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Guided by experienced staff and resourced with state of the art equipment, this course nurtures talent and develops directional womenswear designers whose cutting-edge fashion influences the future of the industry. Read more

Introduction

Guided by experienced staff and resourced with state of the art equipment, this course nurtures talent and develops directional womenswear designers whose cutting-edge fashion influences the future of the industry.

Content

MA Fashion Design Technology Womenswear seeks to recruit ambitious, creative designers who have a long-term fashion focus and wish to work for a key brand or set up their own label. Based primarily in London’s West End at John Prince’s Street and resourced by the specialist equipment at our other central sites, contemporary technology is at the core of this course.

CAD CAM, state of the art knitting machines and facilities for digital print, rapid proto-typing and laser cutting allow students to produce womenswear collections that innovate in the field.

By nurturing creativity and specialist research, the course enables individuals to produce high quality and innovative work through illustration, design, cutting and modern manufacturing.

Students are supported to develop collaborations with industry specialists and international fabric suppliers, a process that not only builds important contacts for the future but one that enriches student experience and refines design sensibility. Using diverse production techniques - from couture craftsmanship to futuristic experimentation - students are able to explore their own perspectives to form the basis of their MA collection. Guided by experienced staff, this also has the potential to incorporate a further specialism such as embroidery, knitwear or digital concepts.

Structure

15 months level 7 180 credits

Term One

Creative and Technical Innovation (40 credits)
Research Methods (20 credits)

Term Two

Collaborative Unit (20 credits)
Technical Analysis and Development (40 units)

Term Three

Masters Project (60 credits)

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This course focuses on the latest technology in modern CAD/CAM/CAE/PLM applications to enable students to acquire knowledge and understanding of rapid design and manufacture of a new product from a single computer terminal, without the need for lengthy prototype and test cycles. Read more
This course focuses on the latest technology in modern CAD/CAM/CAE/PLM applications to enable students to acquire knowledge and understanding of rapid design and manufacture of a new product from a single computer terminal, without the need for lengthy prototype and test cycles. Implementing this technology is essential in today's global marketplace, where survival relies on being first to market.

The MSc will meet, in part, the exemplifying academic benchmark requirements for registration as a Chartered Engineer. Accredited MSc graduates who also have a BEng(Hons) accredited for CEng, will be able to show that they have satisfied the educational base for CEng registration.

Key features
-Teaching in many technical modules is backed up by appropriate hands-on experience and workshops, which can be transferred directly to your working environment.
-Academic teaching is complemented by visits from industry experts. You will also have plenty of opportunities to attend relevant technical seminars, both within and outside the University.
-You can tailor your course to enhance your career ambitions through your module choices and the project dissertation gives you the opportunity to choose a field of study in which to establish yourself as a specialist.

What will you study?

This programme is structured to provide you with the latest developments in this still-evolving discipline, and focuses on providing you with hands-on experience of the latest computing applications throughout the entire product development cycle. The course covers a range of topics from 3D solid modelling and the techniques required to extend the capabilities of a 3D modelling system to gaining practical and theoretical knowledge of analytical computer tools by using finite element analysis (FEA) techniques. It also examines the importance of modern materials in advanced manufacturing processes, as well as computer-aided manufacturing (CAM) and application of rapid prototyping technologies. Additionally, the programme enables you to gain the entrepreneurship, management and business skills necessary to take on leadership roles in major product design engineering projects.

The project dissertation challenges you to investigate a theoretical area in depth and also to undertake a real-world product design problem-solving project.

Assessment

Coursework and/or exams, presentations, research project.

Work placement scheme

Kingston University has set up a scheme that allows postgraduate students in the Faculty of Science, Engineering and Computing to include a work placement element in their course starting from September 2017. The placement scheme is available for both international and home/EU students.
-The work placement, up to 12 months; is optional.
-The work placement takes place after postgraduate students have successfully completed the taught portion of their degree.
-The responsibility for finding the placement is with the student. We cannot guarantee the placement, just the opportunity to undertake it.
-As the work placement is an assessed part of the course for international students, this is covered by a student's tier 4 visa.

