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NY1H09000

Millipore

Nylon Membrane Filter, 100.0 μm Pore Size

Millipore, filter diam. 90 mm, hydrophilic

Synonym(s):

Hydrophilic nylon net membrane filter, Nylon Net Filter

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About This Item

UNSPSC Code:
40161507
eCl@ss:
32031602
NACRES:
NB.24

material

Nylon membrane
plain filter
white filter

description

100.0 um pore size, hydrophilic nylon membrane, 90 mm diameter

sterility

non-sterile

feature

hydrophilic

manufacturer/tradename

Millipore

parameter

100 °C max. temp. (curling may be seen at temperatures above 75°C)

filter diam.

90 mm

thickness

80 μm

pore size

100.0 μm pore size
44 % porosity

shipped in

ambient

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General description

Nylon filters are compatible with a broad range of solvents and are resistant to aggressive solvents. They find applications in particle analysis, solvent filtration, particle removal, and clarification.

Application

  • Collection of algae and cells
  • Particle analysis
  • Large particulate filtration
  • Toxicology and drug screening on C. elegans and zebrafish
  • Background filter for particle imaging systems
  • Prefiltration of solvents

Paint monitoring

Storage Class Code

10-13 - German Storage Class 10 to 13


Certificates of Analysis (COA)

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Marc-André Lemay et al.
American journal of botany, 102(3), 390-395 (2015-03-19)
• Assessing seed quality in orchids has been hindered by stringent germination requirements. Seed quality has traditionally been assessed in orchids using in vitro or in situ germination protocols or viability staining. However, these methods are not always well suited
Vincent N Marty et al.
Frontiers in neuroscience, 6, 86-86 (2012-06-16)
Chronic alcohol exposure causes marked changes in reinforcement mechanisms and motivational state that are thought to contribute to the development of cravings and relapse during protracted withdrawal. The nucleus accumbens (NAcc) is a key structure of the mesolimbic dopaminergic reward
J M Williams et al.
Neuroscience, 118(4), 1003-1013 (2003-05-07)
Synaptic plasticity in the dentate gyrus is dependent on activation of the N-methyl-D-aspartate (NMDA)-subtype of glutamate receptors. In this study, we show that synaptic plasticity in turn regulates NMDA receptors, since subunits of the NMDA receptor complex are bidirectionally and

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