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BMS1011 · Biomedical chemistry

Official Handbook

2026 Handbook6 credit pointsLevel 1School of Biomedical Sciences

Last checked: 23 Aug 2026 UTC

Overview

This unit will introduce you to the chemistry of organic molecules and the biochemistry of cells. We examine the role of functional groups in biological molecules of biomedical importance and common reactions in metabolism. We reinforce concepts of ionisation and pH. We discuss the chemistry of proteins and their physical properties in solution leading up to an examination of enzyme catalysis and kinetics. This lays the foundation for an examination of the biological oxidation of fats and carbohydrates that provides the cell with energy. We examine the way energy is stored in times of plenty and relate our understanding to normal and disease states that occur.

Offerings

CampusTeaching periodMode
ClaytonFirst semesterTeaching activities are on-campus (ON-CAMPUS)

Assessment

The Handbook lists an examination for this unit.

#AssessmentTypeWeightHurdle
1In-semester assessments (quizzes and case study analysis)Exercise50%
2Mid-semester test (45 minutes)Examination20%
3End of semester exam (2 hours and 10 minutes)Examination30%Threshold

Assessment in this unit includes hurdle assessment tasks. Failure of any hurdle assessment task may result in failure of the unit.

Assessment details may change. Please refer to the assessment information in Moodle closer to the start of the teaching period.

Requisites

The Handbook lists no prerequisite, corequisite or prohibition for this unit.

Learning outcomes

  1. Identify the chemical and biochemical aspects of functional groups in biological molecules.
  2. Explain the common reactions found in metabolic systems such as oxidation-reduction, bond formation, bond breaking events and a knowledge of the role of water.
  3. Explain the role of equilibrium and kinetic processes in biology and apply these to the concepts of enzyme catalysis.
  4. Predict the thermodynamics of metabolic reactions.
  5. Describe how energy is generated and utilised from carbohydrates and lipids and integrate and translate this to different situations.
  6. Investigate and communicate, reactions of biomedical importance in normal and disease states

Workload

6 hours of directed learning (lectures, workshops, pre- and post-class activities, practicals and tutorials) per week.

ActivityDuration
Workshops24 hours

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