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$

Rtx -20(Fused Silica). 0.32 mm ID. 60-Meter Length. 3.00um. Increased phenyl content offers unique polarity to give balance between low and mid polarity. Similar to SPB -20 and VOCOL columns.

Rtx -35(Fused Silica). 0.25 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.1um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.25 mm ID. 15-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.25um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.32 mm ID. 15-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.25um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.25 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.25um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx-35 GC Column. Mid-polarity column for analyzing pesticides, PCBs, amines, nitrogen containing herbicides. Phase composition: crossbonded 35% diphenyl, 65% dimethylpolysiloxane. Recommended for EPA method 608. Temperature Range: 0 to 300[degree]C. ID: 0.32mm. Length: 30m. Thickness: 0.25um.

Rtx -35(Fused Silica). 0.25 mm ID. 60-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.25um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.32 mm ID. 60-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.25um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.25 mm ID. 15-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.50um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.53 mm ID. 15-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.50um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.25 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.50um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.32 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.50um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx-35 GC Column. Mid-polarity column for analyzing pesticides, PCBs, amines, nitrogen containing herbicides. Phase composition: crossbonded 35% diphenyl, 65% dimethylpolysiloxane. Recommended for EPA method 608. Temperature Range: 0 to 290[degree]C. ID: 0.53m. Length: 30m. Thickness: 0.50um.

Rtx -35(Fused Silica). 0.25 mm ID. 60-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.50um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.25 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.0um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.32 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.00um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx-35 GC Column. Mid-polarity column for analyzing pesticides, PCBs, amines, nitrogen containing herbicides. Phase composition: crossbonded 35% diphenyl, 65% dimethylpolysiloxane. Recommended for EPA method 608. Temperature Range: 0 to 285[degree]C. ID: 0.53mm. Length: 30m. Thickness: 1.00um.

Rtx -35(Fused Silica). 0.53 mm ID. 60-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.00um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.32 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.50um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.53 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.50um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.32 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 3.00um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.53 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 3.00um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -35(Fused Silica). 0.32 mm ID. 60-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 3.00um. Ideal confirmational column for pesticide and herbicide analysis. 300[degree]C thermal stability.

Rtx -50(Fused Silica). 0.53 mm ID. 15-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.25um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.25 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.25um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.32 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.25um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.25 mm ID. 60-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.25um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.25 mm ID. 15-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.50um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.32 mm ID. 15-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.50um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.25 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.50um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.32 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.50um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.53 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.50um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.32 mm ID. 60-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.50um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.53 mm ID. 60-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.50um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.32 mm ID. 15-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.00um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.53 mm ID. 15-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.00um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.25 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.0um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.32 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.00um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.53 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.00um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.25 mm ID. 60-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.0um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.32 mm ID. 60-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.00um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.53 mm ID. 60-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.00um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.53 mm ID. 15-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.50um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.53 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 0.83um. Ideal confirmation column for many EPA Methods.

Rtx -50(Fused Silica). 0.53 mm ID. 30-Meter Length. The maximum temperatures listed are for 15-and 30- meter lengths. Longer lengths may have a slightly reduced maximum temperature. 1.50um. Ideal confirmation column for many EPA Methods.

Rtx -2330 (Fused Silica). 0.25 mm ID. 30-Meter Length. 0.10um. Ideal for cis/trans fatty acid methyl ester separations. Primary column for the analysis of tetrachlorodibenzo-p-dioxin (TCDD) and polychlorodibenzofuran(PCDF) isomers.

Rtx -2330 (Fused Silica). 0.25 mm ID. 60-Meter Length. 0.10um. Ideal for cis/trans fatty acid methyl ester separations. Primary column for the analysis of tetrachlorodibenzo-p-dioxin (TCDD) and polychlorodibenzofuran(PCDF) isomers.

Rtx -2330 (Fused Silica). 0.25 mm ID. 105-Meter Length. 0.10um. Ideal for cis/trans fatty acid methyl ester separations. Primary column for the analysis of tetrachlorodibenzo-p-dioxin (TCDD) and polychlorodibenzofuran(PCDF) isomers.

Rtx -2330 (Fused Silica). 0.32 mm ID. 15-Meter Length. 0.20um. Ideal for cis/trans fatty acid methyl ester separations. Primary column for the analysis of tetrachlorodibenzo-p-dioxin (TCDD) and polychlorodibenzofuran(PCDF) isomers.

