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Showing Results For: PRP-1 - The Robust Alternative for Over 30 Years

PRP-1 - The Robust Alternative for Over 30 Years



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79753, Omnilab

79753, Omnilab

NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides. NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides.

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New
79493, Omnilab

79493, Omnilab

NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides. NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides.

Product Detail
New
79567, Omnilab

79567, Omnilab

NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides. NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides.

Product Detail
New
79426, Omnilab

79426, Omnilab

NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides. NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides.

Product Detail
New
79529, Omnilab

79529, Omnilab

NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides. NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides.

Product Detail
New
79381, Omnilab

79381, Omnilab

NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides. NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides.

Product Detail
New
79428, Omnilab

79428, Omnilab

NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides. NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides.

Product Detail
New
79478, Omnilab

79478, Omnilab

NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides. NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides.

Product Detail
New
79499, Omnilab

79499, Omnilab

NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides. NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides.

Product Detail
New
79122, Omnilab

79122, Omnilab

NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides. NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides.

Product Detail
New
79581, Omnilab

79581, Omnilab

NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides. NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides.

Product Detail
New
79795, Omnilab

79795, Omnilab

NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides. NULL Hamilton PRP-1 (Polymeric Reversed Phase) HPLC columns combine the best characteristics of silica-based and polymeric columns to arrive at a column that is highly inert and long-lasting. Quality assurance as well as research and development laboratories find that PRP-1 columns last significantly longer than silica-based C8 or C18 columns. - Good sample recovery. - Excellent durability (stable to any concentration of water or organic solvent). - Polymeric columns for general separations. - pH stable from 1 to 13: better sample recovery than silica based columns. Fields of application: - Polyacrylic aromatic hydrocarbons (PAH). - Ionised organic compounds. - Steroides. - Peptide fragments. - Pharmaceutical substances. - Nuclein acids. - Vitamins. - Herbicides.

Product Detail
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