The Thermo Nunc U96 DeepWell Plate is designed for efficient sample collection, storage, and combinatorial chemistry applications. Made from natural polypropylene (PP), this 96-well plate features a round bottom design to minimize fluid retention and enhance mixing efficiency. With a nominal capacity of 2 mL per well and a total of 96 wells, it offers ample space for various laboratory processes. The plate is non-sterile and untreated, providing a versatile option for multiple applications.
This U96 DeepWell Plate is ideal for use in sample collection, storage, combinatorial chemistry, substance libraries, and bacterial and yeast cultures. Its resistance to most chemicals, solvents, and alcohols used in combinatorial chemistry makes it a reliable choice for various laboratory applications.
It is designed for efficient sample collection, storage, and combinatorial chemistry applications. Made from natural polypropylene (PP), this 96-well plate features a round bottom design to minimize fluid retention and enhance mixing efficiency. With a nominal capacity of 2 mL per well and a total of 96 wells, it offers ample space for various laboratory processes. The plate is non-sterile and untreated, providing a versatile option for multiple applications.
Yes. It is designed for efficient sample collection, storage, and combinatorial chemistry applications, and offers a capacity of 2 mL per well and wells of 96 (8 x 12 array) to support this kind of work.
It has a capacity of 2 mL per well, wells of 96 (8 x 12 array) and dimensions of 128 mm x 86 mm, and is supplied under manufacturer part number 278752.
It is made from natural polypropylene (PP). It also offers round bottom, non-treated and non-sterile.
For efficient sample collection, storage, and combinatorial chemistry applications, the Thermo Scientific model is the better choice, offering a capacity of 2 mL per well, wells of 96 (8 x 12 array) and dimensions of 128 mm x 86 mm. The Eppendorf model offers a temperature control range of 1-100 C (min. 4 C above ambient), 1 C increments, predefined temperature keys of 37, 42, 56 and 95 C and a mixing speed of 300-2,000 rpm as an alternative, while the Thermo Scientific model's round bottom and non-treated help make it a strong fit for efficient sample collection, storage, and combinatorial chemistry applications.
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