MTE2202 Functional materials 1
Faculty of Engineering
MTE2202 Functional materials 1 is a level 2, 6-credit-point, undergraduate unit from the Faculty of Engineering, offered in 2024 in Semester 2 at Clayton. It has no prerequisites and unlocks 1 unit.
- Credit points
- 6
- Offered in 2024
- Semester 2
- Clayton
- Assessment
- No exam
- 3 tasks
- Workload
- 144 hours
- per semester
This is the 2024 handbook entry. See the 2027 entry.
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Requisites
Before MTE2202
Prohibitions
You can't enrol if you have passed any of these.
After MTE2202
1 unit list MTE2202 as a prerequisite or corequisite.
Overview
This unit will focus on the ‘smart’ functional roles of the materials in devices which depend on their electrical and optical properties. Examples of such devices covered are pn junction rectifiers, bipolar junction transistors, field-effect transistors (FET), dynamic random access memories (DRAM), solar cells, light-emitting diodes (LED), optical fibres and the Peltier cooler. The functional materials will be studied at the microscopic (atomic and/or molecular) level in order to gain an understanding of the device operation. The particular focus of this unit is on the electronic properties of materials (metals, semiconductors and insulators) based on their energy band structures. The classical and wave-mechanical models of metals are introduced along with the Fermi energy, density of states, forbidden band and Brillouin zones, to describe the behaviour of free electrons in solids. Semiconductor fabrication processes such as single crystal growth, film deposition and microlithography will also be introduced briefly.
Offerings in 2024
| Teaching period | Campus | Mode |
|---|---|---|
| Second semester | Clayton | On campus |
Assessment
- Laboratory practicalsThreshold hurdle30%
- AssignmentsThreshold hurdle20%
- Final assessmentThreshold hurdle50%
Learning outcomes
When you finish this unit, you should be able to:
- 1
Describe conduction processes in metals, alloys, semiconductors and insulators, with regard to the electronic band structure of these materials.
- 2
Describe the working principles of selected semiconductor devices, including pn junction diodes, transistors, solar cells, light emitting diodes and the Peltier cooler.
- 3
Describe the interaction between photons and various classes of materials and thereby describe the optical properties of those materials.
- 4
Apply critical thinking, analytical and problem-solving skills to scenarios that involve electrically and optically active materials.
- 5
Use basic laboratory skills to study polymeric materials, be able to work effectively within a team in carrying out laboratory work, be able to keep appropriate laboratory records and develop skills to communicate the results and conclusions of practical work.
Workload and teaching
- Workshops24 hours
- Practical activities12 hours
- Laboratories9 hours
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
MTE2202 is part of 1 area of study in the 2024 handbook.
Contacts
- Unit Coordinators
- Professor Kiyonori Suzuki
- Chief Examiners
- Professor Kiyonori Suzuki
Common questions
What are the prerequisites for MTE2202?
MTE2202 has no prerequisites.
What can I take after MTE2202?
MTE2202 is a prerequisite or corequisite for 1 unit, including MTE3202.
When is MTE2202 offered?
In 2024, MTE2202 runs in Semester 2 at Clayton.
How much work is MTE2202?
The handbook expects about 144 hours of study across the semester. No students have rated its difficulty yet.
Does MTE2202 have an exam?
No. MTE2202 has 3 assessment tasks and no exam.
Which majors and minors include MTE2202?
MTE2202 is part of Materials engineering.