Robotics & AI – Grade 7
Level: Middle Stage
- 5K+ Registered Students
- 50+ Hands-on Projects
- 30+ Live Sessions
Program Overview
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NEP 2020 Aligned STEM Curriculum
Comprehensive, grade-wise lesson plans, projects, and resources aligned with national education frameworks to foster experiential learning.
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Hands-On & Project-Based Learning
Practical lab activities, real-world simulations, and engaging projects designed to build problem-solving and innovation skills.
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Expert-Led & Adaptive Learning
Live, interactive sessions led by experienced STEM trainers, supported by adaptive pathways and techno-books for guided, personalized learning.
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21st Century Skills Development
Focus on creativity, logical reasoning, critical thinking, teamwork, and communication, preparing students for future academic and professional success.
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Experiential & Hands-On Learning
Students learn by building and experimenting with models, making abstract ideas concrete and memorable.
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Visual & Interactive Teaching Aids
Videos, simulations, and interactive experiments simplify complex concepts and enhance retention.
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Project-Based Learning (PBL)
Each module culminates in projects that encourage creativity, design thinking, and problem-solving.
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Storytelling & Contextualization
Robotics and AI are introduced through relatable stories and everyday examples, helping children connect technology with real life.
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Personalized & Adaptive Guidance
Small group and 1:1 learning ensures that every child progresses at their own pace with focused attention.
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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 | Robotics Meets AI: A Smart Team | AI Smart Assistant | Define AI, understand real-world uses, design AI-enhanced robots |
| 2 | Eyes of the Future | AI Vision Object Detector | Train image recognition models, understand computer vision |
| 3 | Smart Lighting | Face Recognition Smart Lamp | Use face recognition for real-world utility, apply AI logic |
| 4 | Stay Awake | AI Sleep Detection Alarm | Train sleepy vs awake faces, explore safety-focused automation |
| 5 | Gripper Power | Mechanical Robot Gripper | Build rack & pinion systems, learn robotic grip mechanisms |
| 6 | Think, Detect, Grab | AI-Based Smart Gripper | Automate object grabbing with AI and sensors |
| 7–8 | Build Your Own Wonder – I | AI Smart Helmet Detector | Capstone Design Project 1 – Empathize, Prototype, Present |
| 9–10 | Build Your Own Wonder – II | AI Smart Plant Monitor | Capstone Design Project 2 – Real-life automation with sensors and AI |
| Session | Chapter Name | Project | Concepts Covered |
|---|---|---|---|
| 1 | The Automatic Night Lamp! | Create an Automatic Night Lamp using Arduino Uno and LDR Sensor | Arduino basics, LDR sensor input, LED control, light-based automation |
| 2 | Servo Warriors: Angle Control! | Create a Robotic Arm that Rotates at 0°, 90°, and 180° | Servo motor control, Arduino coding, angle-based motion, robotics applications |
| 3 | Smart Signals: The Colorful Alert Bot! | Create a Smart Colorful Alert System | RGB LED color mixing, buzzer control, Arduino input-output programming |
| 4 | Drive Your Code: First Robot Car | Build a Remote-Controlled Car | Motor control, chassis assembly, movement logic, basic coding for motion |
| 5 | BeatGlide: Create Music with a Wave of Your Hand | Design a Piano Robot using IR Sensors | Gesture recognition, IR sensor input, sound generation, touchless technology |
| 6 | RoboGroove: Dances to Your Touch! | Design and Build a Dance Robot | Touch sensor working, motor coordination, coding responses to touch |
| 7–8 | Build Your Own Wonder – I | Design and Build a Robot Performer using Advanced A-Bot Kit | Problem-solving, design thinking, motion, light, and sound integration |
| 9–10 | Build Your Own Wonder – II | Design and Build a Smart Robot Gate | Automation, microcontroller control, prototyping, real-world smart systems |
Testimonials
Ankit Kumar
Afzal Siddiqui
Ravi Kumar
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