Robotics & AI – Grade 6
Level: Middle Stage
- 5K+ Registered Students
- 50+ Hands-on Projects
- 30+ Live Sessions
Program Overview
-
NEP 2020 Aligned STEM Curriculum
Comprehensive, grade-wise lesson plans, projects, and resources aligned with national education frameworks to foster experiential learning.
-
Hands-On & Project-Based Learning
Practical lab activities, real-world simulations, and engaging projects designed to build problem-solving and innovation skills.
-
Expert-Led & Adaptive Learning
Live, interactive sessions led by experienced STEM trainers, supported by adaptive pathways and techno-books for guided, personalized learning.
-
21st Century Skills Development
Focus on creativity, logical reasoning, critical thinking, teamwork, and communication, preparing students for future academic and professional success.
-
Experiential & Hands-On Learning
Students learn by building and experimenting with models, making abstract ideas concrete and memorable.
-
Visual & Interactive Teaching Aids
Videos, simulations, and interactive experiments simplify complex concepts and enhance retention.
-
Project-Based Learning (PBL)
Each module culminates in projects that encourage creativity, design thinking, and problem-solving.
-
Storytelling & Contextualization
Robotics and AI are introduced through relatable stories and everyday examples, helping children connect technology with real life.
-
Personalized & Adaptive Guidance
Small group and 1:1 learning ensures that every child progresses at their own pace with focused attention.
-
Playful Exploration & Collaboration
Games, puzzles, and group activities create a joyful learning environment while fostering teamwork and innovation.
Our Methodology
- 30+ interactive live sessions (45–60 minutes each, teacher-led and highly engaging)
- 50+ hands-on activities & virtual simulations with real-world application
- 20+ storytelling & design-based projects that connect concepts to practice
- STEM Lab setup & techno-books with QR-based interactive content and resources
- Activity-based & project-based assessments to track progress and improvement
- Exploration of AI & robotics in everyday life through simple, age-appropriate applications
- Progressive learning pathways covering mechanical builds, sensor integration & AI-powered simulations
- National-level SparkX Innovation Challenge to showcase creativity, teamwork, and problem-solving
Goals that we achieve through the program
STEM Foundation
- Build a Strong STEM Base
- 50+ Hands-on Activities
- Learn basics of machines, motion, and simple circuits
- Develop Early Engineering Thinking
Creativity & Collaboration
- Spark Creativity & Imagination
- Design and Build “Dream Robots”
- 30+ Team Projects and Wonder Challenges
- Enhance Communication & Teamwork
AI Awareness & Growth Mindset
- Gain Early Awareness of AI in Daily Life
- 10+ Design Thinking Activities
- Develop Problem-Solving and Logical Thinking
- Build Confidence through Making & Experimenting
Our Curriculum
| Session | Chapter Name | Project | Concepts Covered |
|---|---|---|---|
| 1 | The World of Robotics | Intro to Robotics & Applications | What is a robot? History of robotics, uses in the real world |
| 2 | Stop! There’s Something Behind You! | Reverse Parking Assist System | Sensors, motors, obstacle detection, auto-stop logic |
| 3 | Walk to Open – The Magic Door | Hand Motion Controlled Door | IR sensor application, automation, motor control |
| 4 | Hands-Free Curtains! | Motion Controlled Roller Blinds | Smart homes, remote control via motion, embedded systems |
| 5 | Auto-Avoid: The Thinking Wheelchair | Obstacle-Avoiding Wheelchair | Accessibility tech, obstacle detection using sensors |
| 6 | Chase the Line, Dodge the Danger! | Black Line Avoiding Robot | IR sensor logic, real-world safety applications |
| 7–8 | Build Your Own Wonder – I | Edge Avoider Robot | Design for safety: drop protection, logic design |
| 9–10 | Build Your Own Wonder – II | Ball Hitter Bot | Precision movement, kinetic applications, team project |
| Session | Chapter Name | Project | Concepts Covered |
|---|---|---|---|
| 1 | RGB Adventure: Create Your Own Lamp | Create an RGB Light System | RGB LED circuit, color mixing, breadboard connections |
| 2 | Build Your Own Two-Way Smart Gate! | Create a Two-Way Gate System | Motor control, breadboard wiring, smart automation |
| 3 | Beep-Beep Warning System | Create a Mini Alert System | Push button, buzzer circuit, prototype testing |
| 4 | Drive Your Code: First Robot Car | Create a Remote-Controlled Car | Motors, movement control, coding basics |
| 5 | Glide Across the Rope | Create a Mini Ropeway Car | Pulleys, motor-driven motion, real-life comparison |
| 6 | Kick Into Action: Football Robot | Design and Build a Football Robot | Gears, motors, robotic kicking mechanism |
| 7–8 | Build Your Own Wonder – I | Design a Smart Volume Controller | Sound sensing, electromagnetism, functional prototype |
| 9–10 | Build Your Own Wonder – II | Design a Robotic Transporter | Automation, design process, real-world application |
Testimonials
Ankit Kumar
Afzal Siddiqui
Ravi Kumar
Frequently Asked questions
The FAQ section provides quick answers to common questions, helping users find information easily and save time.
Do you have questions?
Do you have questions?