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		<loc>https://www.omicsonline.org/open-access/nano-scale-potentiometric-and-spectrophotometric-assays-for24dichlorophenoxyacetic-acid-2155-9872-1000257.php?aid=58217</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-chlorophyll-extract-concentration-6-257-g011.png</image:loc>
		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-watercress-chlorophyll-extract-6-257-g010.png</image:loc>
		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Effect-time-absorbance-6-257-g009.png</image:loc>
		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Calibration-curve-6-257-g008.png</image:loc>
		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-different-solvent-absorbance-6-257-g007.png</image:loc>
		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Effect-pH-residual-6-257-g006.png</image:loc>
		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Effect-temperature-residual-6-257-g005.png</image:loc>
		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Effect-pH-Solution-6-257-g004.png</image:loc>
		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Effect-interference-6-257-g003.png</image:loc>
		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Response-selective-electrode-6-257-g002.png</image:loc>
		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Potential-calibration-technique-6-257-g001.png</image:loc>
		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<loc>https://www.omicsonline.org/open-access/development-of-an-on-line-gc-system-2155-9872.S12-008.php?aid=24083</loc>
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		<image:caption>Development of an Online GC System using Existing Retired Equipment</image:caption>
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		<image:caption>Development of an Online GC System using Existing Retired Equipment</image:caption>
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		<image:caption>Development of an Online GC System using Existing Retired Equipment</image:caption>
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		<image:caption>Development of an Online GC System using Existing Retired Equipment</image:caption>
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		<image:caption>Development of an Online GC System using Existing Retired Equipment</image:caption>
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		<image:caption>Development of an Online GC System using Existing Retired Equipment</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-auto-sampler-S12-008-g003.png</image:loc>
		<image:caption>Development of an Online GC System using Existing Retired Equipment</image:caption>
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		<image:caption>Development of an Online GC System using Existing Retired Equipment</image:caption>
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		<image:caption>Development of an Online GC System using Existing Retired Equipment</image:caption>
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		<image:caption>Development and Validation of UPLC Method for the Determination ofDuloxetine Hydrochloride and Its Impurities in Active Pharmaceutical Ingredient</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-impurities-6-234-g005.png</image:loc>
		<image:caption>Development and Validation of UPLC Method for the Determination ofDuloxetine Hydrochloride and Its Impurities in Active Pharmaceutical Ingredient</image:caption>
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		<image:caption>Development and Validation of UPLC Method for the Determination ofDuloxetine Hydrochloride and Its Impurities in Active Pharmaceutical Ingredient</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Chromatogram-6-234-g003.png</image:loc>
		<image:caption>Development and Validation of UPLC Method for the Determination ofDuloxetine Hydrochloride and Its Impurities in Active Pharmaceutical Ingredient</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-duloxetine-hydrochloride-6-234-g002.png</image:loc>
		<image:caption>Development and Validation of UPLC Method for the Determination ofDuloxetine Hydrochloride and Its Impurities in Active Pharmaceutical Ingredient</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Duloxetine-hydrochloride-6-234-g001.png</image:loc>
		<image:caption>Development and Validation of UPLC Method for the Determination ofDuloxetine Hydrochloride and Its Impurities in Active Pharmaceutical Ingredient</image:caption>
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		<loc>https://www.omicsonline.org/simultaneous-determination-of-morphine-morphine-glucuronides-m3g-m6g-and-oxycodone-in-human-plasma-by-high-performance-liquid-chromatography-2155-9872.1000101.php?aid=82</loc>
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		<image:caption>Rapid Simultaneous Determination of Sumatriptan Succinate and Naproxen Sodium in Combined Tablets by Validated Ultra Performance Liquid Chromatographic Method</image:caption>
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		<image:caption>Rapid Simultaneous Determination of Sumatriptan Succinate and Naproxen Sodium in Combined Tablets by Validated Ultra Performance Liquid Chromatographic Method</image:caption>
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		<image:caption>Development and Validation of a Liquid Chromatography Method for the Analysis of Paromomycin Sulfate and its Impurities</image:caption>
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		<image:caption>Development and Validation of a Liquid Chromatography Method for the Analysis of Paromomycin Sulfate and its Impurities</image:caption>
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		<image:caption>Development and Validation of a Liquid Chromatography Method for the Analysis of Paromomycin Sulfate and its Impurities</image:caption>
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		<image:caption>Development and Validation of a Liquid Chromatography Method for the Analysis of Paromomycin Sulfate and its Impurities</image:caption>
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		<image:caption>Development and Validation of a Liquid Chromatography Method for the Analysis of Paromomycin Sulfate and its Impurities</image:caption>
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		<image:caption>Development and Validation of a Liquid ChromatographicMass Spectrometric Method for the Determination of Saikosaponin a in Rat Plasma and its Application to Pharmacokinetic Study</image:caption>
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		<image:caption>Catechol Tetrahydroisoquinolines Enhance aSynuclein Aggregation andSpecify the Neurotoxicity to Dopaminergic Neurons</image:caption>
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		<image:caption>Catechol Tetrahydroisoquinolines Enhance aSynuclein Aggregation andSpecify the Neurotoxicity to Dopaminergic Neurons</image:caption>
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		<image:caption>Catechol Tetrahydroisoquinolines Enhance aSynuclein Aggregation andSpecify the Neurotoxicity to Dopaminergic Neurons</image:caption>
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		<image:caption>Catechol Tetrahydroisoquinolines Enhance aSynuclein Aggregation andSpecify the Neurotoxicity to Dopaminergic Neurons</image:caption>
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		<image:caption>Catechol Tetrahydroisoquinolines Enhance aSynuclein Aggregation andSpecify the Neurotoxicity to Dopaminergic Neurons</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/alzheimers-disease-parkinsonism-Sal-NM-Sal-7-308-g004.png</image:loc>
		<image:caption>Catechol Tetrahydroisoquinolines Enhance aSynuclein Aggregation andSpecify the Neurotoxicity to Dopaminergic Neurons</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/alzheimers-disease-parkinsonism-mitochondrial-membrane-7-308-g003.png</image:loc>
		<image:caption>Catechol Tetrahydroisoquinolines Enhance aSynuclein Aggregation andSpecify the Neurotoxicity to Dopaminergic Neurons</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/alzheimers-disease-parkinsonism-diabetic-rats-7-308-g002.png</image:loc>
		<image:caption>Catechol Tetrahydroisoquinolines Enhance aSynuclein Aggregation andSpecify the Neurotoxicity to Dopaminergic Neurons</image:caption>
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		<image:caption>Catechol Tetrahydroisoquinolines Enhance aSynuclein Aggregation andSpecify the Neurotoxicity to Dopaminergic Neurons</image:caption>
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		<image:caption>Presenilin 1 Mutation A431V Causing Features of Dementia with LewyBodies in a Chinese Family of Alzheimers Disease</image:caption>
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		<image:caption>Lack of AMACR Immunostaining is an Independent Predictor of Poor Prognosis in Colorectal Carcinoma</image:caption>
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		<image:caption>Again, Dental Impaction and Infection, What to do</image:caption>
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		<image:caption>Again, Dental Impaction and Infection, What to do</image:caption>
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		<image:caption>Again, Dental Impaction and Infection, What to do</image:caption>
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		<image:caption>Again, Dental Impaction and Infection, What to do</image:caption>
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		<image:caption>Again, Dental Impaction and Infection, What to do</image:caption>
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		<image:caption>Again, Dental Impaction and Infection, What to do</image:caption>
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