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Conditional Probability CIRCUIT worksheet with worked solutions
Conditional Probability CIRCUIT worksheet with worked solutions
Conditional Probability CIRCUIT worksheet with worked solutions
Conditional Probability CIRCUIT worksheet with worked solutions
Conditional Probability CIRCUIT worksheet with worked solutions
Conditional Probability CIRCUIT worksheet with worked solutions
Conditional Probability CIRCUIT worksheet with worked solutions
Conditional Probability CIRCUIT worksheet with worked solutions
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What others say

"My on level stats students were struggling with conditional probability. I found this and they really loved it. Being able to check their work as they go is something that my students really value. Great job!!"
star
Dana S.

Description

Students practice conditional probability problems in this engaging, self-grading, low-prep circuit worksheet that includes the worked solutions for the convenience of the teacher.

The digital version uses Google Forms(TM)

Click HERE to SAVE BIG by buying the Precalculus Full Curriculum Bundle. This bundle contains everything you need to teach a full year Precalculus course: notes, homework, quizzes, tests, and projects!

To compute the probabilities students may be required to:

  • create the sample space
  • create a Venn diagram
  • use a two-way frequency table
  • create a tree diagram

How many questions are there?

  • There are 12 questions.

How does a circuit work?

Students begin with the problem in the top left. They answer the question and find the answer somewhere else and write β€œ2” in the blank. Students then solve *that* problem, find the answer and write β€œ3” in the blank and so on until they have solved every problem and returned to the beginning.

How does the digital version work?

  • After a student enters her email address, name, and period, she is taken to question 1. The student answers question 1 and finds her answer among the 11 choices. She is taken to a different question based on her answer.
  • If a student answers question 1 correctly, she will be taken to question 2. If a student chooses the wrong answer for question 1, she will be taken to a different question, e.g. question 8. If this happens, the student can click on Back to go back to the previous question and try again.
  • After a student answers all 12 questions correctly, she will be taken to the β€œCongratulations” screen where she can submit her answers.

What do I get if I buy this product?

  • A NON EDITABLE pdf of the circuit
  • The answer key
  • Access to the link to the Google form
  • Clear instructions for how to get the link, how to send the form to the students, how to see your students' results, and how to change other settings

If you like this product, leave a review (you can get tpt credits for every review you leave - and then use those credits on future tpt purchases). Also, follow my store to get notifications about new products I add to my store.

If you like this product, you may also like these:

Questions or concerns? email me at rebecca@hoffmath.com

Report this resource to TPT
Reported resources will be reviewed by our team. Report this resource to let us know if this resource violates TPT's content guidelines.

Conditional Probability CIRCUIT worksheet with worked solutions

Rated 5 out of 5, based on 4 reviews
5.0Β (4 ratings)
Hoff Math
1.2k Followers
$3.00

Highlights

Digital downloads
Grades icon
Grades
11th - 12th, Higher Education
Standards icon
Standards
Answer Key
Included

What others say

"My on level stats students were struggling with conditional probability. I found this and they really loved it. Being able to check their work as they go is something that my students really value. Great job!!"
star
Dana S.

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Description

Students practice conditional probability problems in this engaging, self-grading, low-prep circuit worksheet that includes the worked solutions for the convenience of the teacher.

The digital version uses Google Forms(TM)

Click HERE to SAVE BIG by buying the Precalculus Full Curriculum Bundle. This bundle contains everything you need to teach a full year Precalculus course: notes, homework, quizzes, tests, and projects!

To compute the probabilities students may be required to:

  • create the sample space
  • create a Venn diagram
  • use a two-way frequency table
  • create a tree diagram

How many questions are there?

  • There are 12 questions.

How does a circuit work?

Students begin with the problem in the top left. They answer the question and find the answer somewhere else and write β€œ2” in the blank. Students then solve *that* problem, find the answer and write β€œ3” in the blank and so on until they have solved every problem and returned to the beginning.

How does the digital version work?

  • After a student enters her email address, name, and period, she is taken to question 1. The student answers question 1 and finds her answer among the 11 choices. She is taken to a different question based on her answer.
  • If a student answers question 1 correctly, she will be taken to question 2. If a student chooses the wrong answer for question 1, she will be taken to a different question, e.g. question 8. If this happens, the student can click on Back to go back to the previous question and try again.
  • After a student answers all 12 questions correctly, she will be taken to the β€œCongratulations” screen where she can submit her answers.

What do I get if I buy this product?

  • A NON EDITABLE pdf of the circuit
  • The answer key
  • Access to the link to the Google form
  • Clear instructions for how to get the link, how to send the form to the students, how to see your students' results, and how to change other settings

If you like this product, leave a review (you can get tpt credits for every review you leave - and then use those credits on future tpt purchases). Also, follow my store to get notifications about new products I add to my store.

If you like this product, you may also like these:

Questions or concerns? email me at rebecca@hoffmath.com

Report this resource to TPT
Reported resources will be reviewed by our team. Report this resource to let us know if this resource violates TPT's content guidelines.

Reviews

5.0
Rated 5 out of 5, based on 4 reviews
4
ratings
All verified TPT purchases
Nice for review
Rated 5 out of 5
February 8, 2026
Met expectations
Great value
Standards-aligned
My on level stats students were struggling with conditional probability. I found this and they really loved it. Being able to check their work as they go is something that my students really value. Great job!!
Dana Shaver
(TPT Seller)
610 reviews β€’ Ohio
Grades taught: 11th, 12th
Student populations: Learning difficulties
Rated 5 out of 5
March 11, 2025
This is a great resource for my Algebra 2 class. Thank you!
Jessica M.
835 reviews
Grades taught: 10th, 11th
Rated 5 out of 5
January 27, 2025
Great practice on conditional probability- love circuit worksheets
Anika T.
86 reviews
Grades taught: 10th
Rated 5 out of 5
April 20, 2022
Great resource!
Leanna Kent
(TPT Seller)
454 reviews

Questions & Answers

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Standards

to see state-specific standards (only available in the US).
Understand the conditional probability of 𝘈 given π˜‰ as π˜—(𝘈 and π˜‰)/π˜—(π˜‰), and interpret independence of 𝘈 and π˜‰ as saying that the conditional probability of 𝘈 given π˜‰ is the same as the probability of 𝘈, and the conditional probability of π˜‰ given 𝘈 is the same as the probability of π˜‰.
Construct and interpret two-way frequency tables of data when two categories are associated with each object being classified. Use the two-way table as a sample space to decide if events are independent and to approximate conditional probabilities. For example, collect data from a random sample of students in your school on their favorite subject among math, science, and English. Estimate the probability that a randomly selected student from your school will favor science given that the student is in tenth grade. Do the same for other subjects and compare the results.
Find the conditional probability of 𝘈 given π˜‰ as the fraction of π˜‰β€™s outcomes that also belong to 𝘈, and interpret the answer in terms of the model.
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