Professor
Michele PrinsepProfile page
Professor
Chemistry and Applied Physics
Orcid identifier0000-0001-6967-4642
- ProfessorChemistry and Applied Physics
- Academic Team Leader of Chemistry and Applied PhysicsChemistry and Applied Physics
- +64 7 837 9392 (Work)
- University of Waikato, HAMILTON, New Zealand
TEACHING & SUPERVISION
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Showing page 1, teaching & supervision 1 to 25 of 42
COURSE TAUGHT
2 Mar 2026 - 28 Jun 2026
This paper covers advanced aspects of organic chemistry including pericyclic reactions, natural product chemistry, medicinal chemistry and organic synthesis including retrosynthetic analysis.
COURSE TAUGHT
2 Mar 2026 - 28 Jun 2026
Using a combination of lectures viewed online and instrumental work, students master the skills required to acquire NMR and mass spectra and interpret these to identify an unknown compound. Students should have received basic instruction in carbon and proton NMR before considering enrolling in this course.
COURSE TAUGHT
2 Mar 2026 - 28 Jun 2026
This paper covers aspects of analytical chemistry including high performance liquid chromatography (HPLC), mass spectrometry (MS), sample collection, statistical methods and laboratory techniques including sample preparation and calibration.
COURSE TAUGHT
10 Nov 2025 - 21 Dec 2025
Using a combination of lectures viewed online and instrumental work, students master the skills required to acquire NMR and mass spectra and interpret these to identify an unknown compound. Students should have received basic instruction in carbon and proton NMR before considering enrolling in this course.
COURSE TAUGHT
7 Jul 2025 - 2 Nov 2025
This paper covers aspects of organic chemistry including electrophilic aromatic substitution, reaction mechanisms with carbanion intermediates and mechanisms of reactions of carbonyl groups. An introduction to interpretation of proton and carbon nuclear magnetic resonance (NMR) spectra is provided.
COURSE TAUGHT
7 Jul 2025 - 2 Nov 2025
The paper has been designed to appeal and be relevant to a range of students with different interests and backgrounds. This paper will cover topics which highlight how molecules can be useful to humans (such as in medicines and food) and also how they can be harmful (for example toxins, explosives, narcotics).
COURSE TAUGHT
7 Jul 2025 - 2 Nov 2025
This paper is an introduction to professional practice as a scientist and is required for MSc(Res) degree students. This paper may be taken by MSc degree students if they have a research supervisor. It will focus on skills and practices for successful research in science.
COURSE TAUGHT
24 Feb 2025 - 22 Jun 2025
This paper covers aspects of analytical chemistry including high performance liquid chromatography (HPLC), mass spectrometry (MS), sample collection, statistical methods and laboratory techniques including sample preparation and calibration.
COURSE TAUGHT
24 Feb 2025 - 22 Jun 2025
This paper covers advanced aspects of organic chemistry including pericyclic reactions, natural product chemistry, medicinal chemistry and organic synthesis including retrosynthetic analysis.
COURSE TAUGHT
24 Feb 2025 - 22 Jun 2025
Using a combination of lectures viewed online and instrumental work, students master the skills required to acquire NMR and mass spectra and interpret these to identify an unknown compound. Students should have received basic instruction in carbon and proton NMR before considering enrolling in this course.
COURSE TAUGHT
11 Nov 2024 - 22 Dec 2024
Using a combination of lectures viewed online and instrumental work, students master the skills required to acquire NMR and mass spectra and interpret these to identify an unknown compound. Students should have received basic instruction in carbon and proton NMR before considering enrolling in this course.
COURSE TAUGHT
8 Jul 2024 - 3 Nov 2024
This paper covers aspects of organic chemistry including electrophilic aromatic substitution, reaction mechanisms with carbanion intermediates and mechanisms of reactions of carbonyl groups. An introduction to interpretation of proton and carbon nuclear magnetic resonance (NMR) spectra is provided.
COURSE TAUGHT
8 Jul 2024 - 3 Nov 2024
The broad objectives of this paper are to provide an introduction to the important field of green chemistry, based on the guiding principles of this field.
A variety of areas within the overall umbrella of green chemistry may be covered, including but not restricted to:
- industrial applications
- catalysis
- mechanochemistry
- ionic liquids (including those derived from natural products, rare earth elements etc.)
- analytical aspects of green chemistry
COURSE TAUGHT
26 Feb 2024 - 23 Jun 2024
This paper covers aspects of analytical chemistry including high performance liquid chromatography (HPLC), mass spectrometry (MS), sample collection, statistical methods and laboratory techniques including sample preparation and calibration.
COURSE TAUGHT
26 Feb 2024 - 23 Jun 2024
This paper covers advanced aspects of organic chemistry including pericyclic reactions, natural product chemistry, medicinal chemistry and organic synthesis including retrosynthetic analysis.
COURSE TAUGHT
26 Feb 2024 - 23 Jun 2024
Using a combination of lectures viewed online and instrumental work, students master the skills required to acquire NMR and mass spectra and interpret these to identify an unknown compound. Students should have received basic instruction in carbon and proton NMR before considering enrolling in this course.
COURSE TAUGHT
10 Jul 2023 - 5 Nov 2023
This paper covers aspects of organic chemistry including electrophilic aromatic substitution, reaction mechanisms with carbanion intermediates and mechanisms of reactions of carbonyl groups. An introduction to interpretation of proton and carbon nuclear magnetic resonance (NMR) spectra is provided.
COURSE TAUGHT
10 Jul 2023 - 5 Nov 2023
The broad objectives of this paper are to provide an introduction to the important field of green chemistry, based on the guiding principles of this field.
A variety of areas within the overall umbrella of green chemistry may be covered, including but not restricted to:
- industrial applications
- catalysis
- mechanochemistry
- ionic liquids (including those derived from natural products, rare earth elements etc.)
- analytical aspects of green chemistry
COURSE TAUGHT
27 Feb 2023 - 25 Jun 2023
This paper covers aspects of analytical chemistry including high performance liquid chromatography (HPLC), mass spectrometry (MS), sample collection, statistical methods and laboratory techniques including sample preparation and calibration.
COURSE TAUGHT
27 Feb 2023 - 25 Jun 2023
This paper covers advanced aspects of organic chemistry including pericyclic reactions, natural product chemistry, medicinal chemistry and organic synthesis including retrosynthetic analysis.
COURSE TAUGHT
27 Feb 2023 - 25 Jun 2023
Using a combination of lectures viewed online and instrumental work, students master the skills required to acquire NMR and mass spectra and interpret these to identify an unknown compound. Students should have received basic instruction in carbon and proton NMR before considering enrolling in this course.
COURSE TAUGHT
16 Nov 2022 - 20 Dec 2022
Using a combination of lectures viewed online and instrumental work, students master the skills required to acquire NMR and mass spectra and interpret these to identify an unknown compound. Students should have received basic instruction in carbon and proton NMR before considering enrolling in this course.
COURSE TAUGHT
18 Jul 2022 - 13 Nov 2022
This paper covers aspects of organic chemistry including electrophilic aromatic substitution, reaction mechanisms with carbanion and radical intermediates and mechanisms of reactions of carbonyl groups. An introduction to interpretation of proton and carbon nuclear magnetic resonance (NMR) spectra is provided.
COURSE TAUGHT
18 Jul 2022 - 13 Nov 2022
This paper covers concepts and practical applications in the important field of green chemistry.
COURSE TAUGHT
7 Mar 2022 - 3 Jul 2022
This paper covers aspects of analytical chemistry including statistical methods and techniques such as high performance liquid chromatography (HPLC), gas chromatography (GC) and mass spectrometry (MS).
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