The Bel-Art Stirring Bar 12.7 x 9.5 mm PTFE Spinbar Octagonal is a high-quality stirring bar designed for efficient mixing in laboratory settings. Made from durable PTFE, this octagonal-shaped stirring bar ensures smooth, consistent stirring while resisting chemical reactions and wear. The 12.7 x 9.5 mm size makes it ideal for medium-volume flasks and vessels, providing optimal stirring for a wide range of experiments and processes.
Optimize your laboratory stirring needs with the Bel-Art PTFE Spinbar Octagonal Stirring Bar, designed for reliability and consistent performance in any lab setting.
It is a high-quality stirring bar designed for efficient mixing in laboratory settings. Made from durable PTFE, this octagonal-shaped stirring bar ensures smooth, consistent stirring while resisting chemical reactions and wear. The 12.7 x 9.5 mm size makes it ideal for medium-volume flasks and vessels, providing optimal stirring for a wide range of experiments and processes.
Yes. It is designed for Perfect for stirring in chemical, biological, and general laboratory research, and offers a size of 12.7 x 9.5 mm, ideal for medium-volume laboratory vessels to support this kind of work.
It has a size of 12.7 x 9.5 mm, ideal for medium-volume laboratory vessels, and is supplied under manufacturer part number F37110-1238.
It is made from durable PTFE construction for long-lasting performance and chemical resistance. It also offers octagonal design for enhanced stirring efficiency, interrupted profile provides greater surface area and added turbulence when compared to the smooth surface of cylindrical bars and pivot ring aids in reducing friction and chattering.
For Perfect for stirring in chemical, biological, and general laboratory research, the Bel-Art model is the better choice, offering a size of 12.7 x 9.5 mm, ideal for medium-volume laboratory vessels. The Lenz-Laborglas model offers PTFE for superior chemical resistance and durability as an alternative, while the Bel-Art model's octagonal design for enhanced stirring efficiency and interrupted profile provides greater surface area and added turbulence when compared to the smooth surface of cylindrical bars help make it a strong fit for Perfect for stirring in chemical, biological, and general laboratory research.
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