. |
| Correction | Adding P(A) and P(B) without subtracting the intersection double-counts outcomes in both events. |
Frequently Asked Questions
How does conditional probability work in conditional probability rules?
Answer for conditional probability rules and Conditional probability. and . The conditional probability restricts the reference group to outcomes where B occurs. The required validity evidence is: Check that probabilities are coherent and that the denominator event has positive probability.
How does general multiplication rule work in conditional probability rules?
Answer for conditional probability rules and General multiplication rule. and . The conditional probability restricts the reference group to outcomes where B occurs. The required validity evidence is: Check that probabilities are coherent and that the denominator event has positive probability.
How does independent events work in conditional probability rules?
Answer for conditional probability rules and Independent events. and . The conditional probability restricts the reference group to outcomes where B occurs. The required validity evidence is: Check that probabilities are coherent and that the denominator event has positive probability.
How does testing independence work in conditional probability rules?
Answer for conditional probability rules and Testing independence. and . The conditional probability restricts the reference group to outcomes where B occurs. The required validity evidence is: Check that probabilities are coherent and that the denominator event has positive probability.
How does two-way tables work in conditional probability rules?
Answer for conditional probability rules and Two-way tables. and . The conditional probability restricts the reference group to outcomes where B occurs. The required validity evidence is: Check that probabilities are coherent and that the denominator event has positive probability.
How does tree diagrams work in conditional probability rules?
Answer for conditional probability rules and Tree diagrams. and . The conditional probability restricts the reference group to outcomes where B occurs. The required validity evidence is: Check that probabilities are coherent and that the denominator event has positive probability.
How does rule of total probability connect to Conditional Probability Rules?
rule of total probability within conditional probability rules. and . The conditional probability restricts the reference group to outcomes where B occurs. For Conditional probability, the controlling scope is: Disjoint events with positive probability are not independent.
How does total probability rule connect to Conditional Probability Rules?
total probability rule within conditional probability rules. and . The conditional probability restricts the reference group to outcomes where B occurs. For General multiplication rule, the controlling scope is: Disjoint events with positive probability are not independent.
How does bayes rule conditional probability connect to Conditional Probability Rules?
bayes rule conditional probability within conditional probability rules. and . The conditional probability restricts the reference group to outcomes where B occurs. For Independent events, the controlling scope is: Disjoint events with positive probability are not independent.
How does conditional probability bayes rule connect to Conditional Probability Rules?
conditional probability bayes rule within conditional probability rules. and . The conditional probability restricts the reference group to outcomes where B occurs. For Testing independence, the controlling scope is: Disjoint events with positive probability are not independent.
How does bayes rule and conditional probability connect to Conditional Probability Rules?
bayes rule and conditional probability within conditional probability rules. and . The conditional probability restricts the reference group to outcomes where B occurs. For Two-way tables, the controlling scope is: Disjoint events with positive probability are not independent.
How does conditional probability rule connect to Conditional Probability Rules?
conditional probability rule within conditional probability rules. and . The conditional probability restricts the reference group to outcomes where B occurs. For Tree diagrams, the controlling scope is: Disjoint events with positive probability are not independent.
How does independent probability rules connect to Conditional Probability Rules?
independent probability rules within conditional probability rules. and . The conditional probability restricts the reference group to outcomes where B occurs. For Bayes rule as enrichment, the controlling scope is: Disjoint events with positive probability are not independent.
Sources
Administrative and curricular statements in Conditional Probability and Independence: Formulas and Examples were checked on July 18, 2026. The linked College Board pages control any later policy change; all instructional datasets in original questions are explicitly constructed rather than attributed to a real study.
Conditional Probability Rules Conclusion
Conditional probability restricts the sample space to the conditioning event, and independence holds only when conditioning leaves the relevant probability unchanged. Mastery of conditional probability rules therefore requires the exact evidence, mathematics, interpretation, and scope developed in this guide, while preserving this boundary: Disjoint events with positive probability are not independent.