Details on how to apply will be confirmed shortly.

Course structure

Please note that this is an indicative list of modules and is not intended as a definitive list.

Core modules
-Engineering Research Techniques, Entrepreneurship and Quality Management
-Computer Integrated Product Development
-Advanced CAD/CAM Systems
-Engineering Individual Project

Option modules (choose one)
-Industrial Operation Management and Resources Simulation
-Green Engineering and Energy Efficiency
-Mechatronics Design and Automation

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The aim of this MSc programme is to provide advanced training in all major aspects of product design from conceptual design, product modelling to prototyping to a high level of competence. Read more
The aim of this MSc programme is to provide advanced training in all major aspects of product design from conceptual design, product modelling to prototyping to a high level of competence. This programme will train you to develop reliable, high quality products with true market appeal, within the budgets and tight timescales demanded by competitive businesses.

You'll gain detailed expertise in product design's key concepts, tools and methodologies, including:-

innovative product development and design techniques
advanced CAD/CAM and modelling
materials selection
industrial design
rapid prototyping
total quality management
marketing

There's a strong practical element and you'll develop your skills through individual and group projects, using facilities that include:-

CAD (ProE)
CAM (Vericut, Machining Strategist)
rapid prototyping (3D Printing, FDM, SLM and vacuum casting)
reverse engineering (laser scanner and x-ray scanner).

As well as receiving excellent tuition from our world-renowned academics you'll be able to listen to visiting product designers and professors from the Royal Academy of Engineering talk about advanced concepts and case studies.

This programme is fully accredited by the Institution of Mechanical Engineers.

This 12-month programme consists of compulsory and optional taught modules over two semesters and a major design project in the summer. PROJECTS Project work contributes 60 credits, which will be based on a topic of industrial or scientific relevance, and will be carried out in laboratories in the University or at an approved placement in industry. The project is examined by dissertation, and award of the MSc (Eng) degree will require evidence of in-depth understanding, mastery of research techniques, ability to analyse assembled data, and assessment of outcomes.

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This course is designed to respond to a growing shortage of workforce in manufacturing sector. Read more

Why take this course?

This course is designed to respond to a growing shortage of workforce in manufacturing sector. It intends to equip our students with relevant and up-to-date knowledge and skills of advanced design tools, materials, manufacturing processes and systems in conjunction with developing efficient operation and effective management skills. Integrating these will ensure our students to develop the technological and practical ability to meet manufacturing demand for product, company and market needs.

What will I experience?

On this course you can:

Use simulation and modelling application software for virtual design and manufacturing
Utilise our strong links with companies and investigate real industrial problems to enhance your understanding of the profession
Tie in the topic of your individual project with one of our research groups and benefit from the expertise of our actively researching academics

What opportunities might it lead to?

This course has been accredited by the Institution of Mechanical Engineers (IMechE) meeting the standards set by the Engineering Council in the UK Standard for Professional Engineering Competence (UK-SPEC). It will provide you with some of the underpinning knowledge, understanding and skills for eventual registration as an Incorporated (IEng) or Chartered Engineer (CEng).

Here are some routes our graduates have pursued:

Design
Research and development
Product manufacture
Project management

Module Details

This course aims to provide you with the inter-disciplinary knowledge, attributes and skills necessary to apply the principles of advanced manufacturing systems within the manufacturing industry. You will study several key topics and also complete a four-month individual project tailored to your individual interests that can take place in our own laboratories or, by agreement, in industry.

Here are the units you will study:

Integrated Manufacturing Systems: Systems concepts and techniques are developed in logistics and manufacturing areas with a strong emphasis on simulation techniques and practical case study analysis.

