
STEM • 45 • 25 students • Created with AI following Aligned with Common Core State Standards
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This is lesson 4 of 20 in the unit "Microbit Mini-Unit for Year 6". Lesson Title: Introduction to Sensors Lesson Description: Explore how sensors work, and why we use them in technology. Demonstrate the temperature sensor on the Microbit. Success Criteria: Students can read and display temperature data. Differentiation: Use guided worksheets for students who need support.
Students explore what sensors do in real-world technology by focusing on a temperature sensor on the Micro:bit. They connect readings above and below zero to positive and negative rational numbers and interpret temperature data using number-line thinking.
Students will be able to:
0–5 min · Hook (Real tech). Teacher shows two quick temperature examples (warm vs. freezing) and asks: “How does a device know how warm or cold it is?” Students turn-and-talk, then share one idea about how technology measures temperature.
5–12 min · Mini direct teach (Sensor → data). Teacher demonstrates the Micro:bit temperature sensor briefly and shows where the value appears on-screen (or on a connected display). Students sketch a simple “sensor → number” diagram: “temperature in” becomes “temperature value out.”
12–20 min · Guided setup (Make it work). Teacher models uploading the temperature display program and shows how values update. Students follow along: pair-check that the Micro:bit displays temperature and they can see numbers changing when they warm the device with their hands.
20–30 min · Temperature data collection (Hands-on). Teacher assigns each pair a short sequence: measure 3 times (baseline near room temp, warmed, and cooled if possible using a safe method like stepping away from warm hands). Students record three readings in a table and circle the value closest to 0; teacher prompts them to label “above 0” or “below 0” where relevant.
30–38 min · Rational number reasoning (Order + magnitude). Teacher writes two of the students’ recorded temperatures on the board (include at least one negative example if possible). Students answer two quick prompts: (a) “Which is warmer, A or B?” and (b) “What is the distance from 0 for each?” using absolute value language (“magnitude,” “distance from zero”).
38–44 min · Coordinate quick-check (Distance meaning). Teacher draws a simple graph with points representing two readings using coordinates where one axis represents a consistent index (for example, Reading # on x-axis and temperature on y-axis), then asks for the distance between the points with the same x or same y. Students explain verbally or in writing how absolute value matches the distance on the graph when one coordinate is the same.
44–45 min · Exit ticket (Quick proof). Teacher collects a short response: “Write two temperature values from your table, state which is warmer, and write what 0 means in this context.” Students submit on paper or in a shared form.
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