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Isotope labelled DiethyleneGlycol (D444285), is an starting material in the manufacture of unsaturated polyester resins and plasticizers. Group: Biochemicals. Alternative Names: 1,5-Dihydroxy-3-oxapentane-d10; 2-Hydroxyethoxyethanol-d10; 3-Oxapentamethylene-1,5-diol-d10; 3-Oxapentane-1,5-diol-d10; Ethylene Diglycol-d10; NSC 36391-d10. Grades: Highly Purified. Pack Sizes: 2.5mg. US Biological Life Sciences.
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DiethyleneGlycol-d8
2H Labeled Compounds. Alternative Names: 1,5-Dihydroxy-3-oxapentane-d8; 2-Hydroxyethoxyethanol-d8; 3-Oxapentamethylene-1,5-diol-d8; 3-Oxapentane-1,5-diol-d8; Ethylene Diglycol-d8. CAS No. 102867-56-1. Molecular formula: C4H2D8O3. Mole weight: 114.17. Appearance: Pale Brown Oil to Colorless. Catalog: ACM102867561.
Ethyleneglycol dimethylacrylate (EGDMA) is a diester formed by condensation of two equivalents of methacrylic acid and one equivalent of ethyleneglycol. EGDMA can be used in free radical copolymer crosslinking reactions. When used with methyl methacrylate, it leads to gel point at relatively low concentrations because of the nearly equivalent reactivities of all the double bonds involved. Uses: It is used as a monomer to prepare hydroxyapatite/poly methyl methacrylate composites. egdma can be used in free radical copolymer crosslinking reactions. Group: Crosslinkerspoly(ethyleneglycol) and poly(ethylene oxide)monomers. Alternative Names: 2,2'-Oxybisethanol dimethacrylate, 2,2'-Oxydiethyl dimethacrylate, Diethyleneglycol, dimethacrylate. CAS No. 2358-84-1. Product ID: 2-[2-(2-methylprop-2-enoyloxy)ethoxy]ethyl 2-methylprop-2-enoate. Molecular formula: 242.27. Mole weight: C12H18O5. CC(=C)C(=O)OCCOCCOC(=O)C(C)=C. 1S/C12H18O5/c1-9 (2)11 (13)16-7-5-15-6-8-17-12 (14)10 (3)4/h1, 3, 5-8H2, 2, 4H3. XFCMNSHQOZQILR-UHFFFAOYSA-N.
Ethyleneglycol diethyl ether appears as a clear colorless liquid with a faint ether-like odor. Flash point 95°F. Less dense than water and insoluble in water. Vapors heavier than air.;Liquid;COLOURLESS LIQUID WITH CHARACTERISTIC ODOUR. Group: Polymers. Product ID: 1,2-diethoxyethane. Molecular formula: 118.17g/mol. Mole weight: C6H14O2;CH3CH2OCH2CH2OCH2CH3;C6H14O2. CCOCCOCC. InChI=1S / C6H14O2 / c1-3-7-5-6-8-4-2 / h3-6H2, 1-2H3. LZDKZFUFMNSQCJ-UHFFFAOYSA-N.
EthyleneGlycol Diethyl Ether
EthyleneGlycol Diethyl Ether. We stock inventory in warehouses throughout the United States, allowing us to serve customers in all regions in a timely and cost effective manner.
EthyleneGlycol Diglycidyl Ether. We stock inventory in warehouses throughout the United States, allowing us to serve customers in all regions in a timely and cost effective manner.
Ethyleneglycol dimethacrylate is a methacrylate monomer, exhibits cytotoxic and genotoxic effects on human gingival fibroblasts (HGFs). Ethyleneglycol dimethacrylate increases intracellular reactive oxygen species (ROS) production, causes DNA damage, increases apoptosis and causes cell cycle arrest in G1/G0 phase [1]. Uses: Scientific research. Group: Signaling pathways. CAS No. 97-90-5. Pack Sizes: 10 mM * 1 mL; 50 g. Product ID: HY-W014940.
EthyleneGlycol Dimethyl Ether. We stock inventory in warehouses throughout the United States, allowing us to serve customers in all regions in a timely and cost effective manner.
500ml Pack Size. Group: Solvents. Formula: CH3OCH2CH2OCH3. CAS No. 110-71-4. Prepack ID 30563551-500ml. Molecular Weight 90.12. See USA prepack pricing.
