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Centrifuge tubes Oak Ridge with leak-tight closure Type 3139, 10 ml, 10 ml

From  Nalgene
Icon_Autoklavierbar All autoclavable products in our catalogue are identified by this symbol. Please also note any additional instructions when autoclaving.
Material: PP Copolymer, translucent, with screw cap made of PP.
Volume
Nominal volume


Suitable for high-speed centrifugation up to 50,000 x g.

Note:Tubes must be at least 80% full during centrifuging.Always fully unscrew the cover during autoclaving.
Product details

€69.80/Pack Qty. 

excl. VAT. | 10 unit(s) per Pack Qty.

Art. No. PK00.1

Not available
Free of shipping costs from 125 €
from 6 Pack Qty. €66.31/Pack Qty.
from 24 Pack Qty. €62.82/Pack Qty.
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Product details

Material: PP Copolymer, translucent, with screw cap made of PP.

Suitable for high-speed centrifugation up to 50,000 x g.

Note:Tubes must be at least 80% full during centrifuging.Always fully unscrew the cover during autoclaving.



Centrifuge tubes Oak Ridge with leak-tight closure Type 3139 

Technical Information
Volume 10 ml
Nominal volume 10 ml
Ø External 16 mm
Height 82 mm
Max. centrifugability in g 50000 
Centrifuge tubes Oak Ridge with leak-tight closure Type 3139
Selected quantity:   0
  1. Subtotal:  0.00
Order No. Pack Qty. Volume Nominal volume Price Quantity
PK00.1 10 unit(s) 10 ml 10 ml €69.80
PK03.1 10 unit(s) 42 ml 50 ml €129.00
PK01.1 10 unit(s) 16 ml 16 ml €85.65
PK02.1 10 unit(s) 30 ml 30 ml €110.00
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  1. Subtotal:  0.00

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General information

The following factors are critical to the quality of laboratory glassware:

  • The glassware and glass type
  • The shape obtained during the production process
  • Even distribution of wall thickness in all areas of the article (particularly in critical areas such as in the neck/shoulder area and at the transitions to the base). This ensures:
  • - better mechanical stability- higher thermal shock resistance- freedom from stresses, which can cause the vessel to burst when heatedThese quality characteristics not only increase safety for employees in the laboratory, but also extend the useful life of the laboratory glassware and protect valuable substances.


    To calculate the number of revolutions:

    RCF = 1,118 · 10-5 x rpm2 · r


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