Description
Specifications Table
| Product Name | Sodium Hexanitrocobaltate(III) for Analysis |
|---|---|
| Pack Size | 25 GM |
| Form | Solid |
| Grade | Analytical |
| Application | Qualitative and quantitative analysis |
Product Description
Sodium Hexanitrocobaltate(III) is a high-purity reagent designed for analytical applications in laboratories. This compound is widely used in qualitative and quantitative analysis, particularly in the detection and determination of potassium ions. Its stability and precision make it a reliable choice for researchers, students, and educators who require accurate results in their experiments.
When you buy Sodium Hexanitrocobaltate(III) online from eqipped, you get a product that meets the stringent standards of analytical-grade chemicals. Whether you’re conducting experiments in educational institutions or research facilities, this reagent ensures consistency and reliability in your findings.
For those looking to buy Sodium Hexanitrocobaltate(III) for lab use, eqipped provides a seamless purchasing experience. Our platform is trusted by professionals across India for delivering high-quality lab supplies. With a focus on purity and performance, this product is an essential addition to any analytical chemistry toolkit.
Need precise analytical reagents? Order Sodium Hexanitrocobaltate(III) today for accurate lab results.
FAQs
What is Sodium Hexanitrocobaltate(III) used for?
It is primarily used for the detection and quantification of potassium ions in analytical chemistry.
Is this product suitable for educational labs?
Yes, it is commonly used in educational settings for teaching analytical techniques.
How should I store Sodium Hexanitrocobaltate(III)?
Store it in a cool, dry place away from moisture and incompatible chemicals.
What is the shelf life of this product?
The shelf life is typically long when stored properly, but always check the expiration date on the packaging.
Can I buy Sodium Hexanitrocobaltate(III) in bulk?
Yes, eqipped offers bulk purchasing options for laboratories with higher demand.