The ISOLAB Erlenmeyer Flask, 250 mL, made from high-quality Boro 3.3 borosilicate glass, features a white graduated scale for precise liquid measurements. This flask is designed for various laboratory applications, offering excellent chemical and thermal resistance. The NS 29/32 neck size, compatible with 14/23 stoppers (sold separately), ensures versatility and secure sealing. The flask’s white graduated scale makes it easy to measure liquids accurately, and the absence of a stopper allows easy access to the contents for mixing and heating.
This Erlenmeyer flask is an essential laboratory tool, providing precise measurements and reliable performance for various scientific experiments requiring liquid handling.
It features a white graduated scale for precise liquid measurements. This flask is designed for various laboratory applications, offering excellent chemical and thermal resistance. The NS 29/32 neck size, compatible with 14/23 stoppers (sold separately), ensures versatility and secure sealing. The flask’s white graduated scale makes it easy to measure liquids accurately, and the absence of a stopper allows easy access to the contents for mixing and heating.
Yes. It is designed for mixing, heating, and accurate liquid measurement in laboratory settings, and offers a capacity of 250 mL to support this kind of work.
It has a capacity of 250 mL, and is supplied under manufacturer part number 028.
It is made from boro 3.3 borosilicate glass for chemical and thermal resistance. It also offers white graduated scale for accurate and easy measurement and NS 29/32, compatible with 14/23 stoppers (sold separately).
For mixing, heating, and accurate liquid measurement in laboratory settings, the ISOLAB model is the better choice, offering a capacity of 250 mL. The Thermo Scientific model offers a capacity of 250 mL per flask as an alternative, while the ISOLAB model's white graduated scale for accurate and easy measurement and NS 29/32, compatible with 14/23 stoppers (sold separately) help make it a strong fit for mixing, heating, and accurate liquid measurement in laboratory settings.
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