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Worm and Differential Axel 30 cm With Weight
Worm and Differential Axel 30 cm With Weight

Worm and Differential Axel 30 cm With Weight

MOQ : 1 Unit

Worm and Differential Axel 30 cm With Weight Specification

  • Feature
  • Smooth rotation, precision components for educational experiments
  • Automation Grade
  • Manual
  • Model No
  • WD-30CM
  • Core Components
  • Worm axel, differential axel, support stand, marked weights
  • Accuracy
  • Sufficient for classroom demonstration
  • Power Source
  • Manual, no power source required
  • Equipment Materials
  • Heavy duty metal and alloy
  • Type
  • Worm and Differential Axle with Weight
  • Usage
  • Educational demonstration; used in physics laboratories to study mechanical advantage and motion
  • Dimension (L*W*H)
  • 30 cm (axle length); width and height depend on stand and setup
  • Weight
  • Approx. 1.2 kg (with weights included)
 
 

About Worm and Differential Axel 30 cm With Weight



Explore the acclaimed Worm and Differential Axel 30 cm With Weight-a potent educational masterpiece designed for physics laboratories. Crafted from heavy-duty metal and alloy, this in-demand apparatus features smooth rotational precision and astonishing mechanical accuracy for hands-on demonstrations of torque and mechanical advantage. Mounted securely on a stable, powder-coated base with clamps, it ensures reliability and durability with anti-corrosion finishing. Each unit comes with a set of marked demonstration weights, string, hooks, and a comprehensive instruction manual-perfect for high school and undergraduate educational use.

Key Features and Competitive Advantages

This Worm and Differential Axel 30 cm boasts primary competitive advantages such as a robust alloy construction ensuring longevity, a polished and painted anti-corrosion finish, and smooth rotational components for precise demonstrations. Special features include the stable clamp-mount base, compact design for classroom compatibility, and a comprehensive set of accessories. The material features heavy-duty metal, supporting rigorous use in education settings, making this a highly valued, accurate, and lasting teaching tool.


Supply Capacity, Packaging, and Certifications

With a strong supply rate to meet institutional demand, the Worm and Differential Axel 30 cm With Weight is offered at a competitive asking price. Shipped goods are securely packed for transit protection, ensuring pristine delivery. Packaging details include sturdy boxes with cushioning for all core components and accessories. Certifications attest to educational quality and manufacturing standards, enhancing trust and satisfaction among exporters, manufacturers, suppliers, and academic institutions across India.


FAQ's of Worm and Differential Axel 30 cm With Weight:


Q: How is the Worm and Differential Axel 30 cm With Weight used in physics education?

A: It is used to demonstrate and explore principles of mechanical advantage, torque, and differential axles in classroom and laboratory experiments for high school and undergraduate students.

Q: What accessories come included with the product?

A: The equipment comes with a set of demonstration weights, string, hooks, a sturdy mounting base, and an instruction manual for easy setup and use.

Q: What materials are used in constructing the apparatus?

A: The axel and support structures are made from heavy-duty metal and alloy, featuring anti-corrosion, powder coated and polished surfaces for durability.

Q: Where can this apparatus be used effectively?

A: It is ideal for use in high school and undergraduate physics laboratories, as well as through educational demonstrations in classrooms.

Q: What is the process for setting up the Worm and Differential Axel?

A: Assembly is straightforward: mount the axle securely using clamps on the stable base, attach the included weights and string, and follow the step-by-step guidance in the provided instruction manual.

Q: How does the worm and differential axel benefit students?

A: This apparatus allows students to witness mechanical concepts in action, enhancing understanding through hands-on, observable experiments and fostering deeper learning of physics principles.

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