Operations and Quality Management: A strategic approach is used with modern inventory and supply chain management and logistics tools and techniques. Management strategies are developed for quality, including quality systems and quality control.

Advanced Materials: This unit is designed to deal with a wide range of advanced materials for engineering applications. Teaching will address analytical and numerical methods to assess the strength, stiffness, toughness, non-linearity behaviours, vibration and failures of engineering materials for component and structure design.

Supply Chain Management: Supply chain management involves the coordination of production, inventory, location and transportation, among participants in a supply chain. This unit considers the principles and tools of supply chain management, with an emphasis on lean six sigma methods.

Virtual Systems Design and Simulation for Production: This unit is particularly designed to enhance students’ analytical knowledge and practical skills focusing on a sustainable development of systematic approaches and lean production methods to support manufacturing systems analysis, design and performance evaluation with an aid of using advanced computer design and modelling simulation tools.

CAD/CAM Systems: An integrated approach is used towards CAD and CAM. Significant practical hands-on experience is given with commercial level software. Emphasis is placed on case study analysis and system selection and evaluation.

Individual Project: A strong feature that comprises a third of the course. You will be encouraged to undertake projects where possible in industrial companies. However, we also use our extensive resources and staff skills to undertake them within the University.

Programme Assessment

You will be taught through a mixture of lectures, seminars, tutorials (personal and academic), laboratory sessions and project work. The course has a strong practical emphasis with a significant amount of your time spent our laboratories. We pride ourselves on working at the leading-edge of technology and learning practices.

A range of assessment methods encourages a deeper understanding of engineering and allows you to develop your skills. Here’s how we assess your work:

Written examinations
Coursework
Laboratory-based project work
A major individual project/dissertation

Student Destinations

The demand for more highly skilled manufacturing engineers is always present and it is generally accepted that there is a current shortage of engineers.

This course has a record of almost 100 per cent of our graduates gaining employment in relevant areas such as manufacturing and logistics management, systems engineering, production engineering, design engineering and project management. You could work for a large company, in the Armed Forces or in one of the many small companies within this sector. You could even start your own specialist company.

Roles our graduates have taken on include:

Manufacturing engineer
Product design engineer
Aerospace engineer
Application engineer

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In today's uncertain global competition platform and economy, manufacturing and engineering are two of the most important pinnacles for a sustainable growth of any country. Read more
In today's uncertain global competition platform and economy, manufacturing and engineering are two of the most important pinnacles for a sustainable growth of any country. Many engineering companies require graduates who can demonstrate not only technological, but also managerial and entrepreneurial skill sets. You will be taught how to select advanced manufacturing processes and materials when making new products, and how to turn innovative ideas into real products quickly, timely and within the constraints of available resources, enhancing your employability.

The MSc will meet, in part, the exemplifying academic benchmark requirements for registration as a Chartered Engineer. Accredited MSc graduates who also have a BEng(Hons) accredited for CEng, will be able to show that they have satisfied the educational base for CEng registration.

Key features

-A balanced syllabus blends aspects of technology and management to create a unique skill set, which is much sought after in industry.
-Academic teaching is also complemented by expert speakers from industry, keeping you up to date with the challenges and developments in the real world.
-Many modules are supported by practical workshops using the latest equipment and software. Such practical skills can easily be transferred into the working environment.

What will you study?

You will learn how to analyse complex technical problems and challenges faced by many real-world engineering companies of different sizes. You will also study the operational issues experienced by these companies through real case studies, and how to implement logical solutions under different scenarios. In addition, you will be able to measure the potentials of an engineering company not just through its technological adaptation but also from the entrepreneur viewpoint.

Throughout the course, you will have many hands-on sessions to practise what you have learned in the classroom. These practical skills will be obtained through using specialist software and hardware in engineering functions analysis, CAD/CAM, finite element modelling, operation management, quality analysis, business decision modelling, supply chain management and resources simulation. The project dissertation will allow you to develop a chosen field of knowledge which will complement your career ambition. Teamwork, group presentations, case studies and industrial speakers are other highlights of the course, enhancing your learning experience and employability.

