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Introduction, Record Keeping, and Laboratory Safety |
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1 | (26) |
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1 | (1) |
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Preparing for the Laboratory |
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2 | (1) |
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Working in the Laboratory |
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3 | (1) |
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4 | (1) |
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General Protocol for the Laboratory Notebook |
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4 | (1) |
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Types of Organic Experiments and Notebook Formats |
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5 | (9) |
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Sample Calculations for Notebook Records |
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14 | (2) |
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Safe Laboratory Practice: Overview |
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16 | (1) |
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Safety: General Discussion |
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17 | (2) |
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Safety: Material Safety Data Sheets |
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19 | (2) |
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Safety: Disposal of Chemicals |
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21 | (6) |
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Historical Highlights: The Importance of Record Keeping |
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24 | (3) |
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27 | (66) |
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Glassware: Precautions and Cleaning |
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27 | (1) |
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Standard-Taper Glassware for Miniscale Procedures |
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28 | (1) |
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Standard-Taper Glassware for Microscale Procedures |
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29 | (2) |
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31 | (1) |
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Measuring and Transferring Liquids |
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32 | (5) |
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37 | (1) |
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Melting-Point Methods and Apparatus |
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38 | (3) |
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Boiling-Point Methods and Apparatus |
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41 | (2) |
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43 | (8) |
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51 | (1) |
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52 | (2) |
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54 | (1) |
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55 | (3) |
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58 | (2) |
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60 | (4) |
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64 | (2) |
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Filtration Apparatus and Techniques |
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66 | (6) |
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72 | (1) |
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73 | (1) |
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73 | (2) |
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75 | (6) |
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81 | (2) |
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83 | (2) |
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85 | (2) |
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87 | (1) |
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87 | (1) |
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88 | (1) |
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88 | (1) |
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89 | (4) |
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Solids: Recrystallization and Melting Points |
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93 | (30) |
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93 | (1) |
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94 | (19) |
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101 | (1) |
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101 | (2) |
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Recrystallizing Impure Solids |
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103 | (1) |
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103 | (3) |
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106 | (7) |
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Physical Constants: Melting Points |
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113 | (10) |
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117 | (1) |
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Calibration of Thermometer |
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117 | (1) |
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Determining Capillary-Tube Melting Points |
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118 | (1) |
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119 | (1) |
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119 | (4) |
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Liquids: Distillation and Boiling Points |
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123 | (26) |
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123 | (1) |
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Boiling Points of Pure Liquids |
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123 | (4) |
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Boiling Points of Pure Liquids |
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125 | (1) |
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125 | (1) |
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125 | (2) |
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127 | (4) |
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129 | (1) |
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129 | (1) |
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130 | (1) |
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130 | (1) |
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131 | (10) |