Ethyleneglycol distearate EGDS. Market: Cosmetics & Personal Care. PK Chem Industries: We supply chemicals related to Cosmetic, Personal Care, Food, Pharmaceutical, Feed, Agriculture and Mining Industries.
EthyleneGlycol Monostearate & Distearate
Flake emulsifier, pearlizer for shampoos, shower gels and liquid soaps. It is also a secondary emulsifier and solubilizer for cosmetic formulations. Mixture of EthyleneGlycol Monostearate (55%) and EthyleneGlycol Distearate (45%). Melting point 57-63?C. Uses: Emulsions for skin and hair care products. Group: Surfactants/emulsifiers. CAS No. 111-60-4/627-83-8. Appearance: White flake or beads. Catalog: CI-SC-0224.
Good bleaching agent in battery industry and glass industry; Organic synthesis catalyst; Paint and ink drying agent; Ferrite magnetic materials; Important doped materials for voltage sensitivity and temperature sensitive resistors. Group: Metal oxide colloids. CAS No. 1313-13-11. Mole weight: 86.94 g/mol. Purity: 0.98. Density: 5.02 g/cm3. Catalog: ACM13131311.
This product is a shiny dark gray powder, density 4.8, melting point 1185 °C, 450 °C sublimation, Mohs hardness of 1 to 1.5. Under normal circumstances, the friction coefficient of 0.03-0.05 and very good chemical stability and thermal stability. Dissolved in aqua regia and concentrated sulfuric acid, insoluble in water and dilute acid; No general chemical reaction with metal surface. Uses: 1. in lubricant applications: not only can improve the oil's largest non-card bite load, but also can reduce wear and improve the friction properties. 2. in the composite application: ps/mos2 nanocomposites, will have a certain conductivity of mos2 as a conductive filler to improve the polystyrene (ps) of the electrical properties, it has a certain capacity but will not change the anti-static the insulation. 3. nano molybdenum disulfide can be used as heavy oil conversion, oil refining hydrogenation catalyst of high activity. Group: Metal colloids. CAS No. 1317-33-7. Purity: 0.999. Density: 4.8 g/cm3. Catalog: ACM1317337.
Nanodiamond (particle size : <10nm) (Amine-modified) (3%, Dispersion in EthyleneGlycol)
Nickel(II) bromide ethyleneglycol dimethyl ether complex is a nickel-based catalyst that is used in the preparation of poly(3-hexylthiophene) (P3HT) Kumada catalyst transfer polymerization. It facilitates good control over the molecular weight of the conjugating polymer. Uses: Transition metal catalysts. Synonyms: Nickel, dibromo[1,2-di(methoxy-κO)ethane]-; Dibromo[1,2-di(methoxy-κO)ethane]nickel; Nickel, dibromo(1,2-dimethoxyethane)-; Nickel, dibromo(1,2-dimethoxyethane-O,O')-; (1,2-Dimethoxyethane)nickel dibromide; 1,2-Dimethoxyethane nickel(II) bromide; Dibromo(1,2-dimethoxyethane)nickel; Dibromo(1,2-dimethoxyethane)nickel(II); Dibromo(glyme)nickel; NiBr2(dme); Nickel(II) dimethoxyethane bromide; Dimethoxyethane Nickel(II) dibromide. Grades: ≥95%. CAS No. 28923-39-9. Molecular formula: C4H10Br2NiO2. Mole weight: 308.62.
NIOBIUM(III) BROMIDE ETHYLENEGLYCOL DIM ETHYL ETHER COMPLEX
Heterocyclic Organic Compound. Alternative Names: NIOBIUM(III) BROMIDE ETHYLENEGLYCOL DIM ETHYL ETHER COMPLEX. CAS No. 126083-88-3. Molecular formula: C4H10Br3NbO2. Mole weight: 422.739. Purity: 0.96. IUPACName: NbBr3(dimethoxyethane). Catalog: ACM126083883.
POLYETHYLENEGLYCOL ALKYL (3-SULFOPROPYL) DIETHER, POTASSIUM SALT
Heterocyclic Organic Compound. Alternative Names: poly(ethyleneglycol)(ca.7eo)n-alkyl(c13-c15;POLYETHYLENEGLYCOL ALKYL (3-SULFOPROPYL) DIETHER, POTASSIUM SALT;RALUFON (R) F 11-13;Heptaethyleneglycol-alpha-alkyl (C13-C15)-alcohol-omega-(3-sulfopropyl)-di-ether;Isotridecyl-alcohol-ethylene oxide (4 mole). CAS No. 119481-71-9. Purity: 0.96. Catalog: ACM119481719.
Poly(ethyleneglycol) diacetylene
Polyethyleneglycol (PEG) compounds contain a polyether unit, commonly expressed as R1-(O-CH2-CH2)n-O-R2. They are generally biocompatible, non-toxic and stable in both organic and aqueous solutions, and so are extensively used in biological applications, as well as nanotechnology and materials research. Proteins with PEG chain modifications and compounds encapsulated in PEG liposomes exhibit a longer half-life in vivo than their non-PEGylated counterparts, a phenomenon known as PEG shielding. Functionalised PEG lipids and phospholipids can be used for protein-PEG conjugation. Uses: Activated peg derivatives can be used to modify peptides, proteins, or in other bioconjugation applications. pegylated materials have found broad use in drug delivery systems, virology, and immunology, as the incorporation of peg improves pharmacological properties such as increased water solubility, enhanced resistance to degradation (protein hydrolysis), increased circulation half-life, and reduced antigenicity. in addition to pegylation, activated peg derivatives can also be used to form networks for tissue engineering or drug delivery applications, depending on the architecture and reactivity. Group: Poly(ethyleneglycol) and poly(ethylene oxide). Alternative Names: PEG diacetylene, PEG bis(4-pentynoate)terminated, Poly(ethyleneglycol) bis(4-pentynoate) terminated. Molecular formula: average Mn 2000.
Poly(ethyleneglycol) diacrylamide
Polyethyleneglycol (PEG) compounds contain a polyether unit, commonly expressed as R1-(O-CH2-CH2)n-O-R2. They are generally biocompatible, non-toxic and stable in both organic and aqueous solutions, and so are extensively used in biological applications, as well as nanotechnology and materials research. Proteins with PEG chain modifications and compounds encapsulated in PEG liposomes exhibit a longer half-life in vivo than their non-PEGylated counterparts, a phenomenon known as PEG shielding. Functionalised PEG lipids and phospholipids can be used for protein-PEG conjugation. Uses: Activated peg derivatives can be used to modify peptides, proteins, or in other bioconjugation applications. pegylated materials have found broad use in drug delivery systems, virology, and immunology, as the incorporation of peg improves pharmacological properties such as increased water solubility, enhanced resistance to degradation (protein hydrolysis), increased circulation half-life, and reduced antigenicity. in addition to pegylation, activated peg derivatives can also be used to form networks for tissue engineering or drug delivery applications, depending on the architecture and reactivity. Group: Poly(ethyleneglycol) and poly(ethylene oxide). CAS No. 160556-48-9. Pack Sizes: Packaging 1 g in glass bottle. Molecular formula: average Mn 3,700.
Polyethyleneglycol (PEG) compounds contain a polyether unit, commonly expressed as R1-(O-CH2-CH2)n-O-R2. They are generally biocompatible, non-toxic and stable in both organic and aqueous solutions, and so are extensively used in biological applications, as well as nanotechnology and materials research. Proteins with PEG chain modifications and compounds encapsulated in PEG liposomes exhibit a longer half-life in vivo than their non-PEGylated counterparts, a phenomenon known as PEG shielding. Functionalised PEG lipids and phospholipids can be used for protein-PEG conjugation. Uses: Activated peg derivatives can be used to modify peptides, proteins, or in other bioconjugation applications. pegylated materials have found broad use in drug delivery systems, virology, and immunology, as the incorporation of peg improves pharmacological properties such as increased water solubility, enhanced resistance to degradation (protein hydrolysis), increased circulation half-life, and reduced antigenicity. in addition to pegylation, activated peg derivatives can also be used to form networks for tissue engineering or drug delivery applications, depending on the architecture and reactivity. Group: 3d printing materials poly(ethyleneglycol) and poly(ethylene oxide). Pack Sizes: Packaging 1 g in glass bottle. Molecular formula: PEG average Mn 20000 (n~450) average Mn 20000.
