Description
Specifications Table
| Product Name | Antibiotic HiVeg® Assay Medium No. 37 | MV1667-500 gm Himedia |
|---|---|
| Quantity/Pack Size | 500 gm |
| Form | Powder |
| Grade | Laboratory Grade |
| Application | Antibiotic sensitivity testing, microbiology assays |
Product Description
Antibiotic HiVeg® Assay Medium No. 37 is a specialized microbiology assay medium formulated for accurate antibiotic susceptibility testing. This high-quality medium supports the growth of microorganisms while allowing precise evaluation of antibiotic efficacy. Whether you’re a student, researcher, or educator, this medium ensures reliable results in laboratory settings.
Designed for ease of use, this powdered medium can be reconstituted as needed, making it a cost-effective solution for labs of all sizes. Its consistent performance makes it a trusted choice for antibiotic sensitivity tests, helping you achieve reproducible outcomes every time.
When you buy Antibiotic HiVeg® Assay Medium No. 37 online from eqipped, you get a product that meets stringent quality standards. Perfect for academic institutions, research facilities, and diagnostic labs, this medium is an essential tool for microbiology studies.
Need a dependable medium for antibiotic testing? Order Antibiotic HiVeg® Assay Medium No. 37 today and ensure accurate results in your lab experiments.
FAQs
What is Antibiotic HiVeg® Assay Medium No. 37 used for?
It is primarily used for antibiotic susceptibility testing in microbiology labs.
How do I prepare this medium for use?
Dissolve the powder in distilled water as per the instructions, sterilize, and pour into petri dishes.
Is this medium suitable for educational labs?
Yes, it is widely used in academic settings for teaching antibiotic testing techniques.
Can I buy this medium in smaller quantities?
This product is available in a 500 gm pack. For bulk orders, contact eqipped for customized solutions.
What makes HiVeg® medium different from other assay media?
HiVeg® medium is plant-based, reducing the risk of animal-derived contaminants while maintaining high performance.