Rtx -2330 (Fused Silica). 0.25 mm ID. 30-Meter Length. 0.20um. Ideal for cis/trans fatty acid methyl ester separations. Primary column for the analysis of tetrachlorodibenzo-p-dioxin (TCDD) and polychlorodibenzofuran(PCDF) isomers.

Rtx -2330 (Fused Silica). 0.32 mm ID. 30-Meter Length. 0.20um. Ideal for cis/trans fatty acid methyl ester separations. Primary column for the analysis of tetrachlorodibenzo-p-dioxin (TCDD) and polychlorodibenzofuran(PCDF) isomers.

Rtx -2330 (Fused Silica). 0.53 mm ID. 30-Meter Length. 0.20um. Ideal for cis/trans fatty acid methyl ester separations. Primary column for the analysis of tetrachlorodibenzo-p-dioxin (TCDD) and polychlorodibenzofuran(PCDF) isomers.

Rtx -2330 (Fused Silica). 0.25 mm ID. 60-Meter Length. 0.20um. Ideal for cis/trans fatty acid methyl ester separations. Primary column for the analysis of tetrachlorodibenzo-p-dioxin (TCDD) and polychlorodibenzofuran(PCDF) isomers.

Rtx -2330 (Fused Silica). 0.32 mm ID. 60-Meter Length. 0.20um. Ideal for cis/trans fatty acid methyl ester separations. Primary column for the analysis of tetrachlorodibenzo-p-dioxin (TCDD) and polychlorodibenzofuran(PCDF) isomers.

Rtx -2330 (Fused Silica). 0.25 mm ID. 105-Meter Length. 0.20um. Ideal for cis/trans fatty acid methyl ester separations. Primary column for the analysis of tetrachlorodibenzo-p-dioxin (TCDD) and polychlorodibenzofuran(PCDF) isomers.

Rtx -2330 (Fused Silica). 0.32 mm ID. 1050-Meter Length. 0.20um. Ideal for cis/trans fatty acid methyl ester separations. Primary column for the analysis of tetrachlorodibenzo-p-dioxin (TCDD) and polychlorodibenzofuran(PCDF) isomers.

Stabilwax -DB(Fused Silica). 0.25 mm ID. 15-Meter Length. 0.25um. Excellent for the analysis of basic compounds. Eliminates the need for derivatization. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. No column priming required.

Stabilwax -DB(Fused Silica). 0.32 mm ID. 15-Meter Length. 0.25um. Excellent for the analysis of basic compounds. Eliminates the need for derivatization. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. No column priming required.

STABILWAX-DB GC Column. Polar column for the analysis of underivatized amines and basic compounds. Reduced adsorption and improved response. Phase composition: crossbonded Carbowax (100% Polyethylene Glycol). Temperature range: 40 to 220[degree]C. ID: 0.25mm. Length: 30m. Thickness: 0.25um.

Stabilwax -DB(Fused Silica). 0.32 mm ID. 30-Meter Length. 0.25um. Excellent for the analysis of basic compounds. Eliminates the need for derivatization. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. No column priming required.

Stabilwax -DB(Fused Silica). 0.25 mm ID. 30-Meter Length. 0.50um. Excellent for the analysis of basic compounds. Eliminates the need for derivatization. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. No column priming required.

Stabilwax -DB(Fused Silica). 0.32 mm ID. 30-Meter Length. 0.50um. Excellent for the analysis of basic compounds. Eliminates the need for derivatization. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. No column priming required.

Stabilwax -DB(Fused Silica). 0.53 mm ID. 30-Meter Length. 0.50um. Excellent for the analysis of basic compounds. Eliminates the need for derivatization. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. No column priming required.

Stabilwax -DB(Fused Silica). 0.53 mm ID. 15-Meter Length. 0.50um. Excellent for the analysis of basic compounds. Eliminates the need for derivatization. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. No column priming required.

Stabilwax -DB(Fused Silica). 0.32 mm ID. 30-Meter Length. 1.00um. Excellent for the analysis of basic compounds. Eliminates the need for derivatization. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. No column priming required.

Stabilwax -DB(Fused Silica). 0.32 mm ID. 60-Meter Length. 1.00um. Excellent for the analysis of basic compounds. Eliminates the need for derivatization. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. No column priming required.

Stabilwax -DB(Fused Silica). 0.53 mm ID. 60-Meter Length. 1.00um. Excellent for the analysis of basic compounds. Eliminates the need for derivatization. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. No column priming required.

Stabilwax -DB(Fused Silica). 0.53 mm ID. 30-Meter Length. 1.50um. Excellent for the analysis of basic compounds. Eliminates the need for derivatization. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. No column priming required.

