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Brand: Reliant Lab
Reliant Lab Kater’s Reversible Pendulum,(Iron) With 120cm Long Steel Rod & Wall Bracket
SKU: TB-RE-66529
Estimated Delivery By: Apr 16 - Apr 18 




MRP : ₹3599 ₹2299
36% OFF!
Estimated Delivery By: Apr 16 - Apr 18 
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₹2299 (Including GST)
MRP : ₹3599
36% OFF!
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Short Description
Reliant Lab Kater’s Reversible Pendulum,(Iron)
With 120cm Long Steel Rod & Wall Bracket
Country of origin: India
Specifications
- Brand: Reliant Lab
- Product Quantity : 1 Piece
- Long Steel Rod : 120cm
- Material : Iron
Description
The Reliant Lab Kater’s Reversible Pendulum (Iron) is a high-precision scientific instrument used to determine the acceleration due to gravity with extreme accuracy. Unlike standard compound pendulums, Kater’s design utilizes the principle of "reciprocity." It consists of a 120cm long steel rod fitted with two adjustable knife edges and two sliding weights (one heavy, one light). By adjusting the positions of these weights until the period of oscillation is identical when the pendulum is swung from either knife edge, the distance between the knife edges becomes the "equivalent length" of a simple pendulum, allowing for the direct calculation without needing to know the center of gravity or the radius of gyration.
Features
:- Heavy and Light Sliding Weights: Includes a pair of iron/steel weights (one large, one small) that can be moved along the rod to fine-tune the center of oscillation.
- Sturdy Wall Bracket: Comes with a heavy-duty, vibration-damping wall bracket to ensure a secure and level suspension during long timing cycles.
- Corrosion Resistant Finish: The rod and components are finished with nickel or chrome plating to ensure durability and precision in various laboratory climates.
- Dual Hardened Steel Knife Edges: Equipped with two opposing, adjustable knife edges that provide near-frictionless pivot points for reversible oscillation.
Applications
:- Study of Reciprocity: Demonstrates the physical principle that the centers of suspension and oscillation are interchangeable.
- Rotational Dynamics Research: Facilitates advanced experiments in the moment of inertia and rotational mechanics of rigid bodies.
- Verification of SHM Laws: Provides a complex model for studying angular simple harmonic motion and period-frequency relationships.

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