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Fractional Distillation of a Binary Mixture |
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137 | (1) |
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137 | (1) |
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138 | (1) |
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Comparative Fractional Distillations |
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138 | (1) |
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Fractionation of Alternative Binary Mixtures |
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138 | (3) |
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141 | (2) |
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Steam Distillation: Isolation of Citral from Lemon Grass Oil |
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143 | (6) |
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Steam Distillation of Citral from Lemon Grass Oil |
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144 | (1) |
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145 | (2) |
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Historical Highlights: Reducing Automobile Emissions |
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147 | (2) |
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149 | (26) |
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149 | (1) |
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150 | (2) |
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Base and Acid Extractions |
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152 | (15) |
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Base and Acid Extractions |
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157 | (1) |
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157 | (3) |
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160 | (3) |
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163 | (1) |
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Separation of Unknown Mixture by Extraction |
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163 | (1) |
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163 | (4) |
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Extraction of a Natural Product: Trimyristin |
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167 | (8) |
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Isolation of Trimyristin from Nutmeg |
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168 | (1) |
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168 | (1) |
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169 | (2) |
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Historical Highlights: Natural Products |
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171 | (4) |
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175 | (34) |
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175 | (1) |
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Thin-Layer Chromatography |
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176 | (8) |
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Separation of Spinach Pigments by TLC |
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180 | (2) |
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182 | (1) |
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Effect of Solvent Polarity on Efficiency of Separation |
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182 | (1) |
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Analysis of Plant Pigments from Various Sources |
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182 | (1) |
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Separation of Syn- and Anti-Azobenzenes by TLC |
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182 | (1) |
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183 | (1) |
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Analysis of Analgesics by TLC |
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183 | (1) |
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184 | (8) |
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188 | (2) |
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190 | (1) |
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Column Chromatographic Separation of Benzyl Alcohol and Methyl Benzoate |
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190 | (2) |
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Gas-Liquid Chromatography |
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192 | (17) |
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Qualitative and Quantitative Analyses of a Mixture of Compounds by GLC |
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202 | (1) |
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203 | (1) |
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Analysis of Factors Affecting Retention Times |
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203 | (1) |
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Effect of Stationary Phase on Separation of a Mixture |
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203 | (1) |
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Determining GLC Response Factors |
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203 | (1) |
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204 | (1) |
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Molar Response Factors of Isomers |
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204 | (1) |
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Molar Response Factors of Nonisomeric Compounds |
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204 | (2) |
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Historical Highlights: Who's Taking What? Analysis of Biological Fluids for Illegal Substances |
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206 | (3) |
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209 | (24) |
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209 | (3) |
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Separation of Diastereomeric 1,2-Cyclohexanediols |
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212 | (3) |
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Separation of Diastereomeric 1,2-Cyclohexanediols |
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213 | (2) |
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Isomerization of Dimethyl Maleate to Dimethyl Fumarate |
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215 | (4) |
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Isomerization of Dimethyl Maleate to Dimethyl Fumarate |
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216 | (1) |
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217 | (1) |
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217 | (1) |