Rtx -Volatiles(Fused Silica). 0.25 mm ID. 30-Meter Length. 1.00u. Used for the analysis of volatile organic compounds(VOCs) in EPA methods. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. 280[degree] thermal stability.

Rtx -Volatiles(Fused Silica). 0.32 mm ID. 30-Meter Length. 1.50u. Used for the analysis of volatile organic compounds(VOCs) in EPA methods. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. 280[degree] thermal stability similar to VOCOL columns.

Rtx -Volatiles(Fused Silica). 0.53 mm ID. 30-Meter Length. 2.00u. Used for the analysis of volatile organic compounds(VOCs) in EPA methods. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. 280[degree] thermal stability similar to VOCOL columns.

Rtx -Volatiles(Fused Silica). 0.25 mm ID. 60-Meter Length. 1.00u. Used for the analysis of volatile organic compounds(VOCs) in EPA methods. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. 280[degree] thermal stability similar to VOCOL columns.

Rtx -Volatiles(Fused Silica). 0.32 mm ID. 60-Meter Length. 1.50u. Used for the analysis of volatile organic compounds(VOCs) in EPA methods. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. 280[degree] thermal stability similar to VOCOL columns.

Rtx -Volatiles(Fused Silica). 0.53 mm ID. 60-Meter Length. 2.00u. Used for the analysis of volatile organic compounds(VOCs) in EPA methods. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability. 280[degree] thermal stability similar to VOCOL columns.

Rtx-502.2 GC Column. For volatile organic compounds, light hydrocarbons, and aromatics. Composition: crossbonded diphenyldimethylpolysiloxane. Range: 0 to 270[degree]C. ID: 0.53mm. Length: 30m. Thickness: 3.00um. For EPA methods 502.2, 524.2, 601, 602, 624, 8010, 8020, 8240, 8260, and GRO methods.

Rtx-502.2 GC Column. For volatile organic compounds, light hydrocarbons, and aromatics. Composition: crossbonded diphenyldimethylpolysiloxane. Range: 0 to 270[degree]C. ID: 0.53mm. Length: 60m. Thickness: 3.00um. For EPA methods 502.2, 524.2, 601, 602, 624, 8010, 8020, 8240, 8260, and GRO methods.

Rtx-502.2 GC Column. For volatile organic compounds, light hydrocarbons, and aromatics. Composition: crossbonded diphenyldimethylpolysiloxane. Range: 0 to 270[degree]C. ID: 0.53mm. Length: 105m. Thickness: 3.00um. For EPA methods 502.2, 524.2, 601, 602, 624, 8010, 8020, 8240, 8260, and GRO methods.

Rtx -502.2(Fused Silica). 0.25 mm ID. 30-Meter Length. 1.40um. recommended for the analysis of volatile organic compounds in EPA methods. Sub-ambient temperature not required with 105-meter column. Specified in many GRO methods for monitoring leaking underground storage tasks.

Rtx-502.2 GC Column. For volatile organic compounds, light hydrocarbons and aromatics. Composition: crossbonded diphenyldimethylpolysiloxane. Range: -20 to 270[degree]C. ID: 0.25mm. Length: 60m. Thickness: 1.40um. For EPA methods 502.2, 524.2, 601, 602, 624, 8010, 8020, 8240, 8260, and GRO methods.

Rtx -502.2(Fused Silica). 0.32 mm ID. 30-Meter Length. 1.80um. recommended for the analysis of volatile organic compounds in EPA methods. Sub-ambient temperature not required with 105-meter column. Specified in many GRO methods for monitoring leaking underground storage tasks.

Rtx -502.2(Fused Silica). 0.32 mm ID. 105-Meter Length. 1.80um. recommended for the analysis of volatile organic compounds in EPA methods. Sub-ambient temperature not required with 105-meter column. Specified in many GRO methods for monitoring leaking underground storage tasks.

Rtx -624(Fused Silica). 0.25 mm ID. 30-Meter Length. 1.40um. 105-meter column meets new CLP SOW requirements for gas separation without sub-ambient cooling. recommended for the analysis of volatile organic compounds in EPA methods.

Rtx -624(Fused Silica). 0.25 mm ID. 60-Meter Length. 1.40um. 105-meter column meets new CLP SOW requirements for gas separation without sub-ambient cooling. recommended for the analysis of volatile organic compounds in EPA methods.

Rtx -624(Fused Silica). 0.32 mm ID. 30-Meter Length. 1.80um. 105-meter column meets new CLP SOW requirements for gas separation without sub-ambient cooling. recommended for the analysis of volatile organic compounds in EPA methods.

