BPS3042
Advanced experimental spectroscopy
基本信息
| 学分 | 6 credit points |
|---|---|
| 开课学期 | Second semester |
| 校区 | Malaysia |
| 考核构成 | Mid-semester test — 20% Final assessment — 25% Workshop submissions and quizzes — 55% |
开课安排1 条
| 教学期 | 授课方式 | 状态 |
|---|---|---|
| Second semester | Teaching activities are on-campus (ON-CAMPUS) | 开课 |
以上为该校区在官方资料中登记的全部开课安排,不是汇总。同一门课可能在多个 教学期开课,也可能不同教学期的授课方式不同。
课程简介
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.
以上为 Monash Handbook 的官方原文,版权属 Monash University,此处按本站要求转载并标注出处: 官方页面 ↗
学习成果6 条
官方原文(Learning outcomes),版权属 Monash University。
- ULO1 Analyse spectroscopic data to determine the chemical structure of small chemical compounds in different solvents
- ULO2 Analyse and interpret two-dimensional spectra to identify the chemical structures of compounds
- ULO3 Analyse and interpret two-dimensional spectra to identify the chemical structures of compounds.
- ULO4 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.
- ULO5 Analyse and interpret NOE data to determine the conformation of small molecules.
- ULO6 Analyse and assign two-dimensional NMR spectra of small peptides.
教学方式与预期工作量
教学方式
Active learning
预期工作量
• Approximately 3 hours of online video lectures with accompanying spectroscopic problems and quizzes each week
• Eight 2-hour workshops
• Eight 3-hour laboratory classes
• One 1-hour assessment (Mid-semester test)
官方原文,版权属 Monash University。
先修 / 同修要求
以下先修关系按官方来源的结构化先修字段解析,原始记号:BPS2021
先修链路
按官方先修字段的原始分组展开,AND / OR 的区别保留着—— 「A 或 B」和「A 与 B」在选课时是两回事。每门课点进去可以继续往下看。
属于这些学位1 个
这门课出现在下列学位的官方结构里。反过来说:如果你读的是这些学位之一,它大概率是要修的 (必修还是选修取决于它在 Part 里的位置,点进去看结构)。
数据来源
- 数据来源
- 官方网页
handbook.monash.edu ↗ - 抓取时间
- 2026-09-13
- 可信度
- 程序抓取,未人工核实
查看官方完整描述 ↗ — 事实性字段(代码、学分、教学期、授课方式、考核权重、先修/同修/互斥关系)与 课程简介、学习成果、教学方式、预期工作量均取自官方 Handbook; 正文版权属 Monash University,此处转载并逐处标注出处。
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