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Get all SOPs of these all departments. Calibration and operating procedures of all quality control instruments and operating procedures of all production equipment are also provided on the website. All GMP topics are also covered for quality assurance."},"link":[{"rel":"http://schemas.google.com/g/2005#feed","type":"application/atom+xml","href":"https:\/\/www.pharmaguideline.com\/feeds\/posts\/default"},{"rel":"self","type":"application/atom+xml","href":"https:\/\/www.blogger.com\/feeds\/2032508520370173515\/posts\/default\/-\/Reagents?alt=json-in-script\u0026max-results=5"},{"rel":"alternate","type":"text/html","href":"https:\/\/www.pharmaguideline.com\/search\/label\/Reagents"},{"rel":"hub","href":"http://pubsubhubbub.appspot.com/"},{"rel":"next","type":"application/atom+xml","href":"https:\/\/www.blogger.com\/feeds\/2032508520370173515\/posts\/default\/-\/Reagents\/-\/Reagents?alt=json-in-script\u0026start-index=6\u0026max-results=5"}],"author":[{"name":{"$t":"Ankur Choudhary"},"uri":{"$t":"http:\/\/www.blogger.com\/profile\/13017110634151977121"},"email":{"$t":"noreply@blogger.com"},"gd$image":{"rel":"http://schemas.google.com/g/2005#thumbnail","width":"31","height":"32","src":"\/\/blogger.googleusercontent.com\/img\/b\/R29vZ2xl\/AVvXsEgNClN3RTa7EsnxCU-cdUVaGyvB6DpC1Q4P9TZcFmSeaEKDDoxxY19aCofuB_T9QotdwXw5IuPkdx2-z-kmRgFaR5q6FFCuizQ5XlYe4No2v1X7rIaM37DnG4EQHiJ2FQ\/s220\/ankur-img.jpg"}}],"generator":{"version":"7.00","uri":"http://www.blogger.com","$t":"Blogger"},"openSearch$totalResults":{"$t":"52"},"openSearch$startIndex":{"$t":"1"},"openSearch$itemsPerPage":{"$t":"5"},"entry":[{"id":{"$t":"tag:blogger.com,1999:blog-2032508520370173515.post-7878524939406309782"},"published":{"$t":"2022-08-17T12:00:00.046+05:30"},"updated":{"$t":"2023-06-16T10:46:34.256+05:30"},"category":[{"scheme":"http://www.blogger.com/atom/ns#","term":"GLP"},{"scheme":"http://www.blogger.com/atom/ns#","term":"Quality Control"},{"scheme":"http://www.blogger.com/atom/ns#","term":"Reagents"}],"title":{"type":"text","$t":"Tips for Hazardous Chemical Handling in Laboratory"},"content":{"type":"html","$t":"Handling hazardous chemicals can be dangerous and require proper training and precautions. In this article, we\u0026#39;ll provide you with tips on how to safely handle these substances, so you can stay safe while working in a lab.\u003Cspan\u003E\u003C\/span\u003E\u003Ca href=\"https:\/\/www.pharmaguideline.com\/2022\/08\/tips-for-hazardous-chemical-handling.html#more\"\u003EContinue reading »\u003C\/a\u003E"},"link":[{"rel":"replies","type":"application/atom+xml","href":"https:\/\/www.pharmaguideline.com\/feeds\/7878524939406309782\/comments\/default","title":"Post Comments"},{"rel":"replies","type":"text/html","href":"https:\/\/www.pharmaguideline.com\/2022\/08\/tips-for-hazardous-chemical-handling.html#comment-form","title":"0 Comments"},{"rel":"edit","type":"application/atom+xml","href":"https:\/\/www.blogger.com\/feeds\/2032508520370173515\/posts\/default\/7878524939406309782"},{"rel":"self","type":"application/atom+xml","href":"https:\/\/www.blogger.com\/feeds\/2032508520370173515\/posts\/default\/7878524939406309782"},{"rel":"alternate","type":"text/html","href":"https:\/\/www.pharmaguideline.com\/2022\/08\/tips-for-hazardous-chemical-handling.html","title":"Tips