Assessment

Coursework, group presentation, research project and exam.

Course structure

Please note that this is an indicative list of modules and is not intended as a definitive list.

Core modules
-Engineering Research Techniques, Entrepreneurship and Quality Management
-Advanced CAD/CAM Systems
-Mechatronic Design and Automation
-Engineering Individual Project

Option modules (choose one)
-Advanced Stress Analysis and Materials
-Industrial Operation Management and Resources Simulation
-E-engineering Systems
-Green Engineering and Energy Efficiency

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This course, which is accredited by Royal Aeronautical Society, provides a strategic overview of aerospace engineering and management issues. Read more
This course, which is accredited by Royal Aeronautical Society, provides a strategic overview of aerospace engineering and management issues. It will help you to develop a wider perspective and understanding of the challenges facing the aerospace engineering industry, and includes subjects such as entrepreneurship, business, finance, research techniques and green environmental issues.

What will you study?

You will gain a broad understanding of the practical requirements of aerospace engineering, as well as an in-depth knowledge of aerospace stress analysis and advanced materials, alongside computational fluid dynamics (CFD) for aerospace applications. Complementary subjects covered include computer-integrated product development, advanced CAD/CAM plus green engineering and energy efficiency. In addition, the Engineering Research Techniques, Entrepreneurship and Quality Management module will develop your business and management skills. The Aerospace Group Design Project module provides you with the experience of working in a multidisciplinary team within an engineering organisation – with real industrial constraints. You'll get the chance to apply the theory you've learnt to real-world contexts and evaluate methodologies, whilst developing your critical thinking and creativity.
As well as the professional, analytical and management skills necessary for employment, the course will provide you with the transferable skills required in the workplace, such as communication, IT, teamwork, planning, decision making, independent learning ability and problem solving.

Assessment

Coursework and/or exams, industrial project.

Work placement scheme

Kingston University has set up a scheme that allows postgraduate students in the Faculty of Science, Engineering and Computing to include a work placement element in their course starting from September 2017. The placement scheme is available for both international and home/EU students.
-The work placement, up to 12 months; is optional.
-The work placement takes place after postgraduate students have successfully completed the taught portion of their degree.
-The responsibility for finding the placement is with the student. We cannot guarantee the placement, just the opportunity to undertake it.
-As the work placement is an assessed part of the course for international students, this is covered by a student's tier 4 visa.

Course structure

Please note that this is an indicative list of modules and is not intended as a definitive list.

Core modules
-Engineering Research Techniques, Entrepreneurship and Quality Management
-Computational Fluid Dynamics for Aerospace Applications
-Aerospace Stress Analysis and Advanced Materials
-Aerospace Group Design Project

Option modules (choose one)
-Green Engineering and Energy Efficiency
-Advanced CAD/CAM Systems
-Engineering Projects and Risk Management

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This course is for practising engineers or graduates who want to become technical specialists or managers in industrial and manufacturing companies. Read more

This course is for practising engineers or graduates who want to become technical specialists or managers in industrial and manufacturing companies.

It increases your career potential by improving your

  • knowledge and experience of materials engineering
  • technical and problem solving skills
  • management skills
  • ability to take on greater responsibility

You also develop your understanding of current best practice in the theory and application of leading edge technologies, processes and systems in materials engineering.

You study

  • two management modules
  • five technical modules
  • one optional module

Option modules include advanced manufacturing technology • CAD/CAM • engineering for sustainability • equipment engineering and design • finite element / finite difference analysis

The international product development module involves working in multidisciplinary teams to develop a new product within a global market. This develops much sought after advanced technical and business skills. The project provides a supported environment to develop your ability in an area of your interest.

