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Brand: Reliant Lab
Reliant Lab Capillary Tube Clamp for Surface Tension Measurement
SKU: TB-RE-66627
Estimated Delivery By: Apr 16 - Apr 18 




MRP : ₹1299 ₹799
38% OFF!
Estimated Delivery By: Apr 16 - Apr 18 
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₹799 (Including GST)
MRP : ₹1299
38% OFF!
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Short Description
Reliant Lab Capillary Tube Clamp
For Surface Tension Measurement
Country of origin: India
Specifications
- Brand: Reliant Lab
- Frame Material : Metal Frame
- No. of Capillary Tubes : 4
- Length of Tubes : 10 cm
- Included Component : 9mm Rod is also Attached to Metal Plate.
Description
The Reliant Lab Capillary Tube Clamp is a precision engineered laboratory accessory designed to securely hold and position delicate glass capillary tubes during surface tension and fluid dynamics experiments. . It is typically constructed from high quality, corrosion-resistant chrome-plated brass or stainless steel to withstand constant exposure to water and various chemical solutions. The clamp features a fine threaded screw mechanism that allows for a firm yet gentle grip, preventing the fragile glass tubes from cracking.
Features
:- Precision Screw Mechanism: Equipped with a fine-threaded thumb screw that allows for gradual tightening, providing a secure grip without damaging fragile glass.
- Vertical Alignment Stability: Engineered to maintain a strict 90 degree orientation, which is critical for accurate height measurements in capillary rise experiments.
- Corrosion Resistant Finish: Made from high-grade chrome-plated brass or stainless steel, ensuring longevity even when used with corrosive liquids or in humid environments.
- Compact and Lightweight: Its streamlined design allows it to be used in tight setups, such as inside beakers or small glass tanks, without obstructing the view of the meniscus.
Applications
:- Surface Tension Measurement: Primarily used in the "Capillary Rise Method" to hold tubes steady while measuring the height of the liquid column.
- Calibration of Glassware: Used to hold capillaries during precision marking or when comparing internal diameters using a traveling microscope.
- Fluid Mechanics Research: Provides a stable platform for observing the behavior of liquids in narrow bores under varying temperature or pressure conditions.

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