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  • Faculty of Pharmacy
  • Course Structure Diagram with Credits
  • Organic Chemistry I
  • Learning Outcomes
  • Description
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  • Be able to define alkanes.
  • Define alkanes and explain their physical properties.
  • Names the alkanes
  • Describe the reactions involved in the production of alkanes.
  • Describe the reactions involving alkanes.
  • Be able to define alkenes.
  • Define alkenes and explain their physical properties.
  • Name the alkenes.
  • Describe the reactions involved in the preparation of alkenes.
  • Describe the reactions involving alkenes.
  • Define the concepts of nucleophile and electrophile and compare them with each other.
  • Describe the reactions of conjugated dienes.
  • Distinguish elimination reactions by their mechanisms.
  • Define inductive effect.
  • Define Geometric Isomerism.
  • Define geometric isomerism.
  • Name the geometric isomer compounds.
  • Distinguish geometric isomers.
  • Define alkynes.
  • Define alkynes and explain their physical properties.
  • Name the alkynes.
  • Describe the reactions related to the preparation of alkynes.
  • Describe the reactions involving alkynes.
  • Define Alkyl Halides.
  • Define alkyl halides and explain their physical properties.
  • Name the alkyl halides.
  • Describe the reactions involved in the preparation of alkyl halides.
  • Describe the reactions involving alkyl halides.
  • Distinguish nucleophilic substitution reactions by their mechanisms.
  • Detects competitive reactions in alkyl halides.
  • Be able to define alcohols.
  • Define alcohols and explain their physical properties.
  • Describe the reactions involved in the production of alcohols.
  • Describe the reactions involving alcohols.
  • Be able to define ethers.
  • Define ethers and explain their physical properties.
  • Names the ethers.
  • Describe the reactions related to the production of ethers.
  • Describe the reactions involving ethers.
  • Define thioethers.
  • Define thioethers and explain their physical properties.
  • Name the thioethers.
  • Describe the reactions involved in the preparation of thioethers.
  • Describe the reactions involving thioethers.
  • Be able to define mercaptans.
  • Define mercaptans and explain their physical properties.
  • Name the mercaptans.
  • Describe the reactions involved in the production of mercaptans.
  • Describe the reactions associated with mercaptans.
  • Be able to define aromaticity.
  • Explain the rules of aromaticity.
  • Defines conjugation.
  • Explain the principle of mesomerism.
  • Distinguish between aromatic and non-aromatic compounds.
  • Give examples and names of aromatic compounds.
  • It shows the aromaticity of fused ring conjugated polyene systems.
  • Be able to define arenes.
  • Define benzene and its derivatives.
  • Name benzene and its derivatives.
  • Explain aromatic substitution reactions.
  • Explain hyperconjugation.
  • Describe nitration reactions.
  • Describe the sulfonation reactions.
  • Describe aromatic halogenation reactions.
  • Describe the Friedel-Crafts reactions.
  • It shows substitution in disubstituted benzene derivatives.
  • Demonstrates aromatic nucleophilic substitution reactions.
  • Define Phenols and Polyphenols.
  • Define phenols and explain their physical properties.
  • Name the phenols.
  • Describe the reactions related to the production of phenols.
  • Describe the reactions involving phenols.
  • Explains the properties of polyphenols.
  • Name the polyphenols.
  • Be able to define aldehydes.
  • Define aldehydes and explain their physical properties.
  • Name the aldehydes.
  • Describe the reactions related to the production of aldehydes.
  • Describe the reactions involving aldehydes.
  • Be able to define ketones.
  • Define ketones and explain their physical properties.
  • Names ketones.
  • Describe the reactions related to the production of ketones.
  • Describe the reactions involving ketones.
  • Define Carboxylic Acids.
  • Define carboxylic acids and explain their physical properties.
  • Name the carboxylic acids.
  • Describe the reactions involved in the production of carboxylic acids.
  • Describe the reactions involving carboxylic acids.
  • Name the polycarboxylic acids.
  • Be able to define esters.
  • Define esters and explain their physical properties.
  • Names the esters.
  • Describe the reactions related to the production of esters.
  • Describe the reactions involving esters.
  • Define Acid Halides.
  • Define acid halides and explain their physical properties.
  • Name the acid halides.
  • Describe the reactions involved in the production of acid halides.
  • Describe the reactions involving acid halides.
  • Define Acid Anhydrides.
  • Define acid anhydrides and explain their physical properties.
  • Name the acid anhydrides.
  • Describe the reactions involved in the preparation of acid anhydrides.
  • Describe the reactions involving acid anhydrides.
  • Define nitriles and isonitriles.
  • Define nitriles and isonitriles and explain their physical properties.
  • Name nitriles and isonitriles.
  • Describe the reactions involved in the production of nitriles and isonitriles.
  • Describe the reactions involving nitriles and isonitriles.
  • Distinguish between nitrile and isonitrile.
  • Be able to define amines.
  • Define amines and explain their physical properties.
  • Names amines.
  • Describe the reactions related to the production of amines.
  • Describe the reactions involving amines.
  • Recognize urea and thiourea.
  • Define Amides.
  • Define amides and explain their physical properties.
  • Name the amides.
  • Describe the reactions involved in the preparation of amides.
  • Describe the reactions involving amides.
  • Be able to define imides.
  • Define imides and explain their physical properties.
  • Names the imids.
  • Describe the reactions related to the production of imides.
  • Describe the reactions involving imides.
  • Define Carbohydrates and Polymers.
  • Define polymers and explain their physical properties.
  • Names the polymers.
  • Describe the reactions involved in the production of polymers.
  • Distinguish between polyethylene, polyester, polyamide and polyurethane.

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