1310-10 2.0 mL Low-Binding Microcentrifuge Tubes Price And Quantity
1000 Piece
1310-10 2.0 mL Low-Binding Microcentrifuge Tubes Product Specifications
Transparent
2.0 ml
Laboratory Use
Virgin Polypropylene
Industrial
1310-10 2.0 mL Low-Binding Microcentrifuge Tubes
1310-10 2.0 mL Low-Binding Microcentrifuge Tubes Trade Information
Cash in Advance (CID)
100000 Piece Per Month
7 Days
All India
Product Description
The 1310-10 2.0 mL Low-Binding Microcentrifuge Tubes are designed for laboratory and industrial use. Made from high-quality virgin polypropylene, these tubes are durable and reliable for various applications. With a capacity of 2.0 ml, they are suitable for handling small to medium volumes of samples. The transparent color allows for easy visibility of the contents, making them ideal for research, testing, and analysis purposes. Whether you are a distributor, exporter, importer, manufacturer, service provider, or supplier, these microcentrifuge tubes are essential for your lab or industrial setup. They are resistant to low-binding, ensuring minimal sample loss and maximum recovery. These tubes are a must-have for any professional or research facility requiring dependable sample storage and processing.
FAQs of 1310-10 2.0 mL Low-Binding Microcentrifuge Tubes:
Q: What is the capacity of the microcentrifuge tubes?
A: The tubes have a capacity of 2.0 ml, making them suitable for handling small to medium volumes of samples.
Q: What are the tubes made of?
A: The tubes are made of high-quality virgin polypropylene material, ensuring durability and reliability for various applications.
Q: What is the color of the tubes?
A: The tubes are transparent in color, allowing for easy visibility of the contents during sample handling and processing.
Q: What is the intended application of the tubes?
A: The tubes are designed for laboratory and industrial use, making them versatile for research, testing, and analysis purposes.
Q: Are the tubes resistant to low-binding?
A: Yes, the tubes are resistant to low-binding, ensuring minimal sample loss and maximum recovery during processing.