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Subject Overview

Applied Physics is designed for students with a strong interest in the application of physical theories to solve problems and a desire to undertake research.

Students can choose from four sub-disciplines which include:
Medical Physics and Imaging Technology (MPIT) - Medical Physics and Imaging Technology is the application of physics theories, technologies and methods in the field of biomedical imaging, modelling, diagnostics and disease treatments. This specialisation will train graduates who are proficient in the complementary areas of physics, biology and physiology, and skilled in the design and application of imaging and biomedical technologies. Graduates will work in either the biomedical industry, pursue a research career in biomedical optics or engage in further training to qualify as registered medical physicists.

Nano and Materials Physics - Throughout history, people’s lives have been improved by efforts to make, understand and use new materials. Today, basic physics and chemistry are critical skills for making the materials which will build tomorrow’s computers, improve medical care, monitor and care for our environment, and support a sustainable economy driven by renewable energy. Materials innovation generates companies and technologies that have global impact, and has underpinned recent growth in NZ’s high-value manufacturing sector.

Photonics - Photonics is the science and technology of light. It is one of the key enabling technologies of the 21st century with applications across sensing, communications, manufacturing and health. A recent study by the Australia and New Zealand Optical Society estimated the total value of Photonics to the NZ economy to be 1.2 billion NZD. A combination of courses from Physics and Electrical Engineering will enable students to work in this exciting new area.

Space Systems - New Zealand is now a space-faring nation, with a burgeoning space economy valued by a recent report at 1.7 billion NZD. Space systems includes remote sensing, imaging, orbital dynamics, material science, mechanics, programming and fluid mechanics. This degree combines courses from Physics and Mechanical Engineering and will prepare students to work in a fast-evolving marketplace.

The program has a strong applied focus with a 45 point fourth year research project typically to be carried out in collaboration with a local industry or medical partner. The many strong relationships Physics department researchers have already established with NZ high-tech companies will allow students to choose from a wide range of potential industry projects.

The Applied Physics specialisation is taught at the City Campus.

Knowledge and Skills

You can study Applied Physics as a specialisation in the Bachelor of Advanced Science (Honours) (BAdvSci(Hons)).
Students can choose from five sub-disciplines which include:
- Computational Science
- Medical Physics and Imaging Technology (MPIT)
- Nano and Materials Physics
- Photonics
- Space Systems
Graduates will develop the skills and knowledge needed for entry into New Zealand’s high-tech industries, or if they choose, to proceed to graduate study.

Potential Careers

The degree is designed to position its graduates for entry into New Zealand’s high-tech industries, as well as allow them to proceed to graduate study.
Many avenues open up to graduates with training in Applied Physics.
Activities related to Physics jobs
- Working with electronic and computer applications
- Space science
- Materials development
- Patent consulting
- Production process and control
- Research in Crown Research Institutes
- Medical Physicist
- Photonics research and development

Other information

Entry to the Bachelor of Advanced Science in Applied Physics is limited. Selection into this programme will require a higher standard than some other programmes.

Schedule

Plan Schedules

Complete 315 points comprising:

  • 45 points for all Stage I Compulsory Courses, and
  • 15 points for all Stage II Compulsory Course, and
  • 15 points from Stage II Mathematics Elective Courses, and
  • 45 points from Stage II Physics Elective Courses, and
  • 15 points from Additional Stage II Elective Courses, and
  • 30 points from Stage III Physics Elective Courses, and
  • 15 points from Additional Stage III Elective Courses, and
  • 15 points for all Stage III Compulsory Course, and
  • 45 points from Level 700 Physics Elective Courses , and
  • 30 points from Additional Level 700 Elective Courses, and
  • Either:
  • 45 points for all Dissertation - 1 Semester, or
  • 45 points for all Dissertation - 2 Semesters

Stage I Compulsory Courses

Complete 45 points for ALL of the following:

Stage II Compulsory Course

Complete 15 points for ALL of the following:

Stage II Mathematics Elective Courses

Complete exactly 15 points from the following:

Stage II Physics Elective Courses

Complete exactly 45 points from the following:

Stage III Compulsory Course

Complete 15 points for ALL of the following:

Dissertation - 1 Semester

Complete 45 points for ALL of the following:

Dissertation - 2 Semesters

Complete 45 points for ALL of the following: