The Eppendorf Deep-Well Plates 96 x 2000µl Green, Pack of 20 are designed for efficient sample handling and storage in laboratory environments. These high-quality deep-well plates are ideal for high-throughput applications, offering a robust design with excellent chemical resistance. The 2000µl capacity and 96-well configuration make them suitable for a wide range of research and diagnostic applications.
Eppendorf Deep-Well Plates provide a reliable and durable solution for laboratories requiring high-volume sample storage and processing.
It are designed for efficient sample handling and storage in laboratory environments. These high-quality deep-well plates are ideal for high-throughput applications, offering a robust design with excellent chemical resistance. The 2000µl capacity and 96-well configuration make them suitable for a wide range of research and diagnostic applications.
Yes. It is designed for efficient sample handling and storage in laboratory environments, and offers a well configuration of 96 wells for high-throughput applications and a volume capacity of 2000µl per well for efficient liquid handling to support this kind of work.
It has a well configuration of 96 wells for high-throughput applications and a volume capacity of 2000µl per well for efficient liquid handling, and is supplied under manufacturer part number 30501330.
It is made from green-colored, chemical-resistant plastic. It also offers clear wells, frame, white or coloured and high-contrast, alphanumeric lettering.
For efficient sample handling and storage in laboratory environments, the Eppendorf model is the better choice, offering a well configuration of 96 wells for high-throughput applications and a volume capacity of 2000µl per well for efficient liquid handling. The Grant model offers interchangeable block with precise well dimensions to ensure a snug fit for the specified deep well plate as an alternative, while the Eppendorf model's clear wells and frame, white or coloured help make it a strong fit for efficient sample handling and storage in laboratory environments.
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