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218 | (1) |
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Assessing Purities of Dimethyl Maleate and Fumarate |
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218 | (1) |
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Properties of the Enantiomers of Carvone |
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219 | (4) |
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Properties of the Enantiomeric Carvones |
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221 | (2) |
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223 | (2) |
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Resolution of Racemic 1-Phenylethanamine |
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225 | (8) |
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Resolution of Racemic 1-Phenylethanamine |
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226 | (1) |
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227 | (2) |
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Historical Highlights: Discovery of Stereoisomers |
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229 | (4) |
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233 | (76) |
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233 | (3) |
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Infrared (IR) Spectroscopy |
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236 | (21) |
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Nuclear Magnetic Resonance (NMR) Spectroscopy |
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257 | (36) |
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Ultraviolet and Visible Spectroscopy |
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293 | (7) |
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300 | (9) |
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Historical Highlights: Medical Diagnostics via Nuclear Magnetic Resonance Spectroscopy |
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307 | (2) |
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309 | (24) |
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309 | (1) |
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Chlorination Using Sulfuryl Chloride |
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310 | (10) |
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Free-Radical Chain Chlorination of 1-Chlorobutane |
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313 | (1) |
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313 | (1) |
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314 | (1) |
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315 | (1) |
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315 | (5) |
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Bromination: Selectivity of Hydrogen Atom Abstraction |
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320 | (13) |
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Relative Rates of Free-Radical Chain Bromination |
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322 | (7) |
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Historical Highlights: Keeping It Cool |
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329 | (4) |
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333 | (62) |
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333 | (1) |
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Dehydrohalogenation of Alkyl Halides |
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334 | (10) |
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Base-Promoted Elimination of an Alkyl Halide |
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336 | (1) |
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Elimination with Alcoholic Potassium Hydroxide |
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337 | (1) |
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337 | (1) |
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337 | (2) |
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Elimination with Potassium tert-Butoxide |
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339 | (1) |
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339 | (1) |
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340 | (1) |
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Elimination of Alternate Non-terminal Alkyl Halides |
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340 | (4) |
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344 | (16) |
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348 | (1) |
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Dehydration of 4-Methyl-2-Pentanol |
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348 | (1) |
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348 | (1) |
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Dehydration of Cyclohexanol |
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349 | (1) |
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349 | (1) |
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350 | (1) |
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351 | (1) |
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Elimination of Stereoisomeric Alcohols |
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351 | (9) |
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Addition Reactions of Alkenes: Overview |
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360 | (3) |
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Addition of Hydrobromic Acid to Alkenes |
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363 | (9) |
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Addition of Hydrogen Bromide to 1-Hexene |
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364 | (1) |
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365 | (1) |
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366 | (6) |
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372 | (5) |
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Bromination of (E)-Stilbene |
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372 | (1) |
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373 | (1) |
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373 | (4) |
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Acid-Catalyzed Hydration of Alkenes |
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377 | (5) |
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378 | (1) |
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378 | (4) |
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Hydroboration-Oxidation of Alkenes |
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382 | (13) |
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Hydroboration-Oxidation of (+)-α-Pinene |
