Safe, clean and efficient Powerful stirring and rapid heating in all vessel positions Accepts a wide range of standard glassware Accommodates up to five individual experiments The StarFish is a low-cost workstation that allows scientists to perform
Safe, clean and efficient Powerful stirring and rapid heating in all vessel positions Accepts a wide range of standard glassware Accommodates up to five individual experiments The StarFish is a low-cost workstation that allows scientists to perform
Safe, clean and efficient Powerful stirring and rapid heating in all vessel positions Accepts a wide range of standard glassware Accommodates up to five individual experiments The StarFish is a low-cost workstation that allows scientists to perform
Safe, clean and efficient Powerful stirring and rapid heating in all vessel positions Accepts a wide range of standard glassware Accommodates up to five individual experiments The StarFish is a low-cost workstation that allows scientists to perform
The new gold standard in dye terminator removal! Optima DTR&trade is a new line of dye terminator removal products based on a proprietary resin that provides clean-up of CE/Sanger sequencing reactions comparable to our current Performa® DTR
The new gold standard in dye terminator removal! Optima DTR&trade is a new line of dye terminator removal products based on a proprietary resin that provides clean-up of CE/Sanger sequencing reactions comparable to our current Performa® DTR
Opaque walls to prevent well-to-well cross talk Optical bottoms for direct microscopic viewing Plates can be used in both top and bottom reading instruments Built to proposed industry-standard footprint The bottoms of these 96 well clear-bottom
Opaque walls to prevent well-to-well cross talk Optical bottoms for direct microscopic viewing Plates can be used in both top and bottom reading instruments Built to proposed industry-standard footprint The bottoms of these 96 well clear-bottom
Bold-printed PCR plates fit leading thermal cyclers, DNA sequencing detection instruments, and Real-Time PCR instruments. Precision-designed molds and tightly controlled processes create high quality plates with minimal warp before and after thermal
Bold-printed PCR plates fit leading thermal cyclers, DNA sequencing detection instruments, and Real-Time PCR instruments. Precision-designed molds and tightly controlled processes create high quality plates with minimal warp before and after thermal
Bold-printed PCR plates fit leading thermal cyclers, DNA sequencing detection instruments, and Real-Time PCR instruments. Precision-designed molds and tightly controlled processes create high quality plates with minimal warp before and after thermal
Bold-printed PCR plates fit leading thermal cyclers, DNA sequencing detection instruments, and Real-Time PCR instruments. Precision-designed molds and tightly controlled processes create high quality plates with minimal warp before and after thermal
Bold-printed PCR plates fit leading thermal cyclers, DNA sequencing detection instruments, and Real-Time PCR instruments. Precision-designed molds and tightly controlled processes create high quality plates with minimal warp before and after thermal
Bold-printed PCR plates fit leading thermal cyclers, DNA sequencing detection instruments, and Real-Time PCR instruments. Precision-designed molds and tightly controlled processes create high quality plates with minimal warp before and after thermal
Poly-D-Lysine (PDL) and Poly-L-Lysine (PLL) are synthetic compounds that enhance cell adhesion and protein absorption by altering surface charges on the culture substrate. In addition to promoting cell adhesion, poly-lysine surface treatments
Poly-D-Lysine (PDL) and Poly-L-Lysine (PLL) are synthetic compounds that enhance cell adhesion and protein absorption by altering surface charges on the culture substrate. In addition to promoting cell adhesion, poly-lysine surface treatments
Corning PureCoat Amine (positively charged) and Carboxyl (negatively charged) surfaces provide improved cell attachment, faster cell proliferation, and enhanced recovery post-thaw over standard TC surfaces. These surfaces function with a broad range
Corning PureCoat Amine (positively charged) and Carboxyl (negatively charged) surfaces provide improved cell attachment, faster cell proliferation, and enhanced recovery post-thaw over standard TC surfaces. These surfaces function with a broad range
Corning PureCoat Amine (positively charged) and Carboxyl (negatively charged) surfaces provide improved cell attachment, faster cell proliferation, and enhanced recovery post-thaw over standard TC surfaces. These surfaces function with a broad range
Corning PureCoat Amine (positively charged) and Carboxyl (negatively charged) surfaces provide improved cell attachment, faster cell proliferation, and enhanced recovery post-thaw over standard TC surfaces. These surfaces function with a broad range