Poly(ethyleneglycol) dimethacrylate. Group: 3d printing materials crosslinkerspoly(ethyleneglycol) and poly(ethylene oxide). CAS No. 25852-47-5.
Poly(ethyleneglycol) dimethyl ether
1,2-dimethoxyethane appears as a liquid with a sharp odor. Less dense than water. Flash point 34°F. Mildly toxic by ingestion and inhalation. Severely irritates skin and eyes. Vapors heavier than air. Used to make other chemicals.;Liquid;Liquid;COLOURLESS LIQUID WITH CHARACTERISTIC ODOUR. Group: Poly(ethyleneglycol) and poly(ethylene oxide)polymers. CAS No. 24991-55-7. Product ID: 1,2-dimethoxyethane. Molecular formula: 90.12g/mol. Mole weight: C4H10O2; CH3OCH2CH2OCH3; C4H10O2; C4H10O2. COCCOC. InChI=1S / C4H10O2 / c1-5-3-4-6-2 / h3-4H2, 1-2H3. XTHFKEDIFFGKHM-UHFFFAOYSA-N.
Poly(ethyleneglycol) dimethyl ether (NHD), average Mn ~250
1,2-dimethoxyethane appears as a liquid with a sharp odor. Less dense than water. Flash point 34°F. Mildly toxic by ingestion and inhalation. Severely irritates skin and eyes. Vapors heavier than air. Used to make other chemicals.;Liquid;Liquid;COLOURLESS LIQUID WITH CHARACTERISTIC ODOUR. Group: Polymers. CAS No. 24991-55-7. Product ID: 1,2-dimethoxyethane. Molecular formula: 90.12g/mol. Mole weight: C4H10O2; CH3OCH2CH2OCH3; C4H10O2; C4H10O2. COCCOC. InChI=1S / C4H10O2 / c1-5-3-4-6-2 / h3-4H2, 1-2H3. XTHFKEDIFFGKHM-UHFFFAOYSA-N.
Polyethyleneglycol (PEG) compounds contain a polyether unit, commonly expressed as R1-(O-CH2-CH2)n-O-R2. They are generally biocompatible, non-toxic and stable in both organic and aqueous solutions, and so are extensively used in biological applications, as well as nanotechnology and materials research. Proteins with PEG chain modifications and compounds encapsulated in PEG liposomes exhibit a longer half-life in vivo than their non-PEGylated counterparts, a phenomenon known as PEG shielding. Functionalised PEG lipids and phospholipids can be used for protein-PEG conjugation. Uses: Activated peg derivatives can be used to modify peptides, proteins, or in other bioconjugation applications. pegylated materials have found broad use in drug delivery systems, virology, and immunology, as the incorporation of peg improves pharmacological properties such as increased water solubility, enhanced resistance to degradation (protein hydrolysis), increased circulation half-life, and reduced antigenicity. in addition to pegylation, activated peg derivatives can also be used to form networks for tissue engineering or drug delivery applications, depending on the architecture and reactivity. Group: Poly(ethyleneglycol) and poly(ethylene oxide). Alternative Names: PEG ditosylate. Molecular formula: average Mn 20000.
Poly(ethyleneglycol) divinyl ether
Polyethyleneglycol (PEG) compounds contain a polyether unit, commonly expressed as R1-(O-CH2-CH2)n-O-R2. They are generally biocompatible, non-toxic and stable in both organic and aqueous solutions, and so are extensively used in biological applications, as well as nanotechnology and materials research. Proteins with PEG chain modifications and compounds encapsulated in PEG liposomes exhibit a longer half-life in vivo than their non-PEGylated counterparts, a phenomenon known as PEG shielding. Functionalised PEG lipids and phospholipids can be used for protein-PEG conjugation. Uses: Activated peg derivatives can be used to modify peptides, proteins, or in other bioconjugation applications. pegylated materials have found broad use in drug delivery systems, virology, and immunology, as the incorporation of peg improves pharmacological properties such as increased water solubility, enhanced resistance to degradation (protein hydrolysis), increased circulation half-life, and redu. Group: Poly(ethyleneglycol) and poly(ethylene oxide). CAS No. 50856-26-3. Product ID: ethane-1,2-diol; ethenol. Molecular formula: average Mn 250. Mole weight: C4H10O3. OC=C.OCCO. InChI=1S/C2H6O2.C2H4O/c3-1-2-4; 1-2-3/h3-4H, 1-2H2; 2-3H, 1H2. KMIMOJVUFBBNHO-UHFFFAOYSA-N.
Particles of this polymer can be prepared by dispersion polymerization. Uses: Light diffusing agent in plastics, matting agent, anti-blocking agent and pore-forming agent in ceramics. Group: Bioelectronic materials hydrophobic polymersself assembly and lithography. CAS No. 25777-71-3. Pack Sizes: 500 g in glass bottle. Product ID: methyl 2-methylprop-2-enoate; 2-(2-methylprop-2-enoyloxy)ethyl 2-methylprop-2-enoate. Molecular formula: 298.33g/mol. Mole weight: [-CH2C (CH3) (CO2CH3)-]X[CH2 (C-) (CH3)CO2CH2CH2O2C (C-) (CH3)CH2-]Y. COC(=O)C(C)=C. CC(=C)C(=O)OCCOC(=O)C(C)=C. 1S/C10H14O4. C5H8O2/c1-7 (2)9 (11)13-5-6-14-10 (12)8 (3)4; 1-4 (2)5 (6)7-3/h1, 3, 5-6H2, 2, 4H3; 1H2, 2-3H3. XBDAKYZJVVYINU-UHFFFAOYSA-N.
Tetra(EthyleneGlycol) Diacrylate
Tetraethyleneglycol diacrylate is a long-chain hydrophilic, crosslinking monomer. Uses: Peg-based cross-linked polymeric materials (hydrogels) are suitable carriers for drug delivery and various other biomedical s. Group: Crosslinkerspoly(ethyleneglycol) and poly(ethylene oxide). Alternative Names: TTEGDA. CAS No. 17831-71-9. Product ID: 2-[2-[2-(2-prop-2-enoyloxyethoxy)ethoxy]ethoxy]ethyl prop-2-enoate. Molecular formula: 302.32. Mole weight: C14H22O7. C=CC(=O)OCCOCCOCCOCCOC(=O)C=C. 1S/C14H22O7/c1-3-13 (15) 20-11-9-18-7-5-17-6-8-19-10-12-21-14 (16) 4-2/h3-4H, 1-2, 5-12H2. HCLJOFJIQIJXHS-UHFFFAOYSA-N.
Polyethyleneglycol (PEG) compounds contain a polyether unit, commonly expressed as R1-(O-CH2-CH2)n-O-R2. They are generally biocompatible, non-toxic and stable in both organic and aqueous solutions, and so are extensively used in biological applications, as well as nanotechnology and materials research. Proteins with PEG chain modifications and compounds encapsulated in PEG liposomes exhibit a longer half-life in vivo than their non-PEGylated counterparts, a phenomenon known as PEG shielding. Functionalised PEG lipids and phospholipids can be used for protein-PEG conjugation. Uses: Activated peg derivatives can be used to modify peptides, proteins, or in other bioconjugation applications. pegylated materials have found broad use in drug delivery systems, virology, and immunology, as the incorporation of peg improves pharmacological properties such as increased water solubility, enhanced resistance to degradation (protein hydrolysis), increased circulation half-life, and redu. Group: Crosslinkerspoly(ethyleneglycol) and poly(ethylene oxide). Alternative Names: Dimethoxytetraethyleneglycol, 2,5,8,11,14-Pentaoxapentadecane, Bis[2-(2-methoxyethoxy)ethyl] ether, Dimethyltetraglycol, Tetraglyme. CAS No. 143-24-8. Pack Sizes: Packaging 250 g in glass bottle 1 kg in glass bottle. Product ID: 1-methoxy-2-[2-[2-(2-methoxyethoxy)ethoxy]ethoxy]ethane. Molecular formula: 222.28. Mole weight: C10H22O5. COCCOCCOCC
TriethyleneGlycol Diacetate
Triethyleneglycol diacetate is an odorless clear colorless liquid. (NTP, 1992). Group: Plastic additivesplasticizers. Alternative Names: Ethanol, 2,2'-ethylenedioxydi-, diacetate. CAS No. 111-21-7. Product ID: 2-[2-(2-Acetyloxyethoxy)ethoxy]ethyl acetate. Molecular formula: 234.25. Mole weight: C10H18O6. CC(=O)OCCOCCOCCOC(=O)C. InChI=1S/C10H18O6/c1-9 (11)15-7-5-13-3-4-14-6-8-16-10 (2)12/h3-8H2, 1-2H3. OVOUKWFJRHALDD-UHFFFAOYSA-N. 98%.
TriethyleneGlycol Dimethacrylate (Stabilized with MEHQ)
Esters of acrylic acid and methacrylic acid, more commonly known as acrylates and methacrylates are key raw materials in the coatings and printing industry, and in food packaging. Group: Biochemicals. Alternative Names: 2-Methyl-2-propenoic Acid 1,1'-[1,2-ethanediylbis(oxy-2,1-ethanediyl)] Ester; Methacrylic Acid Ethylenebis (oxyethylene) Ester; 1, 2-Bis[2- (methacryloyloxy) ethoxy]ethane; ATM 2; Acryester 3ED; Bisomer TEGDMA; Blemmer PDE 150; EM 328; Esschem 943X7469; Ethylenebis (oxyethylene) methacrylate; NSC 84260; Neomer PM 201; SR 205; Sartomer SR 205; TEDMA; TEGDMA; TGM 3; TGM 3S. Grades: Highly Purified. CAS No. 109-16-0. Pack Sizes: 25g. US Biological Life Sciences.
Polyethyleneglycol (PEG) compounds contain a polyether unit, commonly expressed as R1-(O-CH2-CH2)n-O-R2. They are generally biocompatible, non-toxic and stable in both organic and aqueous solutions, and so are extensively used in biological applications, as well as nanotechnology and materials research. Proteins with PEG chain modifications and compounds encapsulated in PEG liposomes exhibit a longer half-life in vivo than their non-PEGylated counterparts, a phenomenon known as PEG shielding. Functionalised PEG lipids and phospholipids can be used for protein-PEG conjugation. Uses: Activated peg derivatives can be used to modify peptides, proteins, or in other bioconjugation applications. pegylated materials have found broad use in drug delivery systems, virology, and immunology, as the incorporation of peg improves pharmacological properties such as increased water solubility, enhanced resistance to degradation (protein hydrolysis), increased circulation half-life, and redu. Group: Poly(ethyleneglycol) and poly(ethylene oxide)polymers. CAS No. 765-12-8. Pack Sizes: Packaging 1 L in glass bottle 250 mL in glass bottle. Product ID: 1,2-bis(2-ethenoxyethoxy)ethane. Molecular formula: 202.25. Mole weight: C10H18O4. C=COCCOCCOCCOC=C. 1S / C10H18O4 / c1-3-11-5-7-13-9-10-14-8-6-12-4-2 / h3-4H, 1-2, 5-10H2. CYIGRWUIQAVBFG-UHFFFAOYSA-N.
1,2-Bis(2-chloroethoxy)ethane
Ethers. Alternative Names: 1,2-BIS(CHLORETHOXY)ETHAN;1,2-BIS(2-CHLOROETHOXY)ETHANE;2-(2-CHLOROETHOXY)ETHYL 2-CHLOROETHYL ETHER;DICHLOROTRIETHYLENE DIOXIDE;DI(2-CHLOROETHYL) CELLOSOLVE;ETHYLENEGLYCOL BIS(2-CHLOROETHYL) ETHER;TRIGLYCOL DICHLORIDE;TRIGLYCOL DICHLORIDE. CAS No. 112-26-5. Molecular formula: C6H12Cl2O2. Mole weight: 187.06. Density: 1.197g/mL at 25°C(lit.). Catalog: ACM112265.
1,2-Dimethoxyethane
1,2-Dimethoxyethane. Group: Biochemicals. Alternative Names: 2,5-Dioxahexane; DME; Dimethyl Cellosolve; Ethylene Dimethyl Ether; EthyleneGlycol Dimethyl Ether; Glyme; Hisolve MMM; MonoethyleneGlycol Dimethyl Ether; Monoglyme; NSC 60542; α, β-Dimethoxyethane. Grades: Highly Purified. CAS No. 110-71-4. Pack Sizes: 100g. US Biological Life Sciences.
Worldwide
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