University coursework layout

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University coursework layout

James studied part-time with us while working in industry. He found that the course content matched his professional needs, and his career has since gone from strength to strength. Modules Methods of assessment for course overall: It's specifically designed to cater for the wide differences in mathematical background of 1st year students, as well as to prepare you for the Advanced Mathematics module that you'll take in the second year.

Engineering principles This module will help you develop your understanding of essential scientific principles for the study of engineering to degree level.

It's designed to be accessible to students with a range of prior science specialisation. The module comprises two blocks of study.

These will introduce the principles of measurement systems and units, thermal physics and mechanical and electrical principles.

Design and practice This module will cover material design activities, team work, creative problem-solving, project management, sustainable development principles, personal development planning, report writing communication, Computer-Aided Design CADemployability and transferable skills. It's also a work-based module for part-time students, utilising the Virtual Learning Environment VLE to provide supporting teaching material and assessments.

Introduction to digital electronics This module aims to teach you some introductory material that an electronic engineer should know before proceeding with any digital designs.

The material in this module is divided into two parts. The second part of the module will focus on analysis and implementation of Sequential Logic circuits, their modelling and implementation using Programmable Logic Devices.

Engineering computing This is an introductory module that will address the engineering formation as well as programming knowledge and skills. It will enable you to appreciate the role and importance of software and computers in engineering, and so provide you with the impetus to quickly become competent in their use.

Introduction to electrical and electronic engineering This module will cover the essential material relevant to the fundamentals of both electrical and electronic engineering. Year 2 Advanced mathematics This module covers undergraduate advanced engineering mathematics to enable you to consider and model a variety of relevant engineering problems e.

Circuits, signals and systems This module introduces methods to mathematically model circuits, signals and systems required for the engineering of electrical, electronic, telecommunication and control systems. It shows how to model and analyse complex signals with Fourier series, Fourier transforms and Laplace Transforms.

The direct and indirect method of convolution is used to find the time response of systems to given inputs. First and second order LTI dynamical systems are modelled with transfer functions and their zero-state and zero-input responses predicted when the inputs are any function of time.

The frequency responses of some common LTI two port filter circuits are studied. Electrical machines and power electronics This module adopts a modern approach to the study of electrical machines, 3-phase transformers and power electronic converters.

The treatment emphasises the features common to all types of electrical machines and power electronic converters and then develops basic performance equations and equivalent circuits and applies them to common electrical machines and power converters in current use. The associated laboratory workshop features work on typical electrical machines and power converters.

Electrical services for buildings This module provides a sound understanding of the important building blocks in electrical building services engineering and apparatus such as transformers, machines, transmission and distribution systems, as well as the important building blocks in power engineering.

Electrical generation, distribution and utilisation will be studied, and also some of their typical computerised control systems, so that you're able to understand their chief characteristics and the areas in which they find application. The module will also include design and application of lifts and their control systems in buildings, lighting calculations and design, and lightning protection for buildings.

In the laboratory workshops you'll produce designs for on plant sizing, lighting, lift and lightning protection for several environments. Principles of control This module aims to give a sound understanding of a range of topics in Control Systems Engineering. It will impart methods to model and analyse dynamical systems met in the engineering of systems such as robotics, automobiles, aircraft, automatic machinery, chemical process plant, etc.

It will teach you to determine the stability of a system and to predict system responses in the time domain transient and steady state and in the frequency domain, as well as to handle the interconnection of many Single Input Single Output systems connected in feedback and feed forward configurations.

The module will provide you with methods to specify supervisory control and data acquisition systems, and to modify the behaviour of a given system by using feedback control to improve stability, to make the system act quickly and precisely, and to reduce the effect of disturbances.

Team design project This is a skills-based module developing your understanding of the design process within engineering, including factors that need to be taken into account in identifying and meeting requirements for new products used to mean outcome of a process and can include specifications for a tangible product, or process, or systemsuch as working within Regulatory, professional and Standards requirements, developing practical skills, working as part of a team, handling information, project planning and management, and report-writing and presentation skills.

Year 3 Year 4 Innovation and enterprise In the rapidly changing world around us, it's imperative that you're able to think dynamically to create advantage in your life. This module encourages you to question what you see and experience around you and in your prospective engineering field with an aim to enhance your creativity to discover new and better ways of doing things.

It aims to equip you with methods and processes to recognise opportunities and to plan on harnessing commercially viable benefits that may exist from exploiting those opportunities in a sustainable fashion.Share to facebook Share to twitter Share to linkedin The University of South Florida junior felt like she had nothing to put on her.

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Link to Departments website. The major in Accounting at UGA is designed to give students an understanding of the theory of accounting as it is used in our society: accounting standards, financial statement preparation, product costs, budgeting, taxation, auditing, risk assessment, and controls.

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University coursework layout

Artist In Residence (AIR) The AIR program finds professional local, interstate or international practitioners, or an outstanding alumnus, extend their contemporary theatre practice while positively impacting the students and culture of the School of Creative Arts.

Coursework Layout Help - The Student Room. Undergraduate Full time Part time. Parents and partners Repayment Advanced Learner Loan. Turn coursework thread page Beta Toggle. Coursework Layout Help watch. Here's all the info you need to be ready for GCSE results day.

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