for Hazardous Chemical Handling in Laboratory"}],"author":[{"name":{"$t":"Ankur Choudhary"},"uri":{"$t":"http:\/\/www.blogger.com\/profile\/13017110634151977121"},"email":{"$t":"noreply@blogger.com"},"gd$image":{"rel":"http://schemas.google.com/g/2005#thumbnail","width":"31","height":"32","src":"\/\/blogger.googleusercontent.com\/img\/b\/R29vZ2xl\/AVvXsEgNClN3RTa7EsnxCU-cdUVaGyvB6DpC1Q4P9TZcFmSeaEKDDoxxY19aCofuB_T9QotdwXw5IuPkdx2-z-kmRgFaR5q6FFCuizQ5XlYe4No2v1X7rIaM37DnG4EQHiJ2FQ\/s220\/ankur-img.jpg"}}],"media$thumbnail":{"xmlns$media":"http://search.yahoo.com/mrss/","url":"https:\/\/blogger.googleusercontent.com\/img\/b\/R29vZ2xl\/AVvXsEjTK3r8ywLZaqT7GqBz6t_tUADg28Er7InileWxtr14EBKO4dJl05ZrUfpbNCElR9tZkXinpmKKookU_YLD-Z-ETQHbwv6cdG3dUxFfz1UKlr09jQFCGm0PJnp-rXq4po-0AoIZ7Bp90GUUxCa3EDEZPo02W5YOmyVJePiP4ZAgTCduA9GpzE1PeX1q9g\/s72-w320-h218-c\/hazardus-chemicals.png","height":"72","width":"72"},"thr$total":{"$t":"0"}},{"id":{"$t":"tag:blogger.com,1999:blog-2032508520370173515.post-8222301526933704438"},"published":{"$t":"2018-07-26T20:47:00.000+05:30"},"updated":{"$t":"2019-07-26T23:32:12.921+05:30"},"category":[{"scheme":"http://www.blogger.com/atom/ns#","term":"Quality Control"},{"scheme":"http://www.blogger.com/atom/ns#","term":"Reagents"}],"title":{"type":"text","$t":"Preparation of Molar and Normal Solutions"},"content":{"type":"html","$t":"\u003Cspan style=\"font-family: inherit;\"\u003EMolar and\nnormal solutions are used in the chemical analysis of raw materials. A specific\namount of chemical (solute) is dissolved to obtain the solution of required concentration\n(molar or normal solutions).\u003C\/span\u003E\u003Cbr\u003E\n\u003Ca href=\"https:\/\/www.pharmaguideline.com\/2018\/07\/preparation-of-molar-and-normal-solutions.html#more\"\u003EContinue reading »\u003C\/a\u003E"},"link":[{"rel":"edit","type":"application/atom+xml","href":"https:\/\/www.blogger.com\/feeds\/2032508520370173515\/posts\/default\/8222301526933704438"},{"rel":"self","type":"application/atom+xml","href":"https:\/\/www.blogger.com\/feeds\/2032508520370173515\/posts\/default\/8222301526933704438"},{"rel":"alternate","type":"text/html","href":"https:\/\/www.pharmaguideline.com\/2018\/07\/preparation-of-molar-and-normal-solutions.html","title":"Preparation of Molar and Normal Solutions"}],"author":[{"name":{"$t":"Ankur Choudhary"},"uri":{"$t":"http:\/\/www.blogger.com\/profile\/13017110634151977121"},"email":{"$t":"noreply@blogger.com"},"gd$image":{"rel":"http://schemas.google.com/g/2005#thumbnail","width":"31","height":"32","src":"\/\/blogger.googleusercontent.com\/img\/b\/R29vZ2xl\/AVvXsEgNClN3RTa7EsnxCU-cdUVaGyvB6DpC1Q4P9TZcFmSeaEKDDoxxY19aCofuB_T9QotdwXw5IuPkdx2-z-kmRgFaR5q6FFCuizQ5XlYe4No2v1X7rIaM37DnG4EQHiJ2FQ\/s220\/ankur-img.jpg"}}]},{"id":{"$t":"tag:blogger.com,1999:blog-2032508520370173515.post-4977512390797781691"},"published":{"$t":"2018-04-22T22:22:00.002+05:30"},"updated":{"$t":"2019-05-14T11:47:29.226+05:30"},"category":[{"scheme":"http://www.blogger.com/atom/ns#","term":"Quality