Professional recognition

This course is accredited by the Institute of Materials, Minerals and Mining (IOM3), on behalf of the Engineering Council for the purposes of partly meeting the academic requirement for registration as a Chartered Engineer; graduates who have a BEng (Hons) accredited for CEng will be able to show that they have satisfied the further learning requirement for CEng accreditation.

Course structure

Core management modules

  • finance and marketing
  • project and quality management

Core technical modules

  • fatigue and fracture mechanics
  • advance investigatory techniques for materials engineers
  • advanced metallic materials
  • competitive materials technology
  • group project – international product development

Option modules

One from

  • advanced manufacturing technology
  • CAD/CAM
  • sustainability energy and environmental management

MSc

  • project and dissertation (60 credits)

Assessment

  • examination
  • coursework
  • project reports

Employability

If you are a new graduate, this course gives you the knowledge and skills to begin a career as a technical specialist in cutting edge materials industries. If you are already employed in materials engineering, it improves you career potential and can lead to roles with greater responsibility. It can also help towards research, consultancy and academic career paths.



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If you’d like to teach design, technology or engineering, but need to brush up on your skills before you start your teacher-training, we can help. Read more

If you’d like to teach design, technology or engineering, but need to brush up on your skills before you start your teacher-training, we can help. This one-year (36-week), accredited, full-time Subject Knowledge Enhancement (SKE) course helps prepare you to train to teach design and technology. Its stimulating combination of creative, practical and technical skills are so useful that some of our most outstanding PGCE graduates are the ones who did this course.

You might be eligible to receive a bursary while on the course.

Work towards teacher-training at Sheffield Hallam

Successfully completing this SKE course qualifies you to do our one year PGCE Design and Technology or PGCE Engineering courses.

An outstanding national reputation

Sheffield Hallam is the UK’s largest provider of design and technology education, which makes it a great place to come for teacher-training: as a result, we enjoy a national reputation for excellence in design and technology.

We are the Design and Technology Association’s regional provider of training to qualified teachers in schools — we deliver that training on electronics and systems control or CAD/CAM. One of our lecturers is also the curriculum advisor to the Design and Technology Association on electronics and systems control.

A remarkable place to learn

One of the exciting things about this course is that it’s not based in our education department but in our Faculty of Arts, Computing, Engineering and Sciences. That means you are based right at the heart of our workshops and studios, surrounded by other students and staff from a range of creative backgrounds and disciplines.

Learn in a variety of ways and settings

This course involves studying full-time for one year at our City Campus, right in the heart of Sheffield. We help you to develop your subject knowledge and your confidence using a range of teaching and learning strategies enhanced by practical work and field study.

Further information

For more information regarding our routes into teaching, including funding, placements, QTS skills tests and career prospects visit our teach site.

Course structure

Modules

  • health and safety
  • visual communication for design
  • timber design and manufacture
  • mechatronics
  • CAD/CAM design and manufacture
  • textile design and manufacture
  • design technology engineering

Employability

Trying to decide about teaching?

We would always recommend that spending some time in a school design and technology department is a valuable experience to help you see the work of a teacher. Many schools are helpful in offering some time where you can shadow a teacher and observe lessons.

Our excellent graduate employment record

We have a superb record for graduate employment: over 90% of our PGCE graduates are teaching or in further study within six months of graduating.

Many students gain employment in the region, thanks to our excellent links with over 600 placement partners. About a third of our students accept a job where they did a placement — you complete two placements, increasing your chances of being offered a job at a place that you already know.

What you’ll be teaching and to whom

Successfully completing this SKE course qualifies you to take our PGCE Design and Technology.

Once you complete your PGCE, you can begin teaching design and technology at Key Stages 3 and 4 (11-16) and 5 (16-18) as well as in the learning and skills sector (also called post-16 or post-compulsory education)



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This MSc programme offers you an advanced level of study in specific aspects of mechanical engineering which are in demand from industry. Read more
This MSc programme offers you an advanced level of study in specific aspects of mechanical engineering which are in demand from industry. It is an ideal bridging programme for those graduates seeking to register as a Chartered Engineer with the Institution of Mechanical Engineers.

