Age group: 5-14
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This Includes
25 live tutoring sessions
Access on mobile and web
Certificate of completion
Hands-on Exercises & Practical Projects
Personalized Feedback & Coaching
Session Recordings for Rewatching
# Robotics Course ## Module 1: Think Like a Designer - **Intro to design thinking in robotics** - **Activity:** Identify local/school problems robots could solve - **Worksheet:** Design Brief – “My Robot Will Help With...” - **Warm-up project:** Sketch a smart helper bot --- ## Module 2: Multi-Sensor Madness - **Combine sensors:** light + motion, sound + distance, etc. - **Hands-on:** Set up robots to react to 2+ inputs - **Challenge:** “Don’t Crash!” sensor-driven movement task - **Debugging sheet:** What went wrong, what worked? --- ## Module 3: Nested Logic and Advanced Commands - **Explore “if this AND that, then...” logic** - **Use block-based tools** to create conditional sequences - **Mission:** Smart Trash Bot (sort colored objects with sensors) - **Worksheet:** Build the flowchart for your logic --- ## Module 4: Solve and Serve – Smart Robot Project - **Choose a real-world use case:** safety, health, delivery, etc. - **Plan with flowchart → build prototype → code behavior** - **Test with changing inputs and review performance** - **Peer Testing Lab:** Test and troubleshoot each other's bots --- ## Module 5: Present Like a Pro - **Prepare slides, demo, and speaking points** - **Present robot solution** to class/parents in “Innovation Day” - **Final Reflection:** What did I learn as a designer and coder? - **Bonus:** Get feedback from a mentor or guest (optional)
Prior experience with block-based coding (Scratch, Blockly, or kit-specific app).
Access to a robotics kit with at least 2 types of sensors.
Understand how multiple sensors can work together in robotic systems.
Apply nested and multi-condition logic in programming.
Use the design thinking process to build purposeful robots.
Test and iterate robotic systems to improve performance.
Present a complete robot solution for a real-world challenge.
Students build and program robots that respond to multiple inputs.
Students apply nested conditions in real-time robot actions.
Students identify a problem, design a solution, and build a working prototype.
Students test, refine, and debug robotic behaviors collaboratively.
Students confidently explain their design and coding logic during presentations.
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What robot kits work best for Grade 5? What robot kits work best for Grade 5?
LEGO WeDo 2.0, mBot, Dash & Dot, or any Scratch-compatible sensor-rich kits.
Is this course beginner-friendly?
Yes, though it’s recommended learners have prior exposure to block coding and basic robotics.
Can we do this online with a mentor?
Absolutely. Classes are structured to support remote or hybrid learning with hands-on builds at home.
Do students work solo or in teams?
Both! Students can do individual builds and collaborate on testing/debugging.
What if we don’t have sensors?
Simulations or simplified logic tasks are provided, but real sensors enhance the experience significantly.
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