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385 | (1) |
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386 | (1) |
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387 | (4) |
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Historical Highlights: Additions Across Carbon-Carbon π-Bonds |
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391 | (4) |
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395 | (16) |
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395 | (1) |
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Dehydrohalogenation of 1,2-Dihaloalkanes |
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396 | (5) |
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Dehydrobromination of Meso-Stilbene Dibromide |
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397 | (1) |
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398 | (1) |
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398 | (1) |
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Miniscale Procedure for Microwave Option |
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399 | (2) |
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Addition Reactions of Alkynes |
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401 | (7) |
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Preparation of 3-Methyl-3-hydroxy-2-butanone |
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404 | (1) |
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404 | (4) |
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Terminal Alkynes as Acids |
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408 | (3) |
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Formation of a Silver Acetylide and Its Decomposition |
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409 | (2) |
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Dienes: The Diels-Alder Reaction |
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411 | (24) |
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411 | (1) |
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Mechanistic and Stereochemical Aspects |
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412 | (2) |
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Applications of Diels-Alder Reactions |
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414 | (21) |
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416 | (1) |
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Reaction of 1,3-Butadiene and Maleic Anhydride |
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416 | (1) |
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416 | (1) |
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417 | (1) |
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Miniscale Procedure for Microwave Option |
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417 | (1) |
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Reaction of 1,3-Cyclopentadiene and Maleic Anhydride |
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418 | (1) |
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418 | (1) |
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419 | (1) |
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420 | (1) |
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1,4-Cyclohexene-cis-1,2-dicarboxylic Acid |
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420 | (1) |
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420 | (1) |
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421 | (1) |
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Bicyclo[2.2.1]hept-5-ene-endo-2,3-dicarboxylic Acid |
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421 | (1) |
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421 | (1) |
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422 | (1) |
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422 | (1) |
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422 | (10) |
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Historical Highlights: Discovery of the Diels-Alder Reaction |
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432 | (3) |
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Kinetic and Thermodynamic Control of a Reaction |
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435 | (16) |
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435 | (3) |
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Formation of Semicarbazones Under Kinetic and Thermodynamic Control |
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438 | (13) |
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Kinetic and Thermodynamic Control of a Reaction |
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440 | (1) |
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Preparation of Cyclohexanone Semicarbazone |
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441 | (1) |
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Preparation of 2-Furaldehyde Semicarbazone |
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441 | (1) |
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Reactions of Semicarbazide with Cyclohexanone and 2-Furaldehyde in Phosphate Buffer Solution |
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441 | (1) |
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Reactions of Semicarbazide with Cyclohexanone and 2-Furaldehyde in Bicarbonate Buffer Solution |
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442 | (1) |
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Tests of Reversibility of Semicarbazone Formation |
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442 | (9) |
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Nucleophilic Aliphatic Substitution: Preparation of Alkyl Halides |
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451 | (30) |
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451 | (1) |
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Classification of Nucleophilic Substitution Reactions |
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452 | (2) |
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Competition Between Substitution and Elimination |
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454 | (1) |
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Preparation of 1-Bromobutane: An SN2 Reaction |
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455 | (8) |
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Preparation of 1-Bromobutane |
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457 | (1) |
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457 | (1) |
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458 | (1) |
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459 | (1) |
