neoChoice Kamm 1,0 mm, 44 Taschen, 3,0 mm Breite, Ladevol. 12 µl

Catalog nr. 70229
neolab

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Description

neoChoice comb 1,0 mm with 44 wells is a high-density sample comb for horizontal gel electrophoresis. Each well is 3,0 mm wide and accepts a loading volume of 12 µl, allowing many samples to be run in parallel on Maxi and Maxi-wide horizontal electrophoresis chambers. The 1,0 mm thickness forms narrow, uniform slots suited to compact lane layouts for DNA, RNA or protein separations where throughput is a priority. Delivered as a single piece, the comb is practical for screening large sample sets, dilution series or multi-condition experiments on one gel. From manufacturer neolab - Labor, it serves as chamber-compatible hardware for laboratories that need maximum lane count within Maxi-format systems. Narrow well geometry and a modest 12 µl load volume support economical use of sample and reagents while keeping lanes clearly separated. Ideal for teaching labs, research groups and routine electrophoresis workflows that benefit from forty-four discrete positions on a horizontal gel.

This article is part of Vacuum pumps, in Pumps, vacuum & evaporation.

Key features

  • Pack size: 1 pc
  • Product type: Electrophoresis comb
  • Comb thickness: 1,0 mm
  • Number of wells: 44
  • Well width: 3,0 mm
  • EAN: 4058072027858

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info@luminixhealth.com +32 13 30 43 61

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Questions about neoChoice Kamm 1,0 mm, 44 Taschen, 3,0 mm Breite, Ladevol. 12 µl

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neoChoice Kamm 1,0 mm, 44 Taschen, 3,0 mm Breite, Ladevol. 12 µl is the article on this page. Luminix Health distributes neolab for laboratory use. It sits in Vacuum pumps, inside Pumps, vacuum & evaporation, in Instruments de précision.

A laboratory vacuum pump lowers pressure for filtration or evaporation. A diaphragm pump tolerates solvent vapour better than an oil-sealed rotary vane pump, and it reaches a milder vacuum. The ultimate vacuum and the flow, and whether the wetted path survives the solvent, are the choices.

A vacuum pump lowers the pressure above a liquid so it boils at a lower temperature. That is the point of a rotary evaporator: solvent leaves a sample without cooking it. A diaphragm pump or a rotary-vane pump is chosen by the vacuum it reaches and by whether solvent vapour will destroy it. A peristaltic pump moves liquid by squeezing a tube, so the liquid touches only the tube. A barrel pump transfers a larger volume from a drum. The glassware on the evaporator is indexed under ISO laboratory glassware. Solvent identity is on PubChem.

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