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CHM132 Organic Chemistry UITM Assignment Sample Malaysia

CHM132 Organic Chemistry is a comprehensive course offered at UITM (Universiti Teknologi MARA) in Malaysia. The course is designed to provide students with a strong foundation in organic chemistry, focusing on the structure, nomenclature, and properties of organic compounds.

The study begins with an introduction to the fundamental concepts of organic chemistry, covering the structure and naming of organic molecules. Students will learn about the different functional groups and their characteristic properties.

The course further delves into the preparation and reactions of essential functional groups like hydroxyl, carbonyl, carboxylic acids, and their derivatives. Through detailed explanations, students will gain a solid understanding of the reactions involving these groups and their practical applications.

Additionally, the course explores the chemistry of amines, including their preparation and reactions. Amines are vital organic compounds with numerous applications, and understanding their properties is essential for further studies in the field.

To reinforce theoretical concepts, students will have the opportunity to participate in laboratory exercises. These practical sessions will enhance their understanding of organic reactions and give them valuable hands-on experience.

Overall, CHM132 Organic Chemistry equips students with the necessary knowledge and skills to comprehend the complexities of organic compounds, their reactivity, and their importance in various industries and research fields.

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Assignment Activity 1 : Apply knowledge in organic chemistry for the synthesis of organic compounds.

In this assignment, you will be applying your knowledge of organic chemistry to synthesize organic compounds. You will be given specific reactions and starting materials to produce the desired target molecules. Make sure to understand the mechanisms of each reaction and the properties of the compounds involved. Pay attention to reaction conditions, reagents, and purification methods to achieve high yields and purity.

When conducting the synthesis, it is crucial to use proper safety measures and handle chemicals responsibly. Keep in mind the principles of green chemistry, aiming for environmentally friendly methods whenever possible.

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Assignment Activity 2 : Demonstrate respect, social communication and self-awareness while performing the group assignment.

For this assignment, you will be working in a group setting to perform a task related to organic chemistry. Demonstrating respect, effective social communication, and self-awareness are essential elements of successful teamwork.

Listen actively to your group members, value their opinions, and treat them with respect. Engage in constructive discussions, encourage diverse perspectives, and resolve conflicts with empathy and understanding. Communication is key; ensure that all members are well-informed about the group’s progress, deadlines, and responsibilities.

Self-awareness is equally important. Recognize your strengths and weaknesses, and be open to feedback from others. Adapt your behavior to contribute positively to the group dynamic and ensure a productive and harmonious working environment

Assignment Activity 3 : Conduct scientific experiments related to alcohols, aldehydes, ketones, carboxylic acids and their derivatives and amines.


The objective of this assignment is to conduct a series of scientific experiments related to various classes of organic compounds, including alcohols, aldehydes, ketones, carboxylic acids and their derivatives, and amines. Through these experiments, you will gain hands-on experience with organic synthesis, purification, and characterization techniques, and deepen your understanding of the properties and reactions of these compounds.

Experimental Procedures:

Alcohol Synthesis: Experiment 1: Preparation of an Alcohol through Grignard Reaction

  • React an alkyl or aryl halide with magnesium to form a Grignard reagent.
  • Treat the Grignard reagent with an appropriate carbonyl compound (aldehyde or ketone) to produce the desired alcohol.
  • Purify the product using suitable techniques such as distillation or recrystallization.
  • Analyze the alcohol product using spectroscopic methods (e.g., NMR, IR) to confirm its structure.

Aldehyde and Ketone Synthesis: Experiment 2: Oxidation of an Alcohol to an Aldehyde

  • Choose a suitable alcohol as the starting material.
  • Perform an oxidation reaction using a mild oxidizing agent to convert the alcohol into an aldehyde.
  • Verify the formation of the aldehyde using chemical tests (e.g., Tollens’ test or Fehling’s test) and spectroscopic analysis.

Experiment 3: Friedel-Crafts Acylation Reaction to Produce a Ketone

  • Prepare a suitable aromatic compound (e.g., benzene) as the starting material.
  • Perform a Friedel-Crafts acylation reaction with an acid chloride or acid anhydride to synthesize the desired ketone.
  • Purify the product and confirm its structure using spectroscopic methods.

Carboxylic Acid Derivatives: Experiment 4: Esterification of Carboxylic Acid

  • Choose a carboxylic acid and an alcohol as starting materials.
  • Carry out an esterification reaction using a strong acid catalyst to form the ester product.
  • Characterize the ester using techniques like IR spectroscopy and gas chromatography.

Experiment 5: Hydrolysis of an Ester to Form a Carboxylic Acid

  • Take a suitable ester and perform a hydrolysis reaction using an acid or base catalyst to yield the corresponding carboxylic acid.
  • Analyze the product to ensure successful conversion and purity.

Amine Synthesis: Experiment 6: Preparation of an Amine through Reductive Amination

  • Choose an appropriate ketone or aldehyde and an amine as starting materials.
  • Carry out a reductive amination reaction using a reducing agent (e.g., sodium cyanoborohydride) to form the amine product.
  • Verify the formation of the amine using techniques such as thin-layer chromatography (TLC) and NMR spectroscopy.

Safety Considerations:

  • Before conducting any experiments, familiarize yourself with the safety protocols and handling guidelines for each chemical used.
  • Wear appropriate personal protective equipment (PPE), including lab coats, gloves, and safety goggles.
  • Work in a well-ventilated laboratory and avoid inhalation of fumes or vapors.
  • Dispose of chemical waste properly, following the guidelines provided by your institution.

Conclusion: Upon completing these experiments, you will have gained valuable practical experience in organic chemistry, enhancing your understanding of alcohols, aldehydes, ketones, carboxylic acids and their derivatives, and amines. You will also develop essential laboratory skills, such as using spectroscopic techniques and performing chemical reactions safely. Document your experimental procedures, observations, and results accurately in a comprehensive report, and draw meaningful conclusions from your findings

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