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Analysis of SN Reactions as a Function of Substrate |
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459 | (4) |
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Preparation of 2-Chloro-2-methybutane: An SN1 Reaction |
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463 | (8) |
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Preparation of 2-Chloro-2-methylbutane |
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465 | (1) |
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465 | (1) |
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466 | (1) |
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467 | (1) |
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Analysis of SN Reactions as a Function of Substrate |
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467 | (4) |
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Chemical Kinetics: Evidence for Nucleophilic Substitution Mechanisms |
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471 | (10) |
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Kinetics of Solvolysis of 2-Chloro-2-methylbutane |
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474 | (1) |
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475 | (2) |
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477 | (1) |
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Effect of Temperature on Rates of Solvolysis |
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477 | (1) |
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Effect of Leaving Group on Rates of Solvolysis |
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477 | (4) |
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Electrophilic Aromatic Substitution |
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481 | (44) |
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481 | (1) |
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Friedel-Crafts Alkylation of p-Xylene with 1-Bromopropane |
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482 | (11) |
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Friedel-Crafts Alkylation of p-Xylene |
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485 | (1) |
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485 | (2) |
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487 | (6) |
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Friedel-Crafts Acylation of m-Xylene |
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493 | (9) |
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Friedel-Crafts Acylation of m-Xylene with Phthalic Anhydride |
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495 | (1) |
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495 | (2) |
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497 | (5) |
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Nitration of Bromobenzene |
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502 | (9) |
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Nitration of Bromobenzene |
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504 | (1) |
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504 | (1) |
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504 | (1) |
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505 | (1) |
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Thin-Layer Chromatography |
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506 | (1) |
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507 | (1) |
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507 | (4) |
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Relative Rates of Electrophilic Aromatic Substitution |
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511 | (14) |
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Relative Rates of Electrophilic Aromatic Bromination |
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514 | (1) |
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514 | (1) |
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514 | (1) |
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Quantitative Measurements |
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515 | (1) |
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515 | (7) |
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Historical Highlights: Discovery of the Friedel-Crafts Reaction |
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522 | (3) |
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Oxidation of Alcohols and Carbonyl Compounds |
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525 | (26) |
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525 | (2) |
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Preparation of Aldehydes and Ketones by Oxidation of Alcohols |
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527 | (14) |
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531 | (1) |
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Oxidation of Cyclododecanol to Cyclododecanone |
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531 | (1) |
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531 | (4) |
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Oxidation of 4-Chlorobenzyl Alcohol to 4-Chlorobenzoic Acid |
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535 | (1) |
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536 | (1) |
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536 | (5) |
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Base-Catalyzed Oxidation-Reduction of Aldehydes: The Cannizzaro Reaction |
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541 | (10) |
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Base-Catalyzed Oxidation-Reduction of Aldehydes by the Cannizzaro Reaction |
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543 | (1) |
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543 | (1) |
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544 | (4) |
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Historical Highlights: Green Chemistry |
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548 | (3) |
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Reduction Reactions of Double Bonds: Alkenes, Carbonyl Compounds, and Imines |
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551 | (34) |
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551 | (2) |
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Catalytic Hydrogenation of the Carbon-Carbon Double Bond |
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553 | (6) |
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Hydrogenation of 4-Cyclohexene-cis-1,2-dicarboxylic Acid |
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555 | (1) |
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555 | (4) |
