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Arduino Sensors Lab Pack | 5 STEM Sensor Experiments | Coding & Electronics
Arduino Sensors Lab Pack | 5 STEM Sensor Experiments | Coding & Electronics
Arduino Sensors Lab Pack | 5 STEM Sensor Experiments | Coding & Electronics
Arduino Sensors Lab Pack | 5 STEM Sensor Experiments | Coding & Electronics
Arduino Sensors Lab Pack | 5 STEM Sensor Experiments | Coding & Electronics
Arduino Sensors Lab Pack | 5 STEM Sensor Experiments | Coding & Electronics
Arduino Sensors Lab Pack | 5 STEM Sensor Experiments | Coding & Electronics
Arduino Sensors Lab Pack | 5 STEM Sensor Experiments | Coding & Electronics
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Description

Arduino Sensors Lab Pack | 5 Arduino Sensor Experiments | STEM Electronics & Coding | Grades 5–9

Bring hands-on STEM learning into your classroom with this complete Arduino Sensors Lab Pack designed for Grades 5–9! Students explore real-world electronics, coding, engineering design, and physical computing through engaging sensor-based projects using Arduino.

This classroom-ready resource includes step-by-step labs, circuit diagrams, Arduino code, student worksheets, assessments, troubleshooting support, and an engineering design challenge — perfect for STEM classes, makerspaces, robotics clubs, technology courses, and beginner Arduino programs.

📦 WHAT’S INCLUDED
✔ 5 complete Arduino sensor labs
✔ Circuit diagrams + wiring guides
✔ Arduino code for every lab
✔ Student worksheets & reflection questions
✔ Observation tables & prediction activities
✔ Quick quizzes + answer keys
✔ Engineering Challenge project
✔ Assessment & grading rubric
✔ Teacher Quick Start Guide
✔ Troubleshooting tips for beginners
✔ Standards alignment (NGSS, CSTA, ISTE)
✔ Tinkercad / no-hardware alternative support
✔ Teacher implementation notes

🔬 LABS INCLUDED
💡 Light Sensor (LDR) — Automatic Night Light
🌡 Temperature Sensor (TMP36) — Temperature Monitor
📡 Ultrasonic Sensor (HC-SR04) — Parking Sensor
🔘 Push Button — Digital Input & LED Control
🎛 Potentiometer — Analog Input & PWM LED Dimming

🎯 SKILLS STUDENTS DEVELOP
• Arduino coding fundamentals
• Analog vs. digital input understanding
• Circuit building & breadboard skills
• Sensor data interpretation
• Engineering design thinking
• Troubleshooting & debugging
• STEM problem-solving and collaboration

👩‍🏫 PERFECT FOR
• STEM & Technology Classes
• Makerspaces
• Robotics Clubs
• Engineering Electives
• Coding Camps
• Beginner Arduino Classrooms
• Middle School STEM Programs

📚 GRADE LEVELS
Grades 5–9

TEACHING DURATION
6–9 class periods (45–60 minutes each)

💻 NO PRIOR ARDUINO EXPERIENCE REQUIRED
This resource was designed specifically for beginner-friendly classroom implementation. Clear teacher guidance and troubleshooting support are included throughout the pack.

📌 STANDARDS
Aligned to:
• NGSS
• CSTA Computer Science Standards
• ISTE Standards for Students

IMPORTANT
This resource is for classroom use only and is intended for educational purposes.

Thank you for supporting Math-O-Tronics!

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.

Arduino Sensors Lab Pack | 5 STEM Sensor Experiments | Coding & Electronics

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Highlights

Digital downloads
Grades icon
Grades
5th - 9th
Standards icon
Standards
Pages
70+
Answer Key
Included with rubric
Teaching Duration
1 Week

Description

Arduino Sensors Lab Pack | 5 Arduino Sensor Experiments | STEM Electronics & Coding | Grades 5–9

Bring hands-on STEM learning into your classroom with this complete Arduino Sensors Lab Pack designed for Grades 5–9! Students explore real-world electronics, coding, engineering design, and physical computing through engaging sensor-based projects using Arduino.

This classroom-ready resource includes step-by-step labs, circuit diagrams, Arduino code, student worksheets, assessments, troubleshooting support, and an engineering design challenge — perfect for STEM classes, makerspaces, robotics clubs, technology courses, and beginner Arduino programs.

📦 WHAT’S INCLUDED
✔ 5 complete Arduino sensor labs
✔ Circuit diagrams + wiring guides
✔ Arduino code for every lab
✔ Student worksheets & reflection questions
✔ Observation tables & prediction activities
✔ Quick quizzes + answer keys
✔ Engineering Challenge project
✔ Assessment & grading rubric
✔ Teacher Quick Start Guide
✔ Troubleshooting tips for beginners
✔ Standards alignment (NGSS, CSTA, ISTE)
✔ Tinkercad / no-hardware alternative support
✔ Teacher implementation notes

🔬 LABS INCLUDED
💡 Light Sensor (LDR) — Automatic Night Light
🌡 Temperature Sensor (TMP36) — Temperature Monitor
📡 Ultrasonic Sensor (HC-SR04) — Parking Sensor
🔘 Push Button — Digital Input & LED Control
🎛 Potentiometer — Analog Input & PWM LED Dimming

🎯 SKILLS STUDENTS DEVELOP
• Arduino coding fundamentals
• Analog vs. digital input understanding
• Circuit building & breadboard skills
• Sensor data interpretation
• Engineering design thinking
• Troubleshooting & debugging
• STEM problem-solving and collaboration

👩‍🏫 PERFECT FOR
• STEM & Technology Classes
• Makerspaces
• Robotics Clubs
• Engineering Electives
• Coding Camps
• Beginner Arduino Classrooms
• Middle School STEM Programs

📚 GRADE LEVELS
Grades 5–9

TEACHING DURATION
6–9 class periods (45–60 minutes each)

💻 NO PRIOR ARDUINO EXPERIENCE REQUIRED
This resource was designed specifically for beginner-friendly classroom implementation. Clear teacher guidance and troubleshooting support are included throughout the pack.

📌 STANDARDS
Aligned to:
• NGSS
• CSTA Computer Science Standards
• ISTE Standards for Students

IMPORTANT
This resource is for classroom use only and is intended for educational purposes.

Thank you for supporting Math-O-Tronics!

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.

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Standards

to see state-specific standards (only available in the US).
Make a line plot to display a data set of measurements in fractions of a unit (1/2, 1/4, 1/8). Use operations on fractions for this grade to solve problems involving information presented in line plots. For example, given different measurements of liquid in identical beakers, find the amount of liquid each beaker would contain if the total amount in all the beakers were redistributed equally.
Use variables to represent two quantities in a real-world problem that change in relationship to one another; write an equation to express one quantity, thought of as the dependent variable, in terms of the other quantity, thought of as the independent variable. Analyze the relationship between the dependent and independent variables using graphs and tables, and relate these to the equation. For example, in a problem involving motion at constant speed, list and graph ordered pairs of distances and times, and write the equation 𝘥 = 65𝘵 to represent the relationship between distance and time.
Use ratio and rate reasoning to solve real-world and mathematical problems, e.g., by reasoning about tables of equivalent ratios, tape diagrams, double number line diagrams, or equations.
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