8498 modules
Page 603
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ELEC3232 2028-29
Photonics I
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ELEC3232 2027-28
Photonics I
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ELEC3217 2028-29
Photonics II
- To introduce basic concepts governing optical waveguides, fibres, lasers and optical amplification.
- To foster a physical and quantitative understanding of key photonic devices.
- To foster an understanding of the use of photonics in sensing and communications applications. -
ELEC3217 2027-28
Photonics II
- To introduce basic concepts governing optical waveguides, fibres, lasers and optical amplification.
- To foster a physical and quantitative understanding of key photonic devices.
- To foster an understanding of the use of photonics in sensing and communications applications. -
OPTO6023 2026-27
Photonics Laboratory and Study Skills
The course is devoted to carrying out a series of experiments from the area of photonics and related technologies. The experiments have been selected to underpin and illustrate some fundamental concepts in laser and fibre science and offer an opportunity to develop the correct use of key experimental techniques. After the lab part of the course is completed, a conference will be held where the students will give presentations on one of the experiments carried out.
Note this is a course only for MSc students. -
OPTO6023 2025-26
Photonics Laboratory and Study Skills
The course is devoted to carrying out a series of experiments from the area of photonics and related technologies. The experiments have been selected to underpin and illustrate some fundamental concepts in laser and fibre science and offer an opportunity to develop the correct use of key experimental techniques. After the lab part of the course is completed, a conference will be held where the students will give presentations on one of the experiments carried out.
Note this is a course only for MSc students. -
PHYS3011 2029-30
Photons in Astrophysics
The main radiation mechanisms dominating astrophysical processes are discussed and examples are given of the situations in which they are most important. We show how the physical conditions, e.g. the temperature, density and magnetic field strength, can be determined from the emitted radiation in astrophysical situations, such as stars, galaxies and the nuclei of active galaxies. Detection techniques across the electromagnetic spectrum are investigated. The course is fundamental to our interpretation of astrophysical data and so is vital for all astronomers. However it is very much a physics course and so is also of use to students who are not taking astrophysics degrees. This aims to connect taught physics with the beginnings of astronomical research. The content requires a strong mathematical foundation. -
PHYS3011 2027-28
Photons in Astrophysics
The main radiation mechanisms dominating astrophysical processes are discussed and examples are given of the situations in which they are most important. We show how the physical conditions, e.g. the temperature, density and magnetic field strength, can be determined from the emitted radiation in astrophysical situations, such as stars, galaxies and the nuclei of active galaxies. Detection techniques across the electromagnetic spectrum are investigated. The course is fundamental to our interpretation of astrophysical data and so is vital for all astronomers. However it is very much a physics course and so is also of use to students who are not taking astrophysics degrees. This aims to connect taught physics with the beginnings of astronomical research. The content requires a strong mathematical foundation. -
PHYS3011 2028-29
Photons in Astrophysics
The main radiation mechanisms dominating astrophysical processes are discussed and examples are given of the situations in which they are most important. We show how the physical conditions, e.g. the temperature, density and magnetic field strength, can be determined from the emitted radiation in astrophysical situations, such as stars, galaxies and the nuclei of active galaxies. Detection techniques across the electromagnetic spectrum are investigated. The course is fundamental to our interpretation of astrophysical data and so is vital for all astronomers. However it is very much a physics course and so is also of use to students who are not taking astrophysics degrees. This aims to connect taught physics with the beginnings of astronomical research. The content requires a strong mathematical foundation. -
ISVR2042 2027-28
Physical Acoustics
This module builds on the knowledge and understanding of sound fields and their generation and propagation that was built up in previous modules. Those fundamental concepts are explored in greater depth to allow them to be applied to a wide variety of practically important systems, such as ducts, rooms and barriers.