The Hamilton Central Conductivity Standards 1.3 µS/cm, 250 mL, with an accuracy of +/-1%, are ideal for calibrating conductivity meters and probes in laboratory settings. These high-quality standards ensure reliable and accurate conductivity measurements, making them essential for environmental studies, water quality testing, and chemical analysis. With a 1.3 µS/cm conductivity value and a 250 mL volume, they offer consistent results for precise calibration.
The Hamilton Central Conductivity Standards 13 µS/cm, 250 mL, are perfect for ensuring precise and consistent conductivity measurements in laboratory, environmental, and chemical applications.
It are ideal for calibrating conductivity meters and probes in laboratory settings. These high-quality standards ensure reliable and accurate conductivity measurements, making them essential for environmental studies, water quality testing, and chemical analysis. With a 1.3 µS/cm conductivity value and a 250 mL volume, they offer consistent results for precise calibration.
Yes. It is designed for Calibration of conductivity meters and probes, and offers a conductivity value of 1.3 µS/cm and a volume of 250 mL to support this kind of work.
It has a conductivity value of 1.3 µS/cm and a volume of 250 mL, and is supplied under manufacturer part number 238973.
It offers +/-1%, traceable to NIST, certificate including actual value and expiration date and actual value and expiration date on bottle.
For Calibration of conductivity meters and probes, the Hamilton model is the better choice, offering a conductivity value of 1.3 µS/cm and a volume of 250 mL. The Mettler-Toledo model offers a conductivity of 84 µS/cm and a volume of 250 ml as an alternative, while the Hamilton model's +/-1% and traceable to NIST help make it a strong fit for Calibration of conductivity meters and probes.
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