Durable classroom kits
Modular builds with sensors, motors, and controllers that withstand daily use.
Pair sturdy hardware with a clear curriculum, teacher support, and simple tools that help learners move from block-based coding to text-based programming. NatureNurture delivers classroom-ready kits, mapped learning outcomes, teacher training, and implementation support across Boards.
Robust hardware plus scaffolded curriculum boosts engagement and problem solving. This is the model we extend across our kits and training.
Modular builds with sensors, motors, and controllers that withstand daily use.
Sequenced lessons, assessments, and projects aligned to school outcomes.
Planning guides, in-class coaching, and helpline support remove guesswork.
Move from visual coding to Python or C for progressive competency.
Integrated ecosystem for schools, aligned across Boards, and used in 350+ partner schools.
Sensors, motors, controllers, and modular builds designed for daily school use.
Standards-mapped sequences with assessments and projects for measurable outcomes.
Enablement via workshops, micro-credentials, in-class coaching, and helpline support.
Pathways from blocks to Python or C, mirroring leading classroom ecosystems.
Options to integrate with after-school clubs and stage-ready challenges.
Ongoing guidance that keeps delivery consistent and classroom-ready.
India’s National Education Policy emphasises coding, computational thinking, and design-based, hands-on learning, urging schools to connect science with real-world problem solving. Robotics kits for classrooms directly serve this intent by blending making, coding, and teamwork in structured challenges.
Proven curricula remove guesswork. Standards-matched STEM labs and structured sequences show how robotics can map to computing and science outcomes, while keeping lessons practical, collaborative, and enjoyable.
A quick guide to grade bands, kit directions, coding paths, and typical outcomes. Examples illustrate ecosystems schools often know.
Grade band | Kit direction | Coding path | Typical outcomes | Examples* |
---|---|---|---|---|
Primary (Classes 3–5) | Durable builds with large elements, quick wins | Block-based coding | Sequencing, sensor use, teamwork | SPIKE Essential or Prime, VEX IQ |
Middle (Classes 6–8) | Expandable robots with richer sensors | Blocks to Python | Data logging, loops, debugging | SPIKE Prime, VEX IQ or Sphero BOLT |
Secondary (Classes 9–10) | Open platforms, IoT, DIY chassis | Python or C | Algorithmic thinking, prototyping | mBot2, microcontroller kits |
*Examples indicate ecosystem types schools often recognise. Curriculum length for kits like mBot commonly spans 14 lessons across 18 to 24 days.
Define grade bands, outcomes, and scheduling with our academic team.
Hands-on training, micro-credentials, and class-ready slides.
Formative assessment rubrics keep progress on track.
Connect projects to sustainability, entrepreneurship, and community problems.
Share your requirements and we will help you plan an implementation timeline.
Response within two working days.
Experiential pedagogy aligned across Boards, with deep classroom know-how.
Kits, lesson plans, assessments, and teacher training in one place.
From block coding to Python or C, mirroring leading programmes.
Clubs, competitions, and community showcases that grow year on year.
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