Control"},{"scheme":"http://www.blogger.com/atom/ns#","term":"Reagents"},{"scheme":"http://www.blogger.com/atom/ns#","term":"Test"}],"title":{"type":"text","$t":"Karl Fischer Reagent and Its Reactions"},"content":{"type":"html","$t":"You are given a sample with a trace amount of water and you need to determine the amount of water in the sample, what do you do? The method to use is the Karl Fischer (KF) moisture analysis. Karl Fischer method uses the Karl Fischer Reagents to determine the moisture content of a sample and it is a widely popular method because it allows you to determine the water content of drug in a very fast, accurate and specific way in addition to needing a very small amount of sample for the analysis.\u003Cbr\u003E\n\u003Ca href=\"https:\/\/www.pharmaguideline.com\/2018\/04\/karl-fischer-regent-and-its-reactions.html#more\"\u003EContinue reading »\u003C\/a\u003E"},"link":[{"rel":"replies","type":"application/atom+xml","href":"https:\/\/www.pharmaguideline.com\/feeds\/4977512390797781691\/comments\/default","title":"Post Comments"},{"rel":"replies","type":"text/html","href":"https:\/\/www.pharmaguideline.com\/2018\/04\/karl-fischer-regent-and-its-reactions.html#comment-form","title":"0 Comments"},{"rel":"edit","type":"application/atom+xml","href":"https:\/\/www.blogger.com\/feeds\/2032508520370173515\/posts\/default\/4977512390797781691"},{"rel":"self","type":"application/atom+xml","href":"https:\/\/www.blogger.com\/feeds\/2032508520370173515\/posts\/default\/4977512390797781691"},{"rel":"alternate","type":"text/html","href":"https:\/\/www.pharmaguideline.com\/2018\/04\/karl-fischer-regent-and-its-reactions.html","title":"Karl Fischer Reagent and Its Reactions"}],"author":[{"name":{"$t":"Ankur Choudhary"},"uri":{"$t":"http:\/\/www.blogger.com\/profile\/13017110634151977121"},"email":{"$t":"noreply@blogger.com"},"gd$image":{"rel":"http://schemas.google.com/g/2005#thumbnail","width":"31","height":"32","src":"\/\/blogger.googleusercontent.com\/img\/b\/R29vZ2xl\/AVvXsEgNClN3RTa7EsnxCU-cdUVaGyvB6DpC1Q4P9TZcFmSeaEKDDoxxY19aCofuB_T9QotdwXw5IuPkdx2-z-kmRgFaR5q6FFCuizQ5XlYe4No2v1X7rIaM37DnG4EQHiJ2FQ\/s220\/ankur-img.jpg"}}],"media$thumbnail":{"xmlns$media":"http://search.yahoo.com/mrss/","url":"https:\/\/4.bp.blogspot.com\/-V6hbqRGl7lU\/Wty5fVPq9PI\/AAAAAAAAHSg\/l62CeSWnLe45wPZsmygDwgAvG7OnqK_dwCLcBGAs\/s72-c\/KFR.jpg","height":"72","width":"72"},"thr$total":{"$t":"0"}},{"id":{"$t":"tag:blogger.com,1999:blog-2032508520370173515.post-2520441021657951515"},"published":{"$t":"2016-01-17T20:41:00.000+05:30"},"updated":{"$t":"2017-12-26T10:44:23.163+05:30"},"category":[{"scheme":"http://www.blogger.com/atom/ns#","term":"GLP"},{"scheme":"http://www.blogger.com/atom/ns#","term":"Quality Control"},{"scheme":"http://www.blogger.com/atom/ns#","term":"Reagents"}],"title":{"type":"text","$t":"Determination of Shelf Life of Solutions in Laboratory"},"content":{"type":"html","$t":"\u003Cdiv dir=\"ltr\" style=\"text-align: left;\" trbidi=\"on\"\u003E\n\u003Cdiv class=\"MsoNormal\" style=\"margin-bottom: 