Course details

You study the core modules in CAD/CAM and Product Development, Finite Element Methods and Machine Design and you select three additional modules from Automotive Engineering and Vehicle Design, Manufacturing Systems, Project Management and Enterprise, Supply Chain Management and Applied Continuum Mechanics.

Professional accreditation

Our MSc Mechanical Engineering is accredited to CEng level by the Institution of Mechanical Engineers under licence from the UK regulator, the Engineering Council. Accreditation is a mark of assurance that the degree meets the standards set by the Engineering Council in the UK Standard for Professional Engineering Competence (UK-SPEC).

The accredited Masters-level award will provide you with the underpinning knowledge, understanding and skills in preparation for your registration as a Chartered Engineer (CEng). Some employers recruit preferentially from accredited degrees, and an accredited degree is likely to be recognised by other countries that are signatories to international accords.

What you study

For the Postgraduate Diploma (PgDip) award you must successfully complete 120 credits of taught modules. For an MSc award you must successfully complete 120 credits of taught modules and a 60-credit master's research project.

Core modules
-CAD/CAM and Product Developments
-Finite Element Methods
-Machine Design
-Practical Health and Safety Skills
-Project Management and Enterprise
-Research and Study Skills

And three optional modules
-Applied Continuum Mechanics
-Automotive Engineering and Vehicle Design
-Manufacturing Systems
-Supply Chain Management

MSc candidates
-Project

Modules offered may vary.

Teaching

You learn through lectures, tutorials and practical sessions. Lectures provide the theoretical underpinning while practical sessions give you the opportunity to put theory into practice, applying your knowledge to specific problems.

Tutorials and seminars provide a context for interactive learning and allow you to explore relevant topics in depth. In addition to the taught sessions, you undertake a substantive MSc research project.

Assessment varies from module to module. The assessment methodology could include in-course assignments, design exercises, technical reports, presentations or formal examinations. For your MSc project you prepare a dissertation.

Employability

Mechanical engineers typically secure employment in structural engineering, research and development, automotive engineering and design, the aerospace industry, manufacturing, processing and chemical industries as well as management positions.

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Superb industry links and world-class research come together to make Oxford Brookes one of the best places in the UK to study Mechanical Engineering at postgraduate level. Read more
Superb industry links and world-class research come together to make Oxford Brookes one of the best places in the UK to study Mechanical Engineering at postgraduate level. Being in the heart of one of Europe’s highest concentration of high-tech businesses provides opportunities for industry-focused studies.You will take charge of your career by building on your undergraduate degree and developing your professional skills. It introduces you to research, development and practice in advanced engineering design and equips you for professional practice at senior positions of responsibility.You will gain the skills to take complex products all the way from idea to fully validated designs. Using the most advanced CAD packages, you will learn the techniques required to analyse and test your designs followed by full design implementation. Our teaching is centred around our state-of-the-art laboratories in a purpose-designed engineering building.

Why choose this course?

You will be taught by staff with exceptional knowledge and expertise in their fields, including world-leaders in research on sustainable engineering, materials and joining technology and design engineers leading development of novel products such as carbon and bamboo bike. Our research projects and consultancies are done with partners such as Siemens, Yasa Motors, Stannah Stairlifts, 3M etc. using our facilities including analytical and mechanical test equipment, scanning electron microscope and the latest 3D printing technology. Well-funded research programmes in areas of current concern such as modern composite materials, vehicle end-of-life issues and electric vehicles.

Our research incorporates the latest developments within the sector with high profile visiting speakers contributing to our invited research lectures. In REF 2014 57% of the department's research was judged to be of world leading quality or internationally excellent with 96% being internationally recognised. Visiting speakers from business and industry provide professional perspectives, preparing you for an exciting career, for more information see our industrial lecture series schedule. Our close industry links facilitate industrial visits, providing you with opportunities to explore technical challenges and the latest technology - to get a flavour of activities within our department see 2015 highlights.