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Reduction of Imines; Preparation of Amines |
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559 | (10) |
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Formation and Reduction of N-Cinnamylidene-m-nitroaniline |
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561 | (1) |
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562 | (1) |
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563 | (6) |
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Reduction of Carbonyl Compounds; Preparation of Alcohols |
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569 | (6) |
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Reduction of 9-Fluorenone |
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570 | (1) |
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570 | (1) |
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571 | (1) |
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571 | (1) |
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Reduction of 4-tert-Butylcyclohexanone |
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571 | (1) |
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572 | (3) |
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Enzymatic Reduction: A Chiral Alcohol from a Ketone |
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575 | (6) |
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Enzymatic Reduction of Methyl Acetoacetate |
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576 | (1) |
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576 | (5) |
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Determining Optical Purity |
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581 | (4) |
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Determining Optical Purity of Methyl (S)-(+)-3-Hydroxybutanoate |
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582 | (3) |
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Reactions of Carbonyl Compounds |
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585 | (38) |
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585 | (2) |
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The Wittig and Related Reactions |
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587 | (14) |
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Wittig and Wadsworth-Emmons Reactions |
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590 | (1) |
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Synthesis of (Z)- and (E)-Stilbenes by a Wittig Reaction |
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590 | (1) |
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590 | (1) |
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591 | (2) |
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593 | (1) |
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Wittig Reaction of 9-Anthraldehyde |
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593 | (1) |
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Synthesis of a Stilbene by the Wadsworth-Emmons Reaction |
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594 | (1) |
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594 | (1) |
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595 | (6) |
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Reactions of Stabilized Carbanions from Carbonyl Compounds |
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601 | (8) |
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Synthesis of trans-p-Anisalacetophenone |
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603 | (1) |
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603 | (1) |
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604 | (1) |
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605 | (1) |
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Synthesis of trans, trans-Dibenzylideneacetone |
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605 | (4) |
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Conjugate Addition to an α,β-Unsaturated Ketone |
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609 | (14) |
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Preparation of 4,4-Dimethyl-2-cyclohexen-1-one |
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612 | (1) |
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612 | (1) |
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613 | (7) |
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Historical Highlights: The Wittig Reaction |
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620 | (3) |
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623 | (28) |
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623 | (1) |
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Grignard Reagents: Preparation |
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624 | (9) |
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Preparation of Grignard Reagents |
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627 | (1) |
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628 | (1) |
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629 | (4) |
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Grignard Reagents: Reactions |
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633 | (2) |
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Special Experimental Techniques |
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635 | (16) |
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Reactions of Grignard Reagents |
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636 | (1) |
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Preparation of Triphenylmethanol |
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636 | (1) |
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636 | (1) |
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637 | (2) |
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Preparation of Benzoic Acid |
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639 | (1) |
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639 | (1) |
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640 | (2) |
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Preparation of 2-Methyl-3-heptanol |
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642 | (1) |
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642 | (8) |
|
Historical Highlights: Grignard and the Beginnings of Modern Organometallic Chemistry |
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650 | (1) |
|
Carboxylic Acids and Their Derivatives |
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651 | (34) |
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651 | (3) |
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Esters and the Fischer Esterification |
