Description
Specifications Table
| Product Name | Density Standard, 0.6791 g/ml at 50°C |
|---|---|
| Pack Size | 100 ml |
| Form | Liquid |
| Grade | Certified Reference Material |
| Application | Calibration of densitometers, pycnometers, and other density-measuring instruments |
Product Description
When precision matters, the Density Standard 0.6791 g/ml at 50°C from Avantor ensures your lab equipment delivers accurate results every time. Designed for calibrating densitometers, pycnometers, and other density-measuring instruments, this certified reference material is a must-have for research labs, educational institutions, and quality control environments.
Whether you’re a student verifying experimental data or a researcher fine-tuning analytical methods, this density standard provides the reliability you need. The 100 ml pack size offers ample volume for repeated calibrations without frequent reorders.
At eqipped, we understand the importance of consistency in scientific measurements. That’s why we source high-quality standards like this one to help you maintain compliance and confidence in your work.
Need a dependable density standard for calibration? Order yours today and ensure flawless measurements in your lab.
FAQs
What is the shelf life of this density standard?
The Density Standard 0.6791 g/ml has a shelf life of 2 years when stored under recommended conditions.
Can this standard be used for both manual and automated densitometers?
Yes, it is compatible with most densitometers, including manual and automated models, ensuring versatile calibration.
Is this standard traceable to NIST or other recognized bodies?
Yes, this Avantor density standard is traceable to NIST (National Institute of Standards and Technology) for assured accuracy.
How should I store this density standard?
Store the bottle tightly sealed at room temperature (15–25°C) to maintain stability and prevent evaporation.
Can I use this for educational lab experiments?
Absolutely. This standard is ideal for academic settings, helping students understand density calibration principles.