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Brand: Reliant Lab
Reliant Lab Kater’s Reversible Pendulum (Brass) With 120cm Long Brass Rod & Wall Bracket
SKU: TB-RE-66528
Estimated Delivery By: Apr 16 - Apr 18 




MRP : ₹7299 ₹5999
18% OFF!
Estimated Delivery By: Apr 16 - Apr 18 
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₹5999 (Including GST)
MRP : ₹7299
18% OFF!
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Short Description
Reliant Lab Kater’s Reversible Pendulum (Brass)
With 120cm Long Brass Rod & Wall Bracket
Country of origin: India
Specifications
- Brand: Reliant Lab
- Product Quantity : 1 Piece
- Brass Rod Length : 120 cm
Description
The Reliant Lab Kater’s Reversible Pendulum (Brass) is a high-precision mechanical instrument designed for the accurate determination of the acceleration due to gravity . Unlike standard pendulums, this apparatus is constructed from premium brass, which provides a consistent mass density and superior resistance to environmental corrosion. It utilizes the principle of "reciprocity" of the centers of suspension and oscillation. The set includes a 120cm brass rod, adjustable knife edges, and sliding weights, allowing students to adjust the pendulum until its period of oscillation is identical from both ends, thereby simplifying the calculation of a simple measurement of length and time.
Features
:- 120cm Solid Brass Rod: Crafted from high-quality, heavy-gauge brass for uniform mass distribution and long-term structural stability.
- Dual Hardened Steel Knife Edges: Features two adjustable, razor-sharp knife edges that provide near-frictionless pivot points for high-precision oscillation.
- Sliding Brass Weights: Equipped with one heavy and one light sliding brass weight to fine-tune the center of oscillation and center of gravity.
- Reversible Suspension Design: Engineered specifically for inversion, allowing for the experimental verification of the reciprocal nature of the pivot points.
Applications
:- Study of Torsional Reciprocity: Demonstrates the physical law that the period of oscillation remains unchanged when the centers of suspension and oscillation are swapped.
- Rotational Dynamics Research: Facilitates advanced study into the moment of inertia and radius of gyration of complex rigid bodies.
- Gravitational Analysis: Ideal for university-level research into small local variations in gravity due to altitude or geographic location.

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