Volume Set
- Made of paper cut outs, with this kit basic volume shapes such as cone, pyramid, cuboid, cube and cylinder, can be easily made.
- Makes LEARNING FUN & enables DEEPER UNDERSTANDING OF CONCEPTS.
- Enables 21st century skills of INNOVATION & PROBLEM SOLVING through Project Based Learning (PBL) approach.
- Triggers CURIOSITY & ignites the spark of Science and CREATIVITY in your child.
- Improves ATTENTION SPAN & PERSEVERANCE among children in this fast paced world of instant gratification
- Increases MOTIVATION TO LEARN.
Unlock the fascinating world of geometry and measurement with the Volume Set – Mathematical Toy for Conceptual Learning. This educational toy is designed to introduce children to the fundamental concept of volume in a hands-on and engaging way. Perfect for students, educators, or curious minds, this set includes various geometric shapes such as cubes, cylinders, cones, and spheres, all in different sizes to help kids visualize and compare volumes.
Crafted from durable, child-safe materials, each piece is color-coded to represent different dimensions and capacities. The set allows learners to explore how volume is measured and calculated, whether through filling the shapes with water, sand, or small objects. By physically handling the shapes, students can grasp abstract mathematical principles in a tangible and intuitive manner, making it ideal for classroom demonstrations or homeschooling activities.
The Volume Set fosters critical thinking, problem-solving, and mathematical reasoning, as learners can experiment with combining shapes to form new volumes or comparing the capacities of different objects. It also supports STEM education by linking geometry, arithmetic, and real-world applications of math. This set encourages independent discovery and can be used for collaborative learning as well, making abstract concepts both fun and accessible.
Whether you’re teaching young learners or simply enhancing your child’s mathematical skills, the Volume Set provides a comprehensive tool for exploring volume, capacity, and geometry in a dynamic way that promotes long-term understanding.
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