You will have the opportunity to join our acclaimed Formula Student team (OBR), where you have a chance to put theory into practice by competing with the best universities from around the world. Find out more about Formula Student at Brookes by visiting the Oxford Brookes Racing website.

Professional accreditation

Accredited by the Institution of Mechanical Engineers (IMechE) and The Institute of Engineering and Technology (The IET) as meeting the academic requirements for full Chartered Engineer status.

This course in detail

The course is structured around three periods: Semester 1 runs from September to December, Semester 2 from January to May, and the summer period completes the year until the beginning of September.

To qualify for a master's degree you must pass the compulsory modules, two optional modules and the Dissertation.

Compulsory modules
-Advanced Mechanical Engineering Design
-Advanced Strength of Components
-Advanced Engineering Management

Optional modules
-Computation and Modelling
-CAD/CAM
-Advanced Materials Engineering and Joining Technology
-Sustainable Engineering Technology
-Noise, Vibration and Harshness
-Vehicle Crash Engineering
-Engineering Reliability and Risk Management

The Dissertation (core, triple credit) is an individual project on a topic from motorsport engineering, offering an opportunity to specialise in a particular area of motorsport. In addition to developing a high level of expertise in a particular area of motorsport, including use of industry-standard software and/or experimental work, the module will also provide you with research skills, planning techniques, project management. Whilst a wide range of industry-sponsored projects are available (e.g. Far-Axon, Clayex/Dymola, Tranquillity Aerospace, Norbar, etc.), students are also able undertake their own projects in the UK and abroad, to work in close co-operation with a research, industrial or commercial organisation.

Please note: As our courses are reviewed regularly as part of our quality assurance framework, the choice of modules available may differ from those described above.

Teaching and learning

Teaching methods include lectures and seminars to provide a sound theoretical base, and practical work designed to demonstrate important aspects of theory or systems operation.

Teaching staff are drawn primarily from the Department of Mechanical Engineering and Mathematical Sciences. Visiting speakers from business and industry provide further input.

Careers and professional development

Our graduates enjoy the very best employment opportunities, with hundreds of engineering students having gone onto successful careers in a wide range of industries.

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It aims to produce successful individuals who can. - Understand the whole of the professional design development process and how the initial phases flow to inform the latter stages. Read more

Course Overview

It aims to produce successful individuals who can:
- Understand the whole of the professional design development process and how the initial phases flow to inform the latter stages.

- Appreciate commercial realities and the designer’s role in business.

- Design desirable products for bespoke, batch or mass manufacture.

- Understand sustainability, inclusively, and other important ethical and social issues that must be considered by today’s designers.

- Have traditional design skills such as sketching, dealing with form, communication and innovation.

- Are able to use design tools such as 3D CAD, CAM and rapid prototyping in order to optimise the design and reduce time to market.

The Cardiff School of Art & Design have substantial expertise in the delivery of courses at the interface of engineering and product design whilst the National Centre for Product Design & Development Research is one of the UK’s leading centres for rapid product design & development whose expertise covers the whole process from design management, concept and detailed design, ergonomics and CAD to prototyping, tooling and batch manufacture.

See the website https://www.cardiffmet.ac.uk/artanddesign/courses/Pages/mscapd.aspx

Course Content

MSc students take the following modules:
- APD401M Product Development Principles & Practice (20 Credits)
- APD403M Sustainability Issues in Design for Production (20 Credits)
- MAA7001 Research Methods in Art & Design (20 Credits)
- APD405M User Testing & Evaluation (20 Credits)
- APD406M Form Shape & Colour (20 Credits)
- APD407M Major Project (60 Credits)
- APD408M(A) Industrial Placement (20 Credits)

Each 20 credits is equivalent to 240 learning hours (80 typically are taught and 160 are directed study or independent study).

