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		<loc>https://www.omicsonline.org/open-access/tumor-genomic-profiling-reports-from-different-vendors-a-comparisonwith-respect-to-clinical-action-ability-of-the-provided-data-.php?aid=78713</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-molecular-diagnostics-Variants-annotated-category-IV-actionable-1-110-g005.png</image:loc>
		<image:caption>Tumor Genomic Profiling Reports from Different Vendors A Comparison with Respect to Clinical Action Ability of the Provided Data</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-molecular-diagnostics-Variants-annotated-category-III-actionable-1-110-g004.png</image:loc>
		<image:caption>Tumor Genomic Profiling Reports from Different Vendors A Comparison with Respect to Clinical Action Ability of the Provided Data</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-molecular-diagnostics-Variants-annotated-category-II-actionable-1-110-g003.png</image:loc>
		<image:caption>Tumor Genomic Profiling Reports from Different Vendors A Comparison with Respect to Clinical Action Ability of the Provided Data</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-molecular-diagnostics-Variants-annotated-category-I-actionable-1-110-g002.png</image:loc>
		<image:caption>Tumor Genomic Profiling Reports from Different Vendors A Comparison with Respect to Clinical Action Ability of the Provided Data</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-molecular-diagnostics-bar-graph-principally-shows-same-data-1-110-g001c.png</image:loc>
		<image:caption>Tumor Genomic Profiling Reports from Different Vendors A Comparison with Respect to Clinical Action Ability of the Provided Data</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/advances-molecular-diagnostics-bar-graph-shows-ratio-actionable-1-110-g001b.png</image:loc>
		<image:caption>Tumor Genomic Profiling Reports from Different Vendors A Comparison with Respect to Clinical Action Ability of the Provided Data</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/advances-molecular-diagnostics-Overall-trends-Action-ability-1-110-g001a.png</image:loc>
		<image:caption>Tumor Genomic Profiling Reports from Different Vendors A Comparison with Respect to Clinical Action Ability of the Provided Data</image:caption>
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		<loc>https://www.omicsonline.org/open-access/saving-the-farmers-and-strengthening-food-security-by-a-promisingr-cum-f-agriculture-2329-8863-1000268.php?aid=89065</loc>
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		<image:caption>Saving the Farmers and Strengthening Food Security by a PromisingR cum F Agriculture</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-Farmer-committing-5-268-g007.png</image:loc>
		<image:caption>Saving the Farmers and Strengthening Food Security by a PromisingR cum F Agriculture</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-farming-5-268-g006.png</image:loc>
		<image:caption>Saving the Farmers and Strengthening Food Security by a PromisingR cum F Agriculture</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-passageway-5-268-g005.png</image:loc>
		<image:caption>Saving the Farmers and Strengthening Food Security by a PromisingR cum F Agriculture</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-importance-5-268-g004.png</image:loc>
		<image:caption>Saving the Farmers and Strengthening Food Security by a PromisingR cum F Agriculture</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-Trenches-gives-5-268-g003.png</image:loc>
		<image:caption>Saving the Farmers and Strengthening Food Security by a PromisingR cum F Agriculture</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-farmers-begging-5-268-g002.png</image:loc>
		<image:caption>Saving the Farmers and Strengthening Food Security by a PromisingR cum F Agriculture</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-cultivated-5-268-g001.png</image:loc>
		<image:caption>Saving the Farmers and Strengthening Food Security by a PromisingR cum F Agriculture</image:caption>
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	<url>
		<loc>https://www.omicsonline.org/open-access/effect-of-fertilizer-and-rhizobium-inoculation-on-growth-and-yield-ofsoyabean-variety-glycine-max-l-merrill-2329-8863-1000255.php?aid=86596</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-soybean-number-nodes-5-255-g004.png</image:loc>
		<image:caption>Effect of Fertilizer and Rhizobium Inoculation on Growth and Yield ofSoyabean Variety emGlycine maxem L Merrill</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-soybean-number-branches-5-255-g003.png</image:loc>
		<image:caption>Effect of Fertilizer and Rhizobium Inoculation on Growth and Yield ofSoyabean Variety emGlycine maxem L Merrill</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-soybean-number-leaves-different-growth-stages-5-255-g002.png</image:loc>
		<image:caption>Effect of Fertilizer and Rhizobium Inoculation on Growth and Yield ofSoyabean Variety emGlycine maxem L Merrill</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-Effect-variety-fertilizers-inoculation-5-255-g001.png</image:loc>
		<image:caption>Effect of Fertilizer and Rhizobium Inoculation on Growth and Yield ofSoyabean Variety emGlycine maxem L Merrill</image:caption>
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		<loc>https://www.omicsonline.org/open-access/table-sugar-as-low-cost-option-and-its-concentration-effect-on-shootmultiplication-of-sugarcane-saccharum-officinarum-l-genotypes-2329-8863-1000248.php?aid=84177</loc>
