BPS3042 Advanced experimental spectroscopy
Faculty of Pharmacy and Pharmaceutical Sciences
BPS3042 Advanced experimental spectroscopy is a level 3, 6-credit-point, undergraduate unit from the Faculty of Pharmacy and Pharmaceutical Sciences, offered in 2023 in Semester 2 at Parkville. It needs BPS2021.
- Credit points
- 6
- Offered in 2023
- Semester 2
- Parkville
- Assessment
- Exam 25%
- and 2 other tasks
This is the 2023 handbook entry. See the 2027 entry.
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Requisites
Before BPS3042
Prerequisites
Pass these before you enrol.
After BPS3042
No unit lists BPS3042 as a prerequisite in the 2023 handbook.
Overview
This unit will develop advanced concepts in spectroscopy and introduce experimental approaches to the characterisation and qualitative analysis of chemical samples. A key focus of the unit is using spectroscopic data to establish the chemical identity of a compound. The initial focus will be on using multiple techniques including nuclear magnetic resonance (NMR) spectroscopy, mass spectrometry and infra-red spectroscopy to determine the chemical structure of a compound. Subsequently, a range of advanced experimental approaches for analysis of more complex samples will be introduced. The theoretical basis of multi-dimensional NMR spectroscopy will be covered from a conceptual perspective. Emphasis will be placed on the analysis of data from the more common two-dimensional homonuclear and heteronuclear experiments. Through analysis of experimental data students will develop practical skills in the design of experiments for structural elucidation. The unit will focus on the analysis of small organic compounds and peptides.
Offerings in 2023
| Teaching period | Campus | Mode |
|---|---|---|
| Second semester | Parkville | On campus |
Assessment
- Workshop submissions and quizzesWorkshopThreshold hurdle55%
- Mid-semester testIn class testThreshold hurdle20%
- Final assessmentExamThreshold hurdle25%
Learning outcomes
When you finish this unit, you should be able to:
- 1
Analyse spectroscopic data to determine the chemical structure of small chemical compounds in different solvents
- 2
Analyse and interpret two-dimensional spectra to identify the chemical structures of compounds
- 3
Analyse and interpret two-dimensional spectra to identify the chemical structures of compounds.
- 4
Define the term Nuclear Overhauser Enhancement (NOE) and account for the observation of NOEs in one-dimensional and two-dimensional NMR spectra of both small and large molecules.
- 5
Analyse and interpret NOE data to determine the conformation of small molecules.
- 6
Analyse and assign two-dimensional NMR spectra of small peptides.
Workload and teaching
- Workshops1 hours
- Laboratories24 hours
- Assessments1 hours
- Applied sessions8 hours
- Teaching approachActive learning
- Eight 1.5-hour online preparation modules (Discovery)
- Sixteen 1-hour interactive lectures (Online modules)
- Eight 1-hour applied sessions (Q&A)
- Eight 3-hour laboratory classes
- One 1-hour assessment (Mid-semester test)
Learning resources
Technology resources
For more information on Bring Your Own Device (BYOD) specifications and the technology systems and services available to students, review the Student Technology Essentials Handbook
Contacts
- Unit Coordinators
- Associate Professor Martin Scanlon
- Chief Examiners
- Associate Professor Martin Scanlon
Common questions
What are the prerequisites for BPS3042?
You need BPS2021 before you enrol.
When is BPS3042 offered?
In 2023, BPS3042 runs in Semester 2 at Parkville.
Does BPS3042 have an exam?
Yes. The exam is worth 25% of the final mark, alongside 2 other tasks.