|
|
654 | (7) |
|
Preparation of Benzocaine |
|
|
655 | (1) |
|
|
655 | (1) |
|
Miniscale Procedure for Microwave Option |
|
|
656 | (1) |
|
|
657 | (4) |
|
Amides and Insect Repellents |
|
|
661 | (10) |
|
Preparation of N,N-Diethyl-m-toluamide |
|
|
664 | (1) |
|
|
664 | (2) |
|
|
666 | (5) |
|
Amides and Chemiluminescence |
|
|
671 | (14) |
|
Preparation and Chemiluminescence of Luminol |
|
|
676 | (1) |
|
|
676 | (1) |
|
|
676 | (1) |
|
|
677 | (1) |
|
|
677 | (1) |
|
|
677 | (1) |
|
|
678 | (4) |
|
Historical Highlights: Evolution of Man-Made Analgesics |
|
|
682 | (3) |
|
Multistep Organic Synthesis |
|
|
685 | (64) |
|
|
685 | (1) |
|
Sulfanilamide: Discovery and Synthesis of the First Antibiotic |
|
|
686 | (22) |
|
Synthesis of Sulfanilamide |
|
|
693 | (1) |
|
|
693 | (1) |
|
|
694 | (1) |
|
Preparation of Acetanilide |
|
|
695 | (1) |
|
|
695 | (1) |
|
Preparation of 4-Acetamidobenzenesulfonyl Chloride |
|
|
696 | (1) |
|
|
697 | (1) |
|
Preparation of 4-Acetamidobenzenesulfonamide |
|
|
698 | (1) |
|
|
698 | (1) |
|
Preparation of Sulfanilamide |
|
|
699 | (1) |
|
|
699 | (9) |
|
Synthesis of 1-Bromo-3-Chloro-5-iodobenzene |
|
|
708 | (21) |
|
Synthesis of 1-Bromo-3-Chloro-5-iodobenzene |
|
|
713 | (1) |
|
Preparation of Aniline and Acetanilide |
|
|
713 | (1) |
|
Preparation of 4-Bromoacetanilide |
|
|
713 | (1) |
|
|
714 | (1) |
|
|
714 | (1) |
|
Preparation of 4-Bromo-2-chloroacetanilide |
|
|
715 | (1) |
|
|
715 | (1) |
|
|
715 | (1) |
|
Preparation of 4-Bromo-2-chloroaniline |
|
|
716 | (1) |
|
|
716 | (1) |
|
|
717 | (1) |
|
Preparation of 4-Bromo-2-chloro-6-iodoaniline |
|
|
718 | (1) |
|
|
718 | (1) |
|
|
718 | (1) |
|
Preparation of 4-Bromo-2-chloro-6-iodobenzene |
|
|
719 | (1) |
|
|
719 | (1) |
|
|
720 | (9) |
|
Lidocaine: Synthesis of an Anesthetic Agent |
|
|
729 | (20) |
|
|
733 | (1) |
|
Preparation of 2,6-Dimethylaniline |
|
|
733 | (1) |
|
|
733 | (1) |
|
|
734 | (1) |
|
Preparation of α-Chloro-2,6-dimethylacetanilide |
|
|
735 | (1) |
|
|
735 | (1) |
|
|
736 | (1) |
|
|
736 | (1) |
|
|
737 | (1) |
|
|
738 | (7) |
|
Historical Highlights: Discovery of Sulfa Drugs |
|
|
745 | (4) |
|
|
749 | (22) |
|
|
749 | (2) |
|
Chain-Reaction Polymerization |
|
|
751 | (9) |
|
Preparation of Polystyrene |
|
|
754 | (1) |
|
|
754 | (1) |
|
Removal of the Inhibitor from Commercial Styrene |
|
|
754 | (1) |
|
Polymerization of Pure Styrene |
|
|
755 | (1) |
|
Solution Polymerization of Styrene |
|
|
755 | (1) |
|
|
756 | (1) |
|
Stability of Polystyrene Toward Organic Solvents |
|
|
756 | (1) |
|
|
756 | (1) |
|
Cross-Linking of Polymers |
|
|
756 | (4) |
|
Step-Growth Polymerization |
|
|
760 | (11) |
|
Preparation of Nylon-6,10 |
|
|
764 | (1) |
|
|
764 | (1) |
|
|
765 | (4) |
|
Historical Highlights: Discovery of Polyethylene and Nylon |
|
|
769 | (2) |
|
|
771 | (16) |
|
|
771 | (1) |
|
Monosaccharides: General Principles |
|
|
772 | (1) |
|
Disaccharides: Hydrolysis of Sucrose |
|
|
773 | (5) |
|
|
775 | (1) |
|
|
775 | (3) |
|
Carbohydrates: Their Characterization and Identification |
|
|
778 | (9) |
|
Classification Tests for Carbohydrates |
|
|
779 | (1) |
|
|
779 | (3) |
|
|
782 | (1) |
|
|
782 | (1) |
|
Historical Highlights: Emil Fischer: Carbohydrate Chemist Extraordinaire |
|
|
783 | (4) |
|
α-Amino Acids and Peptides |
|
|
787 | (30) |
|
|
787 | (3) |
|
Synthesis of Peptides and Polypeptides |
|
|
790 | (1) |
|
Synthesis of the Protected Dipeptide Ala---Phe---OMe |
|
|
791 | (26) |
|
Preparation of N-tert-Butoxycarbonyl L-Alanine |
|
|
795 | (1) |
|
|
795 | (1) |
|
|
796 | (1) |
|
Preparation of Methyl L-Phenylalaninate Hydrochloride |
|
|
797 | (1) |
|
|
798 | (1) |
|
|
798 | (1) |
|
Preparation of Methyl N-tert-Butoxycarbonyl L-Alanyl-L-phenylalaninate |
|
|
799 | (1) |
|
|
799 | (1) |
|
|
800 | (1) |
|
Preparation of Methyl L-Alanylphenyl-L-alaninate Trifluoroacetate |
|
|
801 | (1) |
|
|
802 | (1) |
|
|
802 | (1) |
|
|
803 | (1) |
|
Synthesis of L-Alanyl-L-phenylalanine |
|
|
803 | (9) |
|
Historical Highlights: Invention of a Method for Solid-Phase Peptide Synthesis |
|
|
812 | (5) |
|
Identifying Organic Compounds |
|
|
817 | (72) |
|
|
817 | (1) |
|
Overview of Organic Analysis |
|
|
818 | (1) |
|
Classic Qualitative Analysis Procedure to Identify a Pure Compound |
|
|
819 | (12) |
|
|
821 | (1) |
|
|
822 | (1) |
|
|
822 | (1) |
|
|
822 | (1) |
|
Qualitative Analysis for Halogens, Sulfur, and Nitrogen |
|
|
823 | (8) |
|
Separating Mixtures of Organic Compounds |
|
|
831 | (3) |
|
Separating Mixtures on the Basis of Solubility |
|
|
832 | (2) |
|
Applying Spectroscopic Methods to Qualitative Organic Analysis |
|
|
834 | (6) |
|
Qualitative Classification Tests and Preparation of Derivatives |
|
|
840 | (1) |
|
|
840 | (11) |
|
2,4-Dinitrophenylhydrazine Test for Aldehydes and Ketones |
|
|
841 | (2) |
|
Schiff's Test for Aldehydes |
|
|
843 | (1) |
|
Tollens' Test for Aldehydes |
|
|
844 | (1) |
|
Chromic Acid Test for Aldehydes and 1° and 2° Alcohols |
|
|
845 | (3) |
|
|
848 | (1) |
|
Preparation of Semicarbazones |
|
|
849 | (1) |
|
|
850 | (1) |
|
|
851 | (2) |
|
Bromine Test for Unsaturation |
|
|
851 | (2) |
|
Baeyer Test for Unsaturation |
|
|
853 | (1) |
|
|
853 | (3) |
|
Silver Nitrate Test for Alkyl Halides |
|
|
854 | (1) |
|
Sodium Iodide Test for Alkyl Chlorides and Bromides |
|
|
855 | (1) |
|
Aromatic Hydrocarbons and Aryl Halides |
|
|
856 | (5) |
|
Friedel-Crafts Reaction for Detecting Arenes |
|
|
857 | (1) |
|
Preparation of Nitroarenes |
|
|
858 | (1) |
|
Side-Chain Oxidation of Arenes |
|
|
859 | (2) |
|
|
861 | (5) |
|
|
862 | (1) |
|
|
863 | (1) |
|
Preparation of 3,5-Dinitrobenzoates |
|
|
864 | (2) |
|
|
866 | (4) |
|
Bromine Water Test for Phenols |
|
|
867 | (1) |
|
Ceric Nitrate Test for Alcohols and Phenols |
|
|
868 | (1) |
|
Ferric Chloride Test for Phenols and Enols |
|
|
868 | (1) |
|
Preparation of Bromophenols |
|
|
869 | (1) |
|
|
870 | (3) |
|
Determination of Equivalent Mass of an Acid |
|
|
870 | (1) |
|
|
871 | (2) |
|
|
873 | (6) |
|
|
875 | (2) |
|
Ramini and Simon Tests for Amines |
|
|
877 | (1) |
|
Preparation of Benzamides, Benzenesulfonamides, and Methiodides |
|
|
878 | (1) |
|
|
879 | (2) |
|
Hydroxide Test for Nitro Compounds |
|
|
880 | (1) |
|
Reduction of Nitro Compounds |
|
|
880 | (1) |
|
|
881 | (4) |
|
Hydroxylamine Test for Esters |
|
|
882 | (1) |
|
Determination of Saponification Equivalent |
|
|
883 | (1) |
|
Base-Promoted Hydrolysis of Esters |
|
|
884 | (1) |
|
|
885 | (2) |
|
Hydroxylamine Test for Nitriles |
|
|
885 | (1) |
|
|
886 | (1) |
|
|
887 | (2) |
|
Base-Promoted Hydrolysis of Amides |
|
|
888 | (1) |
|
The Literature of Organic Chemistry |
|
|
889 | (20) |
|
|
889 | (1) |
|
Classification of the Literature |
|
|
889 | (13) |
|
Using the Literature of Organic Chemistry |
|
|
902 | (7) |
Index |
|
909 | |