DETERMINATION OF MODULUS OF RIGIDITY  OF WIRE BY MAXWELLS NEEDLE
DETERMINATION OF MODULUS OF RIGIDITY  OF WIRE BY MAXWELLS NEEDLE

DETERMINATION OF MODULUS OF RIGIDITY OF WIRE BY MAXWELLS NEEDLE

DETERMINATION OF MODULUS OF RIGIDITY OF WIRE BY MAXWELLS NEEDLE Specification

  • Type
  • Laboratory Apparatus for Determination of Modulus of Rigidity
  • Material
  • Stainless Steel body with precision wire
  • Size
  • Standard experimental size (needle length approx. 30 cm)
  • Input Voltage
  • Not required (manual operation)
  • Color
  • Silver (metallic finish)
  • Dimension (L*W*H)
  • Approx. 35 cm x 15 cm x 15 cm
  • Capacity
  • Designed for wires of diameter: 0.3 mm to 0.6 mm
  • Noise Level
  • Silent/manual operation
  • Usage
  • Educational and research laboratory apparatus for physics experiments
  • Weight Set Capacity
  • Supports up to total load of 500 g
  • Scale Type
  • Mounted with high-precision graduated scale for angular readings
  • Calibration
  • Factory calibrated for standard experimental accuracy
  • Operating Environment
  • Indoor, laboratory conditions
  • Supported Wire Materials
  • Copper, steel, brass wires
  • Display Type
  • Manual dial/scale reading
  • Measurement Range
  • Supports measurements for modulus of rigidity () in the range of common wire materials
  • Compliance
  • Conforms to standard laboratory experiment norms
  • Accessories Included
  • Includes set of weights (50 g, 100 g, 200 g), wire clamps, and support stand
  • Model Number
  • MW-2024
  • Experimental Setup
  • Comprises hollow cylindrical needle, wire suspension, loading pan, and stable base
 
 

About DETERMINATION OF MODULUS OF RIGIDITY OF WIRE BY MAXWELLS NEEDLE



Reserve the gilt-edged Maxwell's Needle MW-2024 for invincible precision in determining the modulus of rigidity () of copper, steel, or brass wires. Featuring an uncommon high-precision graduated scale for angular readings, this apparatus is crafted from robust stainless steel with a metallic finish. Add to Cart today to secure the lowest price on this silent, manually operated, factory-calibrated system. Supplied with an accessory set and supporting up to 500 g, it's the trusted choice for educational and research laboratories seeking reliable, compliant equipment.

Versatile Laboratory Use and Applications

The DETERMINATION OF MODULUS OF RIGIDITY '' OF WIRE BY MAXWELL'S NEEDLE is expertly designed for precise use in educational and research laboratories. It enables students and scientists to measure the modulus of rigidity of various wire materials such as copper, steel, and brass. This apparatus is widely applied in physics departments of schools, colleges, universities, and research centers, where practical experimentation with physical properties is essential for learning and innovation.


Export Markets, Supply, and Packaging

Delivered to major export markets across Asia, Africa, and beyond, this apparatus is packaged with careful attention to safety and accountability. Transportation timelines are estimated based on location, with prompt dispatch for both bulk and individual orders. With reliable supply ability through established distributor, exporter, and manufacturer channels in India, each unit is professionally packed to ensure secure arrival, supporting both domestic and international academic needs.


FAQ's of DETERMINATION OF MODULUS OF RIGIDITY aIa OF WIRE BY MAXWELLaS NEEDLE:


Q: How does the Maxwell's Needle apparatus help in determining the modulus of rigidity of wires?

A: The Maxwell's Needle apparatus measures small angular deflections of a wire under load, allowing accurate calculation of the modulus of rigidity () for specific materials like copper, steel, or brass. Its high-precision graduated scale ensures reliable and repeatable results.

Q: What wire materials and diameters are supported by this apparatus?

A: This apparatus is designed to test copper, steel, and brass wires with diameters ranging from 0.3 mm to 0.6 mm, making it versatile for various educational and research applications.

Q: Where can this apparatus be effectively used?

A: It is mainly used in school and college physics laboratories, university research departments, and educational training centers that conduct experiments involving wire torsion and modulus measurements.

Q: What are the advantages of using a manually operated, silent apparatus like this?

A: Manual operation ensures silent, disturbance-free use in laboratories. The lack of electrical requirements makes it convenient and safe, while factory calibration guarantees standard experimental accuracy.

Q: What items are included in the package upon delivery?

A: Each unit is delivered with essential accessories, including a set of weights (50 g, 100 g, 200 g), wire clamps, a support stand, a stable base, and documentation, ensuring a comprehensive experimental setup.

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