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Pharmaceutical Drug Analysis -

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Pharmaceutical Drug Analysis
-:- Pharmaceutical Chemicals: Purity and Management
-:- Pharmaceutical Chemicals: Purity
-:- Pharmaceutical Chemicals: Management
-:- Description of the Drug or Finished Product - Pharmaceutical Chemicals: Management
-:- Sampling Procedures and Errors - Pharmaceutical Chemicals: Management
-:- Bioavailability - Pharmaceutical Chemicals: Management
-:- Identification Tests - Pharmaceutical Chemicals: Management
-:- Physical Constants - Pharmaceutical Chemicals: Management
-:- Limit Tests Vis-A-Vis Quantitative Determinations
-:- Various Types of Tests for Quantitative Determinations - Pharmaceutical Chemicals: Management
-:- Limit Tests for Metallic Impurities
-:- Limit Tests for Lead
-:- Limit Test for Arsenic
-:- Limit Test’s for Acid Radical Impurities
-:- Limit Tests for Non-Metallic Impurities
-:- Theory and Technique of Quantitative Analysis
-:- Volumetric Analysis
-:- Volumetric Apparatus
-:- Volumetric Analysis: General Cosiderations
-:- Technique of Volumetric Analysis
-:- Biomedical Analytical Chemistry
-:- Biomedical Analytical Chemistry: Colorimetric Assays
-:- Biomedical Analytical Chemistry: Enzymatic Assays
-:- Radioimmunoassays (RIAS)
-:- Automated Methods of Clinical Analysis
-:- Errors in Pharmaceutical Analysis
-:- Classification of Errors in Pharmaceutical Analysis
-:- Pharmaceutical Statistical Validation
-:- Statistical Treatment of Finite Samples
-:- Distribution of Random Numbers
-:- Significant Figures
-:- Comparison of Results
-:- Method of Least Squares
-:- Recommendations for Criteria of Rejecting an Observation
-:- Sampling Statistics
-:- Aqueous Titrations
-:- Theory of Acidimetry
-:- Aqueous Titrations: Assay of Drugs
-:- Theory of Alkalimetry
-:- Non-Aqueous Titrations
-:- Non-Aqueous Titrations: Theory
-:- Non-Aqueous Titrations: Methodology
-:- Assay by Non-Aqueous Titrations
-:- Acidimetry in Non-Aqueous Titrations
-:- Alkalimetry in Non-Aqueous Titrations
-:- Permanganate, Dichromate and Ceric Sulphate Titration Methods
-:- Theory - Permanganate, Dichromate and Ceric Sulphate Titration Methods
-:- Assay Methods - Permanganate, Dichromate and Ceric Sulphate Titration Methods
-:- Permanganate Titration Methods
-:- Dichromate Titration Methods
-:- Ceric Sulphate Titration Methods
-:- Iodimetric and Iodometric Titrations
-:- Theory - Iodimetric and Iodometric Titrations
-:- Assay Methods - Iodimetric and Iodometric Titrations
-:- Iodimetric Assays
-:- Iodometric Assays
-:- Argentometric Precipitation Methods
-:- Argentometric Precipitation Methods: Theory
-:- Argentometric Precipitation Methods: Assay Methods
-:- Complexometric Analysis
-:- Complexometric Analysis: Theory
-:- Complexometric Analysis: Assay Methods
-:- Gravimetric Analysis
-:- Gravimetric Analysis: Theory
-:- Gravimetric Analysis: Assay Methods
-:- Substances Assayed Gravimetrically
-:- Substances Assayed After Conversion - Gravimetric Analysis
-:- Thermoanalytical Analysis
-:- Thermogravimetric Analysis (TGA)
-:- Differential Thermal Analysis (DTA)
-:- Thermometric Titrations (TT)
-:- Diazotization (Sodium Nitrite Titration)
-:- Diazotization (Sodium Nitrite Titration): Assay Methods
-:- Estimation of Phenols and Related Compounds
-:- Estimation of Phenols and Related Compounds: Assay Methods
-:- Karl Fischer Method for Determination of Water
-:- Instrumentation - Karl Fischer Method for Determination of Water
-:- Applications of Karl Fischer Method for Determination of Water in Pharmaceutical Analysis
-:- Tetrazolium Assay of Steroids
-:- Tetrazolium Assay of Steroids: Theory
-:- Assay of Pharmaceutical Substances - Tetrazolium Assay of Steroids
-:- Potentiometric Methods
-:- Potentiometric Methods: Theory
-:- Potentiometric Methods Instrumentation: Electrodes, Automatic Titrator
-:- Applications of Potentiometric Titrations in Pharmaceutical Analysis
-:- Amperometric Methods
-:- Amperometric Methods: Theory
-:- Amperometric Methods: Instrumentation
