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Z717266

Nunc® 96 DeepWell plate, non-treated

maximum volume 2 mL, non-sterile, round bottom natural polypropylene wells

Synonyme(s) :

96 deepwell culture plate, 96 deepwell plate

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About This Item

Code UNSPSC :
41122107
Nomenclature NACRES :
NB.15

Matériaux

natural polypropylene
polypropylene
round bottom natural polypropylene wells

Stérilité

non-sterile

Caractéristiques

lid: no

Conditionnement

pack of 5 ea

Fabricant/nom de marque

Nunc 278752

Volume maximum

2 mL

Plaque/Plateau, L × l

128 mm × 86 mm

Taille

96 wells , deep wells

Volume maximum des puits

2 μm

Volume des puits

2 mL

Volume de travail

1.9 mL

Couleur

natural

Adéquation

suitable for (sample collection, storage, combinatorial chemistry and library applications)

Type de liaison

non-treated surface

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Description générale

Nunc® 96 DeepWell round bottom plates

  • Unique low design with shared well technology for increased well volume
  • 1.3 and 2.0 mL volume capacity
  • Optimum storage capacity and improved mixing
  • Round well shape reduces liquid retention
  • Well cap available for safe storage – minimal protrusion into each well
  • Ideal for sample collection, storage, combinatorial chemistry and library applications
  • Resistant to most chemicals, solvents and alcohols used in combinatorial chemistry
  • Widely used for bacterial and yeast growth
  • Easy-to-use with automatic sample handling instruments
  • Alpha-numeric grid for quick sample identification
  • Ideal for sample collection, storage, and combinatorial chemistry library applications
  • Sealable with well caps and sealing tape
  • Ideal as collection plates for Nunc Filter Plates

Informations légales

DeepWell is a trademark of Thermo Fisher Scientific or its subsidiaries
Nunc is a registered trademark of Thermo Fisher Scientific or its subsidiaries

Certificats d'analyse (COA)

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Articles

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Protocoles

The conversion of clinical methods to LC/MS/MS offers advantages; however, is accompanied by a few limitations, notably interference effects from the endogenous sample matrix.

The conversion of clinical methods to LC/MS/MS offers advantages; however, is accompanied by a few limitations, notably interference effects from the endogenous sample matrix.

The conversion of clinical methods to LC/MS/MS offers advantages; however, is accompanied by a few limitations, notably interference effects from the endogenous sample matrix.

The conversion of clinical methods to LC/MS/MS offers advantages; however, is accompanied by a few limitations, notably interference effects from the endogenous sample matrix.

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