Made of polypropylene. Standard 96-well on center spacing of tubes offers a color coding system using colored interchangeable plastic grids. These are used as a support for the 1.2ml tubes. This unique grid stands on four legs and can be removed
Made of polypropylene. Standard 96-well on center spacing of tubes offers a color coding system using colored interchangeable plastic grids. These are used as a support for the 1.2ml tubes. This unique grid stands on four legs and can be removed
Made of polypropylene. Standard 96-well on center spacing of tubes offers a color coding system using colored interchangeable plastic grids. These are used as a support for the 1.2ml tubes. This unique grid stands on four legs and can be removed
Made of polypropylene. Standard 96-well on center spacing of tubes offers a color coding system using colored interchangeable plastic grids. These are used as a support for the 1.2ml tubes. This unique grid stands on four legs and can be removed
Made of polypropylene. Standard 96-well on center spacing of tubes offers a color coding system using colored interchangeable plastic grids. These are used as a support for the 1.2ml tubes. This unique grid stands on four legs and can be removed
Made of polypropylene. Standard 96-well on center spacing of tubes offers a color coding system using colored interchangeable plastic grids. These are used as a support for the 1.2ml tubes. This unique grid stands on four legs and can be removed
Made of polypropylene. Standard 96-well on center spacing of tubes offers a color coding system using colored interchangeable plastic grids. These are used as a support for the 1.2ml tubes. This unique grid stands on four legs and can be removed
Made of polypropylene. Standard 96-well on center spacing of tubes offers a color coding system using colored interchangeable plastic grids. These are used as a support for the 1.2ml tubes. This unique grid stands on four legs and can be removed
Ideal for use in bacteriology, RIA, coagulation and other routine laboratory procedures. There are no mold release agents that could cause errors and interferences in RIA tests. Precision molding with virgin thermoplastics ensures that our tubes are
Ideal for use in bacteriology, RIA, coagulation and other routine laboratory procedures. There are no mold release agents that could cause errors and interferences in RIA tests. Precision molding with virgin thermoplastics ensures that our tubes are
Ideal for use in bacteriology, RIA, coagulation and other routine laboratory procedures. There are no mold release agents that could cause errors and interferences in RIA tests. Precision molding with virgin thermoplastics ensures that our tubes are
Ideal for use in bacteriology, RIA, coagulation and other routine laboratory procedures. There are no mold release agents that could cause errors and interferences in RIA tests. Precision molding with virgin thermoplastics ensures that our tubes are
Ideal for use in bacteriology, RIA, coagulation and other routine laboratory procedures. There are no mold release agents that could cause errors and interferences in RIA tests. Precision molding with virgin thermoplastics ensures that our tubes are
Ideal for use in bacteriology, RIA, coagulation and other routine laboratory procedures. There are no mold release agents that could cause errors and interferences in RIA tests. Precision molding with virgin thermoplastics ensures that our tubes are
Made of autoclavable polypropylene. Caps are made of polyethylene and are not autoclavable. Tubes have a gross volume of 1.2ml but with a cap in place, they will hold 1.1ml. Ideal for HTLV-III testing, bacterial and hybridoma cell uptake studies,
Made of autoclavable polypropylene. Caps are made of polyethylene and are not autoclavable. Tubes have a gross volume of 1.2ml but with a cap in place, they will hold 1.1ml. Ideal for HTLV-III testing, bacterial and hybridoma cell uptake studies,