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		<image:caption>Table Sugar as Low Cost Option and its Concentration Effect on ShootMultiplication of Sugarcane Saccharum officinarum L Genotypes</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-leaf-number-4-248-g002.png</image:loc>
		<image:caption>Table Sugar as Low Cost Option and its Concentration Effect on ShootMultiplication of Sugarcane Saccharum officinarum L Genotypes</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-table-sugar-4-248-g001.png</image:loc>
		<image:caption>Table Sugar as Low Cost Option and its Concentration Effect on ShootMultiplication of Sugarcane Saccharum officinarum L Genotypes</image:caption>
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		</url>
	<url>
		<loc>https://www.omicsonline.org/open-access/growth-and-yield-response-of-cowpea-vigna-unguiculata-l-walp-tointegrated-use-of-planting-pattern-and-herbicide-mixtures-in-wollon-2329-8863-1000245.php?aid=83077</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-4-245-e001.png</image:loc>
		<image:caption>Growth and Yield Response of Cowpea Vigna unguiculata L Walp toIntegrated Use of Planting Pattern and Herbicide Mixtures in Wollo,Northern Ethiopia</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-technology-maximum-minimum-temperatures-4-245-g001.png</image:loc>
		<image:caption>Growth and Yield Response of Cowpea Vigna unguiculata L Walp toIntegrated Use of Planting Pattern and Herbicide Mixtures in Wollo,Northern Ethiopia</image:caption>
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		</url>
	<url>
		<loc>https://www.omicsonline.org/open-access/use-of-bulk-segregant-analysis-for-varietal-identification-and-geneticdiversity-estimation-in-pakistani-basmati-and-nonbasmati-ric-2329-8863-1000227.php?aid=77893</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-and-technology-Principal-coordinates-g006.png</image:loc>
		<image:caption>Use of Bulk Segregant Analysis for Varietal Identification and GeneticDiversity Estimation in Pakistani Basmati and NonBasmati Rice Cultivarsthrough Molecular Markers</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-and-technology-Pie-chart-g005.png</image:loc>
		<image:caption>Use of Bulk Segregant Analysis for Varietal Identification and GeneticDiversity Estimation in Pakistani Basmati and NonBasmati Rice Cultivarsthrough Molecular Markers</image:caption>
		</image:image>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-and-technology-29-RAPD-18-ISSR-4-227-g004.png</image:loc>
		<image:caption>Use of Bulk Segregant Analysis for Varietal Identification and GeneticDiversity Estimation in Pakistani Basmati and NonBasmati Rice Cultivarsthrough Molecular Markers</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-and-technology-genetic-similarity-4-227-g003.png</image:loc>
		<image:caption>Use of Bulk Segregant Analysis for Varietal Identification and GeneticDiversity Estimation in Pakistani Basmati and NonBasmati Rice Cultivarsthrough Molecular Markers</image:caption>
		</image:image>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-and-technology-UPGMA-dendrogram-4-227-g002.png</image:loc>
		<image:caption>Use of Bulk Segregant Analysis for Varietal Identification and GeneticDiversity Estimation in Pakistani Basmati and NonBasmati Rice Cultivarsthrough Molecular Markers</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-and-technology-cultivars-rice-4-227-g001.png</image:loc>
		<image:caption>Use of Bulk Segregant Analysis for Varietal Identification and GeneticDiversity Estimation in Pakistani Basmati and NonBasmati Rice Cultivarsthrough Molecular Markers</image:caption>
		</image:image>
		</url>
	<url>
		<loc>https://www.omicsonline.org/open-access/food-seed-health-of-chick-pea-cicer-arietinum-l-at-panchgaongurgaon-india-2329-8863-1000229.php?aid=77899</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/advances-crop-science-and-technology-4-229-g001.png</image:loc>
		<image:caption>Food Seed Health of Chick Pea Cicer arietinum L at Panchgaon,Gurgaon, India</image:caption>
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		</url>
	<url>
		<loc>https://www.omicsonline.org/open-access/degradation-and-downward-movement-of-lindane-in-soil-under-cultivatedfield-conditions-2329-8863-1000198.php?aid=62286</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/2329-8863-4-198-e001.gif</image:loc>
		<image:caption>Degradation and Downward Movement of Lindane in Soil Under CultivatedField Conditions</image:caption>
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		</url>
	<url>
		<loc>https://www.omicsonline.org/open-access/distribution-of-wheat-stem-rust-puccinia-graminis-f-sp-tritici-in-westand-southwest-shewa-zones-and-identification-of-its-phsiological-races-2329-8863-1000189.php?aid=61700</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/2329-8863-3-189-e003.gif</image:loc>
		<image:caption>Distribution of Wheat Stem Rust Puccinia Graminis F Sp Tritici in Westand Southwest Shewa Zones and Identification of its Phsiological Races</image:caption>
		</image:image>
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		<image:loc>https://www.omicsonline.org/articles-images/2329-8863-3-189-e002.gif</image:loc>
		<image:caption>Distribution of Wheat Stem Rust Puccinia Graminis F Sp Tritici in Westand Southwest Shewa Zones and Identification of its Phsiological Races</image:caption>
		</image:image>