0.0001pt;\"\u003E\n\u003Cdiv style=\"text-align: justify;\"\u003E\n\u003Cspan style=\"font-family: inherit;\"\u003EIncorrect strength or concentration of \u003Ca href=\"http:\/\/www.pharmaguideline.com\/2010\/09\/preparation-and-standardisation-of.html\" target=\"_blank\"\u003Evolumetric solutions\u003C\/a\u003E, reagents and \u003Ca href=\"http:\/\/www.pharmaguideline.com\/2010\/09\/preparation-of-buffer-solutions.html\" target=\"_blank\"\u003Ebuffer solutions\u003C\/a\u003E can alter the results of analyzed products. Solutions prepared for chemical analysis are not stable for a longer period.\u003C\/span\u003E\u003C\/div\u003E\n\u003C\/div\u003E\n\u003C\/div\u003E\u003Ca href=\"https:\/\/www.pharmaguideline.com\/2013\/08\/shelf-life-volumetric-reagent-buffer-solutions.html#more\"\u003EContinue reading »\u003C\/a\u003E"},"link":[{"rel":"replies","type":"application/atom+xml","href":"https:\/\/www.pharmaguideline.com\/feeds\/2520441021657951515\/comments\/default","title":"Post Comments"},{"rel":"replies","type":"text/html","href":"https:\/\/www.pharmaguideline.com\/2013\/08\/shelf-life-volumetric-reagent-buffer-solutions.html#comment-form","title":"11 Comments"},{"rel":"edit","type":"application/atom+xml","href":"https:\/\/www.blogger.com\/feeds\/2032508520370173515\/posts\/default\/2520441021657951515"},{"rel":"self","type":"application/atom+xml","href":"https:\/\/www.blogger.com\/feeds\/2032508520370173515\/posts\/default\/2520441021657951515"},{"rel":"alternate","type":"text/html","href":"https:\/\/www.pharmaguideline.com\/2013\/08\/shelf-life-volumetric-reagent-buffer-solutions.html","title":"Determination of Shelf Life of Solutions in Laboratory"}],"author":[{"name":{"$t":"Ankur Choudhary"},"uri":{"$t":"http:\/\/www.blogger.com\/profile\/13017110634151977121"},"email":{"$t":"noreply@blogger.com"},"gd$image":{"rel":"http://schemas.google.com/g/2005#thumbnail","width":"31","height":"32","src":"\/\/blogger.googleusercontent.com\/img\/b\/R29vZ2xl\/AVvXsEgNClN3RTa7EsnxCU-cdUVaGyvB6DpC1Q4P9TZcFmSeaEKDDoxxY19aCofuB_T9QotdwXw5IuPkdx2-z-kmRgFaR5q6FFCuizQ5XlYe4No2v1X7rIaM37DnG4EQHiJ2FQ\/s220\/ankur-img.jpg"}}],"media$thumbnail":{"xmlns$media":"http://search.yahoo.com/mrss/","url":"https:\/\/1.bp.blogspot.com\/-mCNSVwq-U1c\/Uh87hLKRWjI\/AAAAAAAACkg\/DHfUKDFDIwQ\/s72-c\/Volumetric+Solution.png","height":"72","width":"72"},"thr$total":{"$t":"11"}},{"id":{"$t":"tag:blogger.com,1999:blog-2032508520370173515.post-652231280698057801"},"published":{"$t":"2011-03-19T10:02:00.001+05:30"},"updated":{"$t":"2018-05-30T09:26:40.045+05:30"},"category":[{"scheme":"http://www.blogger.com/atom/ns#","term":"Quality Control"},{"scheme":"http://www.blogger.com/atom/ns#","term":"Reagents"}],"title":{"type":"text","$t":"Preparation and Standardization of 0.1 M Silver Nitrate"},"content":{"type":"html","$t":"\u003Ch2\u003E\nSilver Nitrate Solution Preparation\u003C\/h2\u003E\n\u003Cul\u003E\n\u003Cli\u003ETake about 100 ml of water in a cleaned and dried 1000 ml volumetric flask.\u003C\/li\u003E\n\u003Cli\u003EAdd about 17 gm of Silver Nitrate with continues stirring.