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116960050Lysing Matrix Y is used primarily for lysis of gram positive and gram negative bacteria, fungal tissue and spores, yeasts, molds, filamentous algaes and biofilms. Each impact-resistant 2 mL tube contains 0.
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116977050Each impact-resistant 4.5 mL tube contains 0.
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116976050Each impact-resistant 50 mL tube contains 0.5 mm diameter Yttria-Stabilized Zirconium Oxide beads.
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116960500Lysing Matrix Y is used primarily for lysis of gram positive and gram negative bacteria, fungal tissue and spores, yeasts, molds, filamentous algaes and biofilms. Each impact-resistant 2 mL tube contains 0.
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116979010Each impact-resistant 50 mL tube contains 0.5 mm diameter Yttria-Stabilized Zirconium Oxide beads.
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116961100Each impact-resistant 2 mL tube contains 2.0 mm diameter Yttria-Stabilized Zirconium Oxide beads.
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116985100Each impact-resistant 4.5 mL tube contains 0.5 mm diameter Yttria-Stabilized Zirconium Oxide beads. Y2O3 + ZrO2 has high density and has extremely high hardness making this matrix ideal for cracking of very tough cell walls, while it's smooth.
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116978025Each impact-resistant 15mL tube contains 2.0 mm diameter Yttria-Stabilized Zirconium Oxide beads. Y2O3 + ZrO2 has high density and has extremely high hardness making this matrix ideal for cracking of very tough cell walls, while it's smooth.
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116985025Each impact-resistant 4.5 mL tube contains 0.5 mm diameter Yttria-Stabilized Zirconium Oxide beads. Y2O3 + ZrO2 has high density and has extremely high hardness making this matrix ideal for cracking of very tough cell walls, while it's smooth.
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116978050Each impact-resistant 15mL tube contains 2.0 mm diameter Yttria-Stabilized Zirconium Oxide beads. Y2O3 + ZrO2 has high density and has extremely high hardness making this matrix ideal for cracking of very tough cell walls, while it's smooth.
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116961050Each impact-resistant 2 mL tube contains 2.0 mm diameter Yttria-Stabilized Zirconium Oxide beads.
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116985050Each impact-resistant 4.5 mL tube contains 0.5 mm diameter Yttria-Stabilized Zirconium Oxide beads. Y2O3 + ZrO2 has high density and has extremely high hardness making this matrix ideal for cracking of very tough cell walls, while it's smooth.