Sign in to view assessments and invite other educators
Sign in using your existing Kendall Hunt account. If you don’t have one, create an educator account.
Here are some questions.
Which question do you find most interesting? Which question do you find the least interesting? Be prepared to explain your reasoning.
Invite 1–2 students to share the questions they find most interesting and why. For each question shared, ask if others in the class also selected that question and whether they did so for a different reason. Repeat the steps with the questions that students find the least interesting.
Explain that these questions are called “Fermi problems,” named after Enrico Fermi, an Italian physicist. Fermi loved to think up and discuss problems that are impossible to measure directly but can be roughly estimated using known facts and calculations. Tell students that they will now explore a Fermi problem together.
Help us improve by sharing suggestions or reporting issues.
What are some smaller questions, or sub-questions, to figure out before solving the chosen Fermi problem? Record the Fermi problem and your sub-questions here.
Think about how the sub-questions should be organized. Label each sub-question to show the order in which they should be answered.
If you notice a gap in your sub-questions (or that some information is needed before the next sub-question could be answered), write a new sub-question to fill the gap.
Let’s start answering the sub-questions! Use the given organizer.
Fermi Problem:
Sub-question 1:
Facts or assumptions:
Answer:
Sub-question 2:
Facts or assumptions:
Answer:
Sub-question 3:
Facts or assumptions:
Answer:
Sub-question 4:
Facts or assumptions:
Answer:
Sub-question 5:
Facts or assumptions:
Answer:
Sub-question 6:
Facts or assumptions:
Answer:
If students are unsure how to break down the chosen Fermi problem into smaller sub-questions, consider demonstrating with a different example. Take this problem, for instance: “If you have a locker full of oranges, could you squeeze enough juice for everyone at your school?” Tell students that one thing we might want to know is the size of the locker: How big is it? Urge students to think of other questions that might be helpful to answer.
Here are some ideas:
When brainstorming, students may think of problems that involve a lot of steps but can be calculated with certainty. For instance, “How many minutes are in a decade with two leap years?” can be answered with multi-step multiplication. The question “How long would it take to show all the episodes of your favorite television series non-stop?” can be answered by adding up the durations of the episodes, information that is likely available online. Clarify that Fermi problems generally involve quantities that are unknown or impossible to measure directly, so it is necessary to make estimates and assumptions. This leads to a range of possible answers. Consider referring to a couple of Fermi problems in the Warm-up and discussing what needs to be estimated and assumed in each problem.