Introduction
This unit introduces you to the concepts of modern classical electromagnetic theory based on Maxwell's Equations, starting from the basic observational phenomena of electrostatics and magnetostatics, and working through the invention of classical fields and the application of vector calculus to physical systems, ending with the identification of light as electromagnetic radiation. The thermal physics part of the unit shows the results of the application of statistical principles to large systems of particles and gives you the skills and knowledge to evaluate systems in terms of their energy, heat, and entropy. These two topics build from the material in first-semester, second-year physics and represent the culmination of classical physics, laying the groundwork for future learning in modern physics. Applications of the principles discussed in KYA212 are drawn from nature, scientific & industrial processes, and consumer goods. Laboratory sessions involve individual experiments in a wide range of physical phenomena and enable the acquisition of practical skills in experimental technique and data analysis.
Summary
| Unit name | Electromagnetism and Thermodynamics |
| Unit code | KYA212 |
| Credit points | 12.5 |
| College/School | Sciences and Engineering School of Natural Sciences |
| Discipline | Physics |
| Coordinator | Doctor Karelle Siellez |
| Available as an elective? | Yes |
| Delivered By | University of Tasmania |
| Level | Intermediate |
Availability
Specific information on 2027 unit availability will be available in August
Learning Outcomes
- Recognise and apply the fundamental principles of classical electromagnetism in the context of both natural processes and the function of modern technology.
- Recognise and apply the foundations of classical thermodynamics as applied to closed and open systems in the laboratory and the natural world.
- Solve problems in electromagnetism and thermodynamics at an intermediate level with appropriate mathematical tools.
- Perform experiments to test hypotheses in electrodynamics and thermodynamics and interpret the results
- Communicate scientific ideas and experimental results.
Fee Information
2027 fee information will be available in August.
Requisites
Prerequisites
((KYA101 AND KYA102) OR (ENG107 AND ENG108)) AND (KMA152 AND KMA154)Teaching
| Teaching Pattern | 3 50-minute face-to-face workshops per week, 1 50-minute tutorial per week, and 1 3-hour lab meeting per week. |
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| Assessment | Test 1 (10%)|Test 2 (10%)|Assignments (20%)|Experimental reports (20%)|Examination (40%) |
| Timetable | View the lecture timetable | View the full unit timetable |
Textbooks
| Required |
Required readings will be listed in the unit outline prior to the start of classes. |
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The University reserves the right to amend or remove courses and unit availabilities, as appropriate.