8498 modules
Page 568
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CHEM6124 2025-26
NMR Spectroscopy: Theory and Application
NMR spectroscopy is a powerful analytical tool: by combining a wide range of 1D and 2D NMR experiments, the assignment of functional groups, atom connectivity and 3D molecular structure can be undertaken. This module will be delivered with a focus on practical skills associated with acquiring and evaluating NMR data and spectral interpretation.
The module will be built from fundamental basics: NMR spectroscopic theory will be used only where necessary to illustrate a practical point. -
CHEM6124 2026-27
NMR Spectroscopy: Theory and Application
NMR spectroscopy is a powerful analytical tool: by combining a wide range of 1D and 2D NMR experiments, the assignment of functional groups, atom connectivity and 3D molecular structure can be undertaken. This module will be delivered with a focus on practical skills associated with acquiring and evaluating NMR data and spectral interpretation.
The module will be built from fundamental basics: NMR spectroscopic theory will be used only where necessary to illustrate a practical point. -
ISVR3064 2028-29
Noise Control Engineering
Noise control engineering is concerned with the application of basic acoustics and vibration theory to reduce noise in practical situations. The noise control engineer needs to know how to set targets, how to characterise and quantify noise sources, and how to reduce noise either at source or, more commonly, in the transmission path. Suitable formulae are provided and explained for each of these steps. The main assessment consists of a design calculation study which makes use of these formulae to solve a practical problem. The report is written in a form suitable for a client. -
ISVR3064 2029-30
Noise Control Engineering
Noise control engineering is concerned with the application of basic acoustics and vibration theory to reduce noise in practical situations. The noise control engineer needs to know how to set targets, how to characterise and quantify noise sources, and how to reduce noise either at source or, more commonly, in the transmission path. Suitable formulae are provided and explained for each of these steps. The main assessment consists of a design calculation study which makes use of these formulae to solve a practical problem. The report is written in a form suitable for a client. -
ISVR3064 2027-28
Noise Control Engineering
Noise control engineering is concerned with the application of basic acoustics and vibration theory to reduce noise in practical situations. The noise control engineer needs to know how to set targets, how to characterise and quantify noise sources, and how to reduce noise either at source or, more commonly, in the transmission path. Suitable formulae are provided and explained for each of these steps. The main assessment consists of a design calculation study which makes use of these formulae to solve a practical problem. The report is written in a form suitable for a client. -
ISVR6150 2025-26
Noise Control Engineering
Noise control engineering is concerned with the application of basic acoustics and vibration theory to reduce noise in practical situations. The noise control engineer needs to know how to set targets, how to characterise and quantify noise sources, and how to reduce noise either at source or, more commonly, in the transmission path. Suitable formulae are provided and explained for each of these steps. The main assessment consists of a design calculation study which makes use of these formulae to solve a practical problem. The report is written in a form suitable for a client. -
ISVR6150 2026-27
Noise Control Engineering
Noise control engineering is concerned with the application of basic acoustics and vibration theory to reduce noise in practical situations. The noise control engineer needs to know how to set targets, how to characterise and quantify noise sources, and how to reduce noise either at source or, more commonly, in the transmission path. Suitable formulae are provided and explained for each of these steps. The main assessment consists of a design calculation study which makes use of these formulae to solve a practical problem. The report is written in a form suitable for a client. -
HPRS2037 2026-27
Non-Invasive Cardiac Physiology
This module will further establish your knowledge, technical skills and develop your clinical reasoning within non-invasive cardiology. The fundamental theme will be your ability to clinically interpret electrocardiographic data derived from a range of procedures including; 12 lead ECGs , ambulatory monitoring and cardiac stress testing and echocardiography. Your teaching will take place in a dedicated specialist facility at University Hospital Southampton and delivered by clinical specialists. All theory and practice is designed to prepare you for your year 2 clinical placement in a cardiac department. -
HPRS2037 2027-28
Non-Invasive Cardiac Physiology
This module will further establish your knowledge, technical skills and develop your clinical reasoning within non-invasive cardiology. The fundamental theme will be your ability to clinically interpret electrocardiographic data derived from a range of procedures including; 12 lead ECGs , ambulatory monitoring and cardiac stress testing and echocardiography. Your teaching will take place in a dedicated specialist facility at University Hospital Southampton and delivered by clinical specialists. All theory and practice is designed to prepare you for your year 2 clinical placement in a cardiac department. -
ELEC6260 2026-27
Nonlinear Control of Aerospace Systems
Modern (and future) aircraft employ a variety of nonlinear techniques to both design control systems and perform analysis of the arising closed-loop. This is due to the fact that aircraft dynamics are fundamentally nonlinear and also, with the widespread use of digital fly-by-wire technology today, because engineers have considerably more opportunity to be flexible and adventurous with their designs. However, as with any control system, great care has to be taken to ensure that the arising system is stable and robust; this is all the more important with nonlinear methods as one cannot directly apply the powerful linear techniques which the student will be familiar with from classical control.
This module will i) provide a broad and deep foundation in nonlinear control theory, ii) introduce the student to a number of interesting nonlinear controller design techniques, and iii) illustrate the use of such techniques using flight control examples.
The module will highlight the opportunities and drawbacks provided by nonlinear techniques, equipping the student with a balanced appreciation of when and where such techniques may be effectively applied.