Brownlee Spheri columns are built on small pore (80 Angstrom ) silica in 5 and 10 m particle sizes for analysis of small molecules. These columns are available in three different reverse-phases (C2, C8, C18) and the silica normal phase covers a
Brownlee Spheri columns are built on small pore (80 Angstrom ) silica in 5 and 10 m particle sizes for analysis of small molecules. These columns are available in three different reverse-phases (C2, C8, C18) and the silica normal phase covers a
Roc HPLC columns are built to be the cornerstone for your LC lab. These solid, reliable columns are pressure rated for any 400 bar HPLC system and deliver the peak shape, reproducibility, ruggedness, and performance you demand for all of your
Roc HPLC columns are built to be the cornerstone for your LC lab. These solid, reliable columns are pressure rated for any 400 bar HPLC system and deliver the peak shape, reproducibility, ruggedness, and performance you demand for all of your
Roc HPLC columns are built to be the cornerstone for your LC lab. These solid, reliable columns are pressure rated for any 400 bar HPLC system and deliver the peak shape, reproducibility, ruggedness, and performance you demand for all of your
Roc HPLC columns are built to be the cornerstone for your LC lab. These solid, reliable columns are pressure rated for any 400 bar HPLC system and deliver the peak shape, reproducibility, ruggedness, and performance you demand for all of your
Ultra HPLC Columns The Ultra line represents Restek&rsquos broadest selection of stationary phases on a single silica support. Made of high-purity, type-B silica that minimizes activity and creates high-density bonding, these columns are designed
Ultra HPLC Columns The Ultra line represents Restek&rsquos broadest selection of stationary phases on a single silica support. Made of high-purity, type-B silica that minimizes activity and creates high-density bonding, these columns are designed
Restek chemists became the first to combine the speed of superficially porous particles (also known as SPP or &ldquocore-shell&rdquo particles) with the resolution of highly selective USLC technology. This new breed of chromatographic column
Restek chemists became the first to combine the speed of superficially porous particles (also known as SPP or &ldquocore-shell&rdquo particles) with the resolution of highly selective USLC technology. This new breed of chromatographic column
Lysing Matrix S is used to break hard/brittle samples. Impact-resistant tube RNA and protein extraction from difficult samples Lysis by impaction with minimal mechanical shearing Lysing Matrices are critical components of the FastPrep&trade Sample
Lysing Matrix S is used to break hard/brittle samples. Impact-resistant tube RNA and protein extraction from difficult samples Lysis by impaction with minimal mechanical shearing Lysing Matrices are critical components of the FastPrep&trade Sample
Restek chemists became the first to combine the speed of superficially porous particles (also known as SPP or &ldquocore-shell&rdquo particles) with the resolution of highly selective USLC technology. This new breed of chromatographic column
Restek chemists became the first to combine the speed of superficially porous particles (also known as SPP or &ldquocore-shell&rdquo particles) with the resolution of highly selective USLC technology. This new breed of chromatographic column
Restek chemists became the first to combine the speed of superficially porous particles (also known as SPP or &ldquocore-shell&rdquo particles) with the resolution of highly selective USLC technology. This new breed of chromatographic column
Restek chemists became the first to combine the speed of superficially porous particles (also known as SPP or &ldquocore-shell&rdquo particles) with the resolution of highly selective USLC technology. This new breed of chromatographic column