\u0026nbsp;\u003C\/li\u003E\n\u003Cli\u003EAdd more about 700 ml of distilled water, mix.\u003C\/li\u003E\n\u003Cli\u003EMake up the volume 1000 ml with water. Mix solution thoroughly.\u0026nbsp;\u003C\/li\u003E\n\u003Cli\u003EKeep the solution for at least one hour and then carry out the standardization.\u003C\/li\u003E\n\u003C\/ul\u003E\nRelated: \u003Ca href=\"http:\/\/www.pharmaguideline.com\/2013\/08\/shelf-life-volumetric-reagent-buffer-solutions.html\"\u003EDetermination of Shelf Life of Solutions in Laboratory\u003C\/a\u003E\u003Cbr \/\u003E\u003Cbr\/\u003E\u003Cga1\u003E\u003C\/ga1\u003E\u003Ch2\u003E\nSilver Nitrate Solution Standardization\u003C\/h2\u003E\n\u003Cul\u003E\n\u003Cli\u003ETransfer about 50 mg, accurately weighed, of reagent-grade sodium chloride, previously dried at 110° for 2 hours, to a 150-ml conical flask.\u003C\/li\u003E\n\u003Cli\u003EDissolve in 5 ml of distilled water.\u0026nbsp;\u003C\/li\u003E\n\u003Cli\u003EAdd 2.5 ml of acetic acid, 25 ml of methanol, and about 0.25 ml of \u003Ca href=\"http:\/\/www.pharmaguideline.com\/2010\/09\/preparation-of-indicator-solutions.html\"\u003EEosin Y indicator\u003C\/a\u003E.\u003C\/li\u003E\n\u003Cli\u003EStir, preferably with a \u003Ca href=\"http:\/\/www.pharmaguideline.com\/2011\/03\/sop-for-operation-of-magnetic-stirrer.html\"\u003Emagnetic stirrer\u003C\/a\u003E.\u003C\/li\u003E\n\u003Cli\u003ETitrate with the silver nitrate solution.\u003C\/li\u003E\n\u003Cli\u003ECalculate the molarity of solution by the following formula:\u003C\/li\u003E\n\u003C\/ul\u003E\n\u0026nbsp; \u0026nbsp; \u0026nbsp; \u0026nbsp; \u0026nbsp; \u0026nbsp; \u0026nbsp; \u0026nbsp; \u0026nbsp; NaCl in mg\u003Cbr \/\u003EM = ---------------------------\u003Cbr \/\u003E\u0026nbsp; \u0026nbsp; \u0026nbsp; \u0026nbsp; \u0026nbsp; \u0026nbsp;AgNO3 in ml x 58.44"},"link":[{"rel":"replies","type":"application/atom+xml","href":"https:\/\/www.pharmaguideline.com\/feeds\/652231280698057801\/comments\/default","title":"Post Comments"},{"rel":"replies","type":"text/html","href":"https:\/\/www.pharmaguideline.com\/2011\/03\/preparation-and-standardization-of-01-m_19.html#comment-form","title":"5 Comments"},{"rel":"edit","type":"application/atom+xml","href":"https:\/\/www.blogger.com\/feeds\/2032508520370173515\/posts\/default\/652231280698057801"},{"rel":"self","type":"application/atom+xml","href":"https:\/\/www.blogger.com\/feeds\/2032508520370173515\/posts\/default\/652231280698057801"},{"rel":"alternate","type":"text/html","href":"https:\/\/www.pharmaguideline.com\/2011\/03\/preparation-and-standardization-of-01-m_19.html","title":"Preparation and Standardization of 0.1 M Silver Nitrate"}],"author":[{"name":{"$t":"Ankur Choudhary"},"uri":{"$t":"http:\/\/www.blogger.com\/profile\/13017110634151977121"},"email":{"$t":"noreply@blogger.com"},"gd$image":{"rel":"http://schemas.google.com/g/2005#thumbnail","width":"31","height":"32","src":"\/\/blogger.googleusercontent.com\/img\/b\/R29vZ2xl\/AVvXsEgNClN3RTa7EsnxCU-cdUVaGyvB6DpC1Q4P9TZcFmSeaEKDDoxxY19aCofuB_T9QotdwXw5IuPkdx2-z-kmRgFaR5q6FFCuizQ5XlYe4No2v1X7rIaM37DnG4EQHiJ2FQ\/s220\/ankur-img.jpg"}}],"thr$total":{"$t":"5"}}]}});