Rtx-624 GC Column. For analysis of organic compounds using a GC/MS system. Phase composition: crossbonded 6% cyanopropylphenyl, 94% dimethylpolysiloxane. Range: -20 to 240[degree]C. ID: 0.53mm. Length: 30m. Film Thckness: 3.00um. For EPA methods 502.2, 524.2, 601, 602, 624, 8010, 8020, 8240, 8260.

Rtx-624 GC Column. For analysis of organic compounds using a GC/MS system. Phase composition: crossbonded 6% cyanopropylphenyl, 94% dimethylpolysiloxane. Range: -20 to 240[degree]C. ID: 0.32mm. Length: 60m. Film Thckness: 1.80um. For EPA methods 502.2, 524.2, 601, 602, 624, 8010, 8020, 8240, 8260.

Rtx-624 GC Column. For analysis of organic compounds using a GC/MS system. Phase composition: crossbonded 6% cyanopropylphenyl, 94% dimethylpolysiloxane. Range: -20 to 240[degree]C. ID: 0.53mm. Length: 60m. Film Thckness: 3.00um. For EPA methods 502.2, 524.2, 601, 602, 624, 8010, 8020, 8240, 8260.

Rtx-624 GC Column. For analysis of organic compounds using a GC/MS system. Phase composition: crossbonded 6% cyanopropylphenyl, 94% dimethylpolysiloxane. Range: -20 to 240[degree]C. ID: 0.53mm. Length: 75m. Film Thckness: 3.00um. For EPA methods 502.2, 524.2, 601, 602, 624, 8010, 8020, 8240, 8260.

Rtx -624(Fused Silica). 0.53 mm ID. 105-Meter Length. 3.00um. 105-meter column meets new CLP SOW requirements for gas separation without sub-ambient cooling. recommended for the analysis of volatile organic compounds in EPA methods.

Stabilwax-DA (Fused Silica). 0.25 mm ID. 15-Meter Length. 0.10um. Ideal for the analysis of free acids(no need for derivatization). High thermal stability(250[degree]C)and long column lifetime. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability.

Stabilwax-DA (Fused Silica). 0.53 mm ID. 15-Meter Length. 0.10um. Ideal for the analysis of free acids(no need for derivatization). High thermal stability(250[degree]C)and long column lifetime. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability.

Stabilwax-DA (Fused Silica). 0.25 mm ID. 30-Meter Length. 0.10um. Ideal for the analysis of free acids(no need for derivatization). High thermal stability(250[degree]C)and long column lifetime. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability.

Stabilwax-DA (Fused Silica). 0.32 mm ID. 30-Meter Length. 0.10um. Ideal for the analysis of free acids(no need for derivatization). High thermal stability(250[degree]C)and long column lifetime. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability.

Stabilwax-DA (Fused Silica). 0.25 mm ID. 15-Meter Length. 0.25um. Ideal for the analysis of free acids(no need for derivatization). High thermal stability(250[degree]C)and long column lifetime. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability.

Stabilwax-DA (Fused Silica). 0.32 mm ID. 15-Meter Length. 0.25um. Ideal for the analysis of free acids(no need for derivatization). High thermal stability(250[degree]C)and long column lifetime. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability.

Stabilwax-DA (Fused Silica). 0.53 mm ID. 15-Meter Length. 0.25um. Ideal for the analysis of free acids(no need for derivatization). High thermal stability(250[degree]C)and long column lifetime. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability.

Stabilwax-DA (Fused Silica). 0.25 mm ID. 30-Meter Length. 0.25um. Ideal for the analysis of free acids(no need for derivatization). High thermal stability(250[degree]C)and long column lifetime. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability.

STABILWAX-DA Phase Column. Polar, acid deactivated column for the analysis of underivitized free fatty acids from C1 to C20. Phase composition: crossbonded Carbowax (100% Polyethylene Glycol). Temperature range: 40 to 250[degree]C. I.D.: 0.32mm. Length: 30m. Film Thickness: 0.25um.

Stabilwax-DA (Fused Silica). 0.53 mm ID. 30-Meter Length. 0.25um. Ideal for the analysis of free acids(no need for derivatization). High thermal stability(250[degree]C)and long column lifetime. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability.

Stabilwax-DA (Fused Silica). 0.25 mm ID. 60-Meter Length. 0.25um. Ideal for the analysis of free acids(no need for derivatization). High thermal stability(250[degree]C)and long column lifetime. Crossbond technology results in reduced bleed, increased column lifetime, and solvent rinsability.

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