- Facilities
Dedicated studio space. Cardiff School of Art and Design offers an extensive range of spaces, workshops and equipment, creating a vibrant and creative learning environment, within a new purpose designed building and a fully renovated extension. Workshop and technical facilities include a foundry; and access to other workshops across the full range of Art and Design disciplines. Membership of the Fablab is included in the indicative coursework costs below. Cardiff School of Art and Design has a wide range of tools and equipment for use by students; necessary workshop training in their use includes access to materials used as part of timetabled workshop inductions. You also have access to and use of recycled materials within workshop areas.

Assessment

For each module, assessment is as follows:
- APD401M Product Development Principles & Practice (20 Credits) 6000 word equivalent assignment. This will normally be a written assignment.

- APD403M Sustainability Issues in Design for Production (20 Credits) 6000 word equivalent. This module will typically be assessed via a design project. A proportion of the assignment may however be awarded for written or presentatio​n work.

- MAA7001 Research Methods in Art & Design (20 Credits) Written submission, plus seminar presentation, typically 3,000 words plus a 10-20 minute presentation.

- APD405M User Testing & Evaluation (20 Credits) 6000 word equivalent. This module may be linked with others in order to provide a design project vehicle. In any case it will involve practical exercises and a proportion if not all of the assignment may be awarded for written or presentation work.

- APD406M Form Shape & Colour (20 Credits) 6000 word equivalent. This project is likely to be assessed through practical design activity, although a proportion of the assignment may be awarded for written or presentation work.

- APD407M Major Project (60 Credits). 18,000-word equivalent. Performance will be measured using the Final Report, Formal Presentation, Viva Voce examination and final product. Of the marks that are available for the project the allocation of the marks to each of the measures is as follows:

Final Report: 40%

Final Product (prototype): 40%

Formal Presentation: 5%

Viva Voce: 15%

- APD408M(A) Industrial Placement (20 Credits) 6000 word equivalent. A 3000 word ( maximum) report reflecting on the student’s experience within the professional working environment. A reflective placement Logbook (or Blog equivalent) recording critical reflections on events, activities and experiences. Important Note: Because of the difficulties of assessment in the workplace and the potential for disparity of treatment, this module is not awarded a mark other than “Pass” or “Fail”.

Support will be available through weekly small group seminars (normally no more than 16 students per group), exploring the theme of lectures and allowing students to clarify their understanding.

These sessions may also be workshops where practical demonstrations, involving student participation, are run. This may include, for example, communal writing or small group discourse analysis. Weekly tutorials will also be available.

Employability & Careers

Your year(s) of study with us enable you to develop professional contacts, observe how successful practitioners make their living, and hone your skills and ideas for commercial and professional advantage. Such cross-disciplinary collaborations prepare you for a world where you will inevitably work with people from all walks of life. Your live projects and assessments will get you accustomed to the importance of deadlines and working to specific briefs and tight specifications.

Over the next few years, CSAD will be developing opportunities for incubation of business proposals from its graduates and postgraduate training to get business opportunities up and running.

All students’ are expected to complete a portable ‘record of achievement’ and use their PDP to support employability and life-long learning, normally in the form of a blog, that integrates opportunities for self-reflection in programmes in order to help them develop as effective and confident learners.

Find information on Scholarships here https://www.cardiffmet.ac.uk/scholarships

Find out how to apply here https://www.cardiffmet.ac.uk/howtoapply

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The global environmental and energy challenge facing current and future generations of architects and building professionals calls for a deeper understanding of the principles of environmental design, and their effective application into architectural practice worldwide. Read more
The global environmental and energy challenge facing current and future generations of architects and building professionals calls for a deeper understanding of the principles of environmental design, and their effective application into architectural practice worldwide. Over the last decades environmental design as a subject area has developed, responding to new research and experimentation, both in academia and in practice. However, buildings