-:- Applications of Amperometric Titrations in Pharmaceutical Substances
-:- Refractometry
-:- Refractometry: Theory
-:- Refractometry: Instrumentation
-:- Determination of Refractive Index of Pharmaceutical Substances
-:- Applications of Refractivity
-:- Polarimetry
-:- Polarimetry: Theory
-:- Polarimetry: Instrumentation
-:- Determination of Optical Activity of Pharmaceutical Substances
-:- Nephelometry and Turbidimetry
-:- Nephelometry and Turbidimetry: Theory
-:- Instruments for Nephelometry and Turbidimetry
-:- Turbidimetric Assay of Pharmaceutical Substances
-:- Nephelometric Assay of Pharmaceutical Substances
-:- Ultraviolet and Absorption Methods
-:- Ultraviolet and Absorption Methods: Theory
-:- Ultraviolet and Absorption Methods: Instrumentation
-:- Ultraviolet and Absorption Methods: Assay Methods
-:- Infrared Spectrophotometry
-:- Infrared Spectrophotometry: Theory
-:- Infrared Spectrophotometry: Instrumentation
-:- Applications of IR-Spectroscopy in Pharmaceutical Assays
-:- Applications of IR-Spectroscopy in Analytical Chemistry
-:- Nuclear Magnetic Resonance Spectroscopy
-:- Nuclear Magnetic Resonance Spectroscopy: Theory
-:- Interpretation of a NMR-Spectrum
-:- Nuclear Magnetic Resonance Spectroscopy: Instrumentation
-:- Applications of NMR-Spectroscopy in Pharmaceutical Analysis
-:- Emission Spectroscopy
-:- Emission Spectroscopy: Theory
-:- Emission Spectroscopy: Instrumentation
-:- Applications of Emission Spectroscopy
-:- Flame Spectroscopy
-:- Flame Spectroscopy: Theory
-:- Flame Spectroscopy: Instrumentation
-:- Applications of Flame Emission Spectroscopy in Pharmaceutical Analysis
-:- Atomic Absorption Spectroscopy
-:- Atomic Absorption Spectroscopy: Theory
-:- Atomic Absorption Spectroscopy: Instrumentation
-:- Important Aspects of Atomic Absorption Spectroscopy
-:- Application of Atomic Absorption Spectroscopy in Pharmaceutical Analysis
-:- Liquid-Liquid Extraction
-:- Liquid-Liquid Extraction: Theory
-:- Factors Influencing Solvent Extraction
-:- Emulsion Problem Encountered in Extractions
-:- Assay Methods Based on Liquid-Liquid Extraction
-:- Thin Layer Chromatography (TLC)
-:- Thin Layer Chromatography (TLC): Theory
-:- Preparation of Thin Layers on Plates - Thin Layer Chromatography (TLC)
-:- Choice of Adsorbents - Thin Layer Chromatography (TLC)
-:- Choice Of Solvent System in Thin Layer Chromatography (TLC)
-:- Activation of Adsorbent - Thin Layer Chromatography (TLC)
-:- Purification of Silica Gel-G Layers - Thin Layer Chromatography (TLC)
-:- Spotting of the Components - Thin Layer Chromatography (TLC)
-:- Development of Thin Layers - Thin Layer Chromatography (TLC)
-:- Special Techniques in Thin Layer Chromatography (TLC)
-:- Chemical Reactions on Thin Layer Chromatography (TLC) Plates
-:- Combination of Thin Layer Chromatography (TLC) With other Techniques
-:- Detection of Components - Thin Layer Chromatography (TLC)
-:- Evaluation of the Chromatogram - Thin Layer Chromatography (TLC)
-:- Applications of TLC in Pharmaceutical Analysis
-:- Gas Liquid Chromatography (GLC)
-:- Gas Liquid Chromatography (GLC): Theory
-:- Gas Liquid Chromatography (GLC): Instrumentation
-:- Working Techniques for Quantitative Analysis - Gas Liquid Chromatography (GLC)
-:- Applications of GLC in Pharmaceutical Analysis
-:- High Performance Liquid Chromatography (HPLC)
-:- High Performance Liquid Chromatography (HPLC): Theory
-:- Instrumentation - High Performance Liquid Chromatography (HPLC)
-:- Derivatization - High Performance Liquid Chromatography (HPLC)
-:- Applications of High Performance Liquid Chromatography (HPLC) in Pharmaceutical Analysis
-:- Size Exclusion Chromatography
-:- Size Exclusion Chromatography: Theory
-:- Size Exclusion Chromatography: Apparatus
-:- Applications of Size Exclusion Chromatography in Pharmaceutical Analysis
-:- Radioimmunoassay
-:- Radioimmunoassay: Theory
-:- Radioimmunoassay: Instrumentation
-:- Radioimmunoassay: Methodology of the Assay
-:- Applications of Radioimmunoassay (RIA) in Pharmaceutical Analysis
-:- Novel Applications of Radioimmunoassay(RIA)-Techniques