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		<image:loc>https://www.omicsonline.org/articles-images/2329-8863-3-189-e001.gif</image:loc>
		<image:caption>Distribution of Wheat Stem Rust Puccinia Graminis F Sp Tritici in Westand Southwest Shewa Zones and Identification of its Phsiological Races</image:caption>
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		</url>
	<url>
		<loc>https://www.omicsonline.org/open-access/comparative-studies-of-chemical-composition-antioxidant-and-antimicrobialpotentials-of-essential-oils-and-oleoresins-obtained-from.php?aid=82112</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-3-119-e001.png</image:loc>
		<image:caption>Comparative Studies of Chemical Composition, Antioxidant and Antimicrobial Potentials of Essential Oils and Oleoresins Obtained from Seeds and Leaves of emAnethum graveolens Lem</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-Ferrous-ion-chelating-3-119-g006.png</image:loc>
		<image:caption>Comparative Studies of Chemical Composition, Antioxidant and Antimicrobial Potentials of Essential Oils and Oleoresins Obtained from Seeds and Leaves of emAnethum graveolens Lem</image:caption>
		</image:image>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-thiocyanate-method-3-119-g005.png</image:loc>
		<image:caption>Comparative Studies of Chemical Composition, Antioxidant and Antimicrobial Potentials of Essential Oils and Oleoresins Obtained from Seeds and Leaves of emAnethum graveolens Lem</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-Scavenging-effect-3-119-g004.png</image:loc>
		<image:caption>Comparative Studies of Chemical Composition, Antioxidant and Antimicrobial Potentials of Essential Oils and Oleoresins Obtained from Seeds and Leaves of emAnethum graveolens Lem</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-malondialdehyde-3-119-g003.png</image:loc>
		<image:caption>Comparative Studies of Chemical Composition, Antioxidant and Antimicrobial Potentials of Essential Oils and Oleoresins Obtained from Seeds and Leaves of emAnethum graveolens Lem</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-primary-oxidation-3-119-g002.png</image:loc>
		<image:caption>Comparative Studies of Chemical Composition, Antioxidant and Antimicrobial Potentials of Essential Oils and Oleoresins Obtained from Seeds and Leaves of emAnethum graveolens Lem</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/toxicology-essential-oils-3-119-s001.png</image:loc>
		<image:caption>Comparative Studies of Chemical Composition, Antioxidant and Antimicrobial Potentials of Essential Oils and Oleoresins Obtained from Seeds and Leaves of emAnethum graveolens Lem</image:caption>
		</image:image>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-gallic-acid-3-119-g001.png</image:loc>
		<image:caption>Comparative Studies of Chemical Composition, Antioxidant and Antimicrobial Potentials of Essential Oils and Oleoresins Obtained from Seeds and Leaves of emAnethum graveolens Lem</image:caption>
		</image:image>
		</url>
	<url>
		<loc>https://www.omicsonline.org/open-access/analysis-of-clodinafoppropargyl-herbicide-transport-in-soil-profile-undervetiver-cultivation-using-hydrus1d-and-modified-przm3-mod.php?aid=84986</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-3-120-e016.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-clodinafoppropargyl-3-120-g009.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
		</image:image>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-soil-residues-3-120-g008.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-C1S-treatment-3-120-g007.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-C1V-treatment-3-120-g006.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-C2S-treatment-3-120-g005.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-simulated-concentrations-3-120-g004.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
		</image:image>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-soil-profile-3-120-g003.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-3-120-e015.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-3-120-e014.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-3-120-e013.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
		</image:image>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-3-120-e012.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
		</image:image>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-3-120-e011.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
		</image:image>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-3-120-e010.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-soil-column-3-120-g002.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-3-120-e009.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-3-120-e008.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
		</image:image>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-3-120-e007.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-3-120-e006.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/toxicology-3-120-e005.png</image:loc>
		<image:caption>Analysis of Clodinafoppropargyl Herbicide Transport in Soil Profile under Vetiver Cultivation using HYDRUS1D and Modified PRZM3 Models</image:caption>
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		<image:caption>Chitin ElicitorResponsive Photon Emission is potentiated by Plant Activators through Priming of Salicylic Acid Signaling via OsWRKY45 in Rice</image:caption>
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	</urlset>
