TORSION PENDULUM
TORSION PENDULUM

TORSION PENDULUM

MOQ : 1000 Pieces

TORSION PENDULUM Specification

  • Speed Range
  • Designed as per experimental requirements
  • Features
  • Heavy base, Smooth operation, Precise measurement scale, Durable construction
  • Control Type
  • Manual
  • Display Type
  • Scale/Pointer Indication
  • Shape
  • Vertical Stand with Circular Base
  • Accuracy
  • High (Designed for Laboratory Precision)
  • Type
  • Torsion Pendulum
  • Dimension (L*W*H)
  • 600 x 300 x 600 mm (approximate)
  • Equipment Type
  • Physics Lab Instrument
  • Equipment Materials
  • Mild Steel Frame with Polished Metal Fittings
  • Power
  • Not Required (Manual Operation)
  • Material
  • Metal
  • Application
  • Laboratory
  • Warranty
  • No
 

TORSION PENDULUM Trade Information

  • Minimum Order Quantity
  • 1000 Pieces
  • Payment Terms
  • Letter of Credit (L/C), Telegraphic Transfer (T/T), Letter of Credit at Sight (Sight L/C)
  • Supply Ability
  • 1000 Pieces Per Month
  • Delivery Time
  • 7 Days
  • Sample Available
  • Yes
  • Sample Policy
  • Sample costs shipping and taxes has to be paid by the buyer
  • Main Domestic Market
  • All India
 

About TORSION PENDULUM

Our technically-advanced manufacturing and testing unit has betrothed our organization to manufacture, export and supply Torsion Pendulum that finds its wide applications in practical related to physics. The provided pendulum is manufactured using utmost quality metal alloys and contemporary techniques in adherence with international quality standards. The offered pendulum is designed as a simple oscillator to measure moment of inertia of objects. In addition to this, clients can purchase this Torsion Pendulum from us at the most reasonable prices.

Features:

  • Equipped with cylindrical bodies for ease in oscillation

  • Inverted chuck screw connection

  • Leveling screw for horizontal balance

  • Resistant to corrosion and mechanical impact



Reliable Design for Accurate Physics Experiments

This Torsion Pendulum is constructed with laboratory precision in mind. Its finely marked measurement scale, coupled with a stable, anti-vibration base, makes it suitable for demanding angular oscillation and torsional modulus experiments. The high-grade steel suspension wire and robust clamp mechanism ensure smooth and repeatable operation every time.


Durability and Ease of Use

Crafted from powder-coated and polished metals, the device is both durable and easy to handle. The manual operation guarantees a reliable and straightforward user experience, with no need for electrical power. Its vertical stand and circular base provide a compact yet stable footprint for any laboratory setting.

FAQs of TORSION PENDULUM:


Q: How is the Torsion Pendulum set up and operated in a laboratory experiment?

A: To set up the Torsion Pendulum, securely fasten it to a stable laboratory surface using the provided anti-vibration base. Attach the pendulum rod with the clamp mechanism and suspend it using the high-grade steel wire. The apparatus is manually operated; apply angular displacement and observe the pointer/scale for oscillation measurements.

Q: What materials are used in the Torsion Pendulums construction and why?

A: The frame is made from mild steel with polished metal fittings, and the suspension wire is crafted from high-grade steel. These materials are chosen for their strength, durability, and resistance to wear, ensuring precise measurements and long equipment life.

Q: When should the Torsion Pendulum be used in a physics lab?

A: The instrument is ideal for conducting experiments related to torsional rigidity, modulus of rigidity, and the determination of the moment of inertia. Its most commonly used during laboratory modules focusing on mechanical properties and oscillatory motion in physics courses.

Q: Where is the measurement indicated on the Torsion Pendulum?

A: Measurement readings are indicated via a finely graduated scale, paired with a pointer for high sensitivity. This allows for precise detection and recording of angular displacement and oscillation period directly from the apparatus during experiments.

Q: What process is involved in determining the modulus of rigidity using this instrument?

A: Begin by applying a known angular force to the pendulum rod and record the resulting oscillations using the precision scale. The modulus of rigidity is then calculated from the observed oscillation period and the physical parameters of the pendulum, according to standard experimental procedures.

Q: How does the heavy anti-vibration base benefit experimental results?

A: The anti-vibration heavy base minimizes external vibrations and disturbances, providing stability. This ensures that the measurements reflect only the torsional oscillations of the pendulum, thus enhancing the accuracy and repeatability of experimental outcomes.

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