The Eppendorf Deepwell Plate 96/2000 µl, with Barcodes, Sterile, Default Colour (Wells Colourless), 80 Plates is designed for high-performance manual and automated laboratory applications. Suitable for sample storage and preparation, bacteria and yeast cultivation, DNA and RNA isolation, protein analysis, and plasmid purification, this sterile deepwell plate supports reliable handling across demanding workflows.
This Eppendorf deepwell plate is a dependable choice for laboratories requiring sterile, stackable, and barcode-ready plates for efficient sample processing.
It is designed for high-performance manual and automated laboratory applications. Suitable for sample storage and preparation, bacteria and yeast cultivation, DNA and RNA isolation, protein analysis, and plasmid purification, this sterile deepwell plate supports reliable handling across demanding workflows.
Yes. It is designed for sample storage, preparation, cultivation, nucleic acid isolation, protein analysis, and plasmid purification, and offers a format of 96 wells, 2000 µl capacity per well and a centrifugation resistance of up to 6000 × g to support this kind of work.
It has a format of 96 wells, 2000 µl capacity per well and a centrifugation resistance of up to 6000 × g, and is supplied under manufacturer part number 30509315.
It offers deepwell Plate, clear wells, high-contrast alphanumeric lettering, rounded RecoverMax Well Design, and elevated well frames, sterile and yes, 121°C for 20 minutes.
For sample storage, preparation, cultivation, nucleic acid isolation, protein analysis, and plasmid purification, the Eppendorf model is the better choice, offering a format of 96 wells, 2000 µl capacity per well and a centrifugation resistance of up to 6000 × g. The Thermo Scientific model offers a capacity of 1 mL per well as an alternative, while the Eppendorf model's deepwell Plate and clear wells, high-contrast alphanumeric lettering, rounded RecoverMax Well Design, and elevated well frames help make it a strong fit for sample storage, preparation, cultivation, nucleic acid isolation, protein analysis, and plasmid purification.
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