DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit
DIY Wooden Elevator STEM Puzzle Kit

DIY Wooden Elevator STEM Puzzle Kit

Regular price$14.95
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What Students Will Learn

Students will explore fundamental engineering and physics concepts by constructing a functioning wooden elevator. This hands-on kit teaches principles of mechanical advantage, pulley systems, and load distribution. Learners develop problem-solving skills, spatial reasoning, and fine motor coordination as they assemble the lift mechanism. The project also introduces basic structural design and the importance of precision in following technical instructions. By completing the elevator, students gain a tangible understanding of how simple machines work together to perform real-world tasks.

Who It's For

Designed for students in Years 3 to 8, this kit aligns with primary and lower secondary STEM curricula. It is suitable for classroom use in Design and Technology, Science, and integrated STEM programs. The project can be adapted for individual or small group work, making it ideal for differentiation across ability levels.

Australian Curriculum Links

This kit supports the Australian Curriculum: Science (ACSSU076 – forces and motion; ACSSU117 – energy transfer) and Design and Technologies (ACTDEK013 – mechanical systems; ACTDEP017 – producing designed solutions). It also addresses STEM F-10 learning outcomes related to engineering design processes and collaborative problem-solving.

Coding Platform

No coding required. This is a purely mechanical engineering project that focuses on hands-on construction and physics principles.

What's in the Box

Each kit includes pre-cut wooden laser-cut pieces, a pulley system, axles, string, sandpaper for smoothing edges, and illustrated assembly instructions. All components are sustainably sourced and non-toxic. No additional tools or materials are needed for assembly.

Classroom Setup & Requirements

Students require a flat work surface and approximately 45-60 minutes of class time for initial assembly. The kit is designed for minimal mess and can be completed in a standard classroom. No power tools, glue, or specialised equipment are necessary. Supervision is recommended for younger students during assembly.

Support & Warranty

Every Stemology product comes with a 12-month warranty against manufacturing defects. For technical support or replacement parts, please email admin@stemology.com.au. Our team is committed to helping you get the most out of your STEM resources.

Bulk & School Orders

Stemology offers competitive bulk pricing for class sets and whole-school orders. Schools can purchase using official purchase orders. For a quote or to place a bulk order, contact our team at admin@stemology.com.au. We also provide free delivery for orders over $500 (Australia-wide).


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