11318 modules
Page 367
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ISVR6137 2026-27
Electroacoustics
Electroacoustic transducers, such as microphones and loudspeakers, are commonplace in the fields of acoustics and audio and it is important that acoustical engineers have an understanding of the theory and mechanisms of electroacoustic transduction. This module provides the knowledge to understand and predict the behaviour of a wide range of electroacoustic devices, and to relate this to real-world transducer technology. -
ISVR6137 2027-28
Electroacoustics
Electroacoustic transducers, such as microphones and loudspeakers, are commonplace in the fields of acoustics and audio and it is important that acoustical engineers have an understanding of the theory and mechanisms of electroacoustic transduction. This module provides the knowledge to understand and predict the behaviour of a wide range of electroacoustic devices, and to relate this to real-world transducer technology. -
ISVR6137 2029-30
Electroacoustics
Electroacoustic transducers, such as microphones and loudspeakers, are commonplace in the fields of acoustics and audio and it is important that acoustical engineers have an understanding of the theory and mechanisms of electroacoustic transduction. This module provides the knowledge to understand and predict the behaviour of a wide range of electroacoustic devices, and to relate this to real-world transducer technology. -
ISVR6137 2028-29
Electroacoustics
Electroacoustic transducers, such as microphones and loudspeakers, are commonplace in the fields of acoustics and audio and it is important that acoustical engineers have an understanding of the theory and mechanisms of electroacoustic transduction. This module provides the knowledge to understand and predict the behaviour of a wide range of electroacoustic devices, and to relate this to real-world transducer technology. -
ISVR6137 2025-26
Electroacoustics
Electroacoustic transducers, such as microphones and loudspeakers, are commonplace in the fields of acoustics and audio and it is important that acoustical engineers have an understanding of the theory and mechanisms of electroacoustic transduction. This module provides the knowledge to understand and predict the behaviour of a wide range of electroacoustic devices, and to relate this to real-world transducer technology. -
PHYS2001 2026-27
Electromagnetism
Electromagnetism is one of the brilliant successes of nineteenth century physics and the equations formulated by Maxwell are believed to account exactly for all classical electromagnetic phenomena.
The aim of this course is to present the laws of electromagnetism, their experimental justification, and their application to physical phenomena. -
PHYS2001 2028-29
Electromagnetism
Electromagnetism is one of the brilliant successes of nineteenth century physics and the equations formulated by Maxwell are believed to account exactly for all classical electromagnetic phenomena.
The aim of this course is to present the laws of electromagnetism, their experimental justification, and their application to physical phenomena. -
PHYS2001 2027-28
Electromagnetism
Electromagnetism is one of the brilliant successes of nineteenth century physics and the equations formulated by Maxwell are believed to account exactly for all classical electromagnetic phenomena.
The aim of this course is to present the laws of electromagnetism, their experimental justification, and their application to physical phenomena. -
ELEC2322 2026-27
Electronic and Computer Systems
This module provides a comprehensive understanding of how modern computer systems are built, starting from fundamental transistor-level design and extending to full operating systems. Students will first learn the fundamentals of electronic circuits, including logic gates, memory elements (DRAM, SRAM), and amplifiers. They will then examine how these components integrate into larger digital systems, such as microprocessors and memory hierarchies. The course covers the inner workings of a computer at various levels, from transistors to processors, peripherals, compilers, and operating systems. -
ELEC2322 2027-28
Electronic and Computer Systems
This module provides a comprehensive understanding of how modern computer systems are built, starting from fundamental transistor-level design and extending to full operating systems. Students will first learn the fundamentals of electronic circuits, including logic gates, memory elements (DRAM, SRAM), and amplifiers. They will then examine how these components integrate into larger digital systems, such as microprocessors and memory hierarchies. The course covers the inner workings of a computer at various levels, from transistors to processors, peripherals, compilers, and operating systems.