Combine the rigidity of a polycarbonate frame with thin walled polypropylene wells to provide superior thermal cycling performance under all conditions without warping.
Fisher Scientific Edge Order before 2 pm dispatch today Order after 2 pm dispatch tomorrow Learn More
Combine the rigidity of a polycarbonate frame with thin walled polypropylene wells to provide superior thermal cycling performance under all conditions without warping.
Fisher Scientific Edge Order before 2 pm dispatch today Order after 2 pm dispatch tomorrow Learn More
Combine the rigidity of a polycarbonate frame with thin walled polypropylene wells to provide superior thermal cycling performance under all conditions without warping.
Fisher Scientific Edge Order before 2 pm dispatch today Order after 2 pm dispatch tomorrow Learn More
Microplates for fluorescence-based assays are 96- and 384-well, black-walled, clear-bottom microplates that are optimized for fluorescence-based applications on standard fluorescence microplate readers.
Combine the rigidity of a polycarbonate frame with thin walled polypropylene wells to provide superior thermal cycling performance under all conditions without warping.
Combine the rigidity of a polycarbonate frame with thin walled polypropylene wells to provide superior thermal cycling performance under all conditions without warping.
Combine the rigidity of a polycarbonate frame with thin walled polypropylene wells to provide superior thermal cycling performance under all conditions without warping.
Combine the rigidity of a polycarbonate frame with thin walled polypropylene wells to provide superior thermal cycling performance under all conditions without warping.
Combine the rigidity of a polycarbonate frame with thin walled polypropylene wells to provide superior thermal cycling performance under all conditions without warping.
Combine the rigidity of a polycarbonate frame with thin walled polypropylene wells to provide superior thermal cycling performance under all conditions without warping.
Combine the rigidity of a polycarbonate frame with thin walled polypropylene wells to provide superior thermal cycling performance under all conditions without warping.
Combine the rigidity of a polycarbonate frame with thin walled polypropylene wells to provide superior thermal cycling performance under all conditions without warping.
Combine the rigidity of a polycarbonate frame with thin walled polypropylene wells to provide superior thermal cycling performance under all conditions without warping.
Combine the rigidity of a polycarbonate frame with thin walled polypropylene wells to provide superior thermal cycling performance under all conditions without warping.