SKU: 27464
R$10,40
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10mL 25mL 50mL 100mL 250mL 500mL 1000mL 2000mL
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Description

The Graduated Glass Cylinder with Hexagonal Polyethylene Base is laboratory glassware used for routine volumetric measurement of liquids. The graduated cylindrical body allows direct volume reading by meniscus observation, while the hexagonal polyethylene base provides increased stability during bench use. Manufactured from borosilicate glass 3.3, it offers chemical resistance suitable for common laboratory reagents and good thermal stability under moderate temperature variations. It is suitable for volumetric measurements, solution preparation, controlled transfers and routine laboratory procedures.

Characteristics

  • Graduated cylindrical body for direct volume reading;

  • Hexagonal polyethylene base providing enhanced stability;

  • Made from borosilicate glass 3.3 with suitable chemical resistance;

  • Transparent structure for clear meniscus visualization;

  • Suitable for routine laboratory volumetric measurements.

Technical Specifications

  • Body material: borosilicate glass 3.3;

  • Base material: polyethylene;

  • Base shape: hexagonal;

  • Graduated: yes;

  • Available capacities: 10 mL, 25 mL, 50 mL, 100 mL, 250 mL, 500 mL, 1000 mL, 2000 mL.

Includes

  • 1x Graduated Glass Cylinder with Hexagonal Polyethylene Base.

FAQ

  • Q: Is this cylinder suitable for volumetric measurements in laboratory routines?
    A: Yes. It is designed for routine volumetric measurement of liquids.

  • Q: Does the polyethylene base improve stability during use?
    A: Yes. The hexagonal polyethylene base increases stability during bench operation.

  • Q: Can it be used with corrosive reagents?
    A: Borosilicate glass 3.3 provides good chemical resistance to most laboratory reagents.

  • Q: Can the cylinder be heated directly?
    A: It is not intended for direct heating and should be used for measurement and transfer of liquids.

  • Q: Can the base be removed?
    A: The base is designed as a fixed component to ensure stability during use.