The ISOLAB Erlenmeyer Flask 100 mL is made from high-quality Boro 3.3 borosilicate glass, known for its excellent resistance to heat and chemicals. This flask is graduated with clear white enamel markings for precise measurements. It features a standard NS 29/32 ground joint, ideal for use in laboratory applications that require secure connections for various scientific processes. The flask is designed without a stopper, making it perfect for heating and mixing liquids in laboratory setups.
This Erlenmeyer flask is an essential tool for laboratory withoutrk, ensuring accurate results in heating, mixing, and chemical reactions.
It is made from high-quality Boro 3.3 borosilicate glass, known for its excellent resistance to heat and chemicals. This flask is graduated with clear white enamel markings for precise measurements. It features a standard NS 29/32 ground joint, ideal for use in laboratory applications that require secure connections for various scientific processes. The flask is designed without a stopper, making it perfect for heating and mixing liquids in laboratory setups.
Yes. It is designed for heating, mixing, and chemical reactions in laboratory environments, and offers a capacity of 100 mL to support this kind of work.
It has a capacity of 100 mL, and is supplied under manufacturer part number 028.
It is made from boro 3.3 borosilicate glass for superior durability and heat resistance. It also offers NS 29/32 for compatibility with laboratory equipment, white enamel markings for precise measurements and conformed to DIN EN ISO 4797 and DIN 12242.
For heating, mixing, and chemical reactions in laboratory environments, the ISOLAB model is the better choice, offering a capacity of 100 mL. The Heidolph model offers holds flasks securely during laboratory procedures and ideal for mixing, heating, and other laboratory processes as an alternative, while the ISOLAB model's NS 29/32 for compatibility with laboratory equipment and white enamel markings for precise measurements help make it a strong fit for heating, mixing, and chemical reactions in laboratory environments.
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