The Thermo Nunc Nunclon Sphera Petri Dish 90mm is designed for optimal cell culture and microbial growth, offering a larger surface area for more extensive experiments. The Nunclon Sphera surface treatment promotes enhanced cell attachment and growth, making it ideal for cell culture, microbial research, and other laboratory applications. This petri dish is sterile, ensuring contamination-free conditions for your work. The pack of 20 provides an economical solution for laboratories that require frequent use of petri dishes.
This petri dish offers a reliable and cost-effective solution for laboratories requiring optimal conditions for cell culture, microbial growth, and other research applications.
It is designed for optimal cell culture and microbial growth, offering a larger surface area for more extensive experiments. The Nunclon Sphera surface treatment promotes enhanced cell attachment and growth, making it ideal for cell culture, microbial research, and other laboratory applications. This petri dish is sterile, ensuring contamination-free conditions for your work. The pack of 20 provides an economical solution for laboratories that require frequent use of petri dishes.
Yes. It is designed for cell culture, microbial growth, and laboratory research, and offers a size of 90mm diameter to support this kind of work.
It has a size of 90mm diameter, and is supplied under manufacturer part number 174945.
It is made from high-quality, clear plastic for easy observation. It also offers nunclon Sphera for enhanced cell attachment, cells to grow in suspension with virtually no cell attachment and supports many different cell types and their ability to generate spheroids.
For cell culture, microbial growth, and laboratory research, the Thermo Scientific model is the better choice, offering a size of 90mm diameter. The Kartell model offers a diameter of 90 mm and 2-section format for parallel sample cultivation as an alternative, while the Thermo Scientific model's nunclon Sphera for enhanced cell attachment and cells to grow in suspension with virtually no cell attachment help make it a strong fit for cell culture, microbial growth, and laboratory research.
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