MTE5881 Applied crystallography in advanced materials characterisation
Faculty of Engineering
MTE5881 Applied crystallography in advanced materials characterisation is a level 5, 6-credit-point, postgraduate unit from the Faculty of Engineering, offered in 2021 in Semester 2 at Clayton. It has no prerequisites.
- Credit points
- 6
- Offered in 2021
- Semester 2
- Clayton
- Assessment
- No exam
- 3 tasks
- Workload
- 144 hours
- per semester
This is the 2021 handbook entry. See the 2027 entry.
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Overview
The scattering of different types of radiation from crystalline materials gives fundamental insight into materials properties at various length scales, beginning with atomic structure and culminating in interatomic bonding. The unit will be taught as a series of modules covering essential knowledge in each area of diffraction (X-ray diffraction, electron diffraction, and neutron diffraction), including a solid coverage of crystallography and how it is applied in all of the characterisation techniques that reside within each of these areas of diffraction.
The unit explores the complementarity of the different techniques and radiations through strategically aligned laboratory classes. The data collected in each lab session, from different experiments and instruments, will be combined throughout the course of the unit with the aim of solving a real materials science problem that is of current interest or a hot topic.
Approximately 50% of this unit is based on the flipped classroom, and data analysis from laboratory sessions will be carried out in workshop-style sessions using the knowledge and instruction gained from the online modules.
Offerings in 2021
| Teaching period | Campus | Mode |
|---|---|---|
| Second semester | Clayton | On campus |
Assessment
- Journal-style paperThreshold hurdle40%
- QuizzesThreshold hurdle20%
- Final assessmentThreshold hurdle40%
Learning outcomes
When you finish this unit, you should be able to:
- 1
perform ultra-high resolution materials structure analysis using a combination of diffraction techniques
- 2
use high-performance computing clusters to run large materials analysis computations in parallel
- 3
use crystallography as both a tool and philosophy in materials characterisation
- 4
combine information from different techniques to answer complex research questions and address complex materials characterisation problems
- 5
write technical research papers that address current materials characterisation problems and combine results from a variety of diffraction techniques
- 6
apply combinations of modelling, simulation and quantitative data analysis for the extraction of meaningful information about the probed materials.
Workload and teaching
- Workshops24 hours
- Applied sessions24 hours
- Teaching approachProblem-based learning
- Teaching approachResearch activities
The minimum total expected workload to achieve the learning outcomes for this unit is 144 hours per semester typically comprising a mixture of 3-6 hours of scheduled learning activities and 6-9 hours of independent study per week. Scheduled activities may include a combination of teacher-directed learning, peer-directed learning and online engagement. Independent study may include associated readings, assessment and preparation for scheduled activities.
Where it fits
MTE5881 is part of 2 areas of study in the 2021 handbook.
Contacts
- Unit Coordinators
- Associate Professor Philip Nakashima
- Chief Examiners
- Associate Professor Philip Nakashima
Common questions
What are the prerequisites for MTE5881?
MTE5881 has no prerequisites.
When is MTE5881 offered?
In 2021, MTE5881 runs in Semester 2 at Clayton.
How much work is MTE5881?
The handbook expects about 144 hours of study across the semester. No students have rated its difficulty yet.
Does MTE5881 have an exam?
No. MTE5881 has 3 assessment tasks and no exam.
Which majors and minors include MTE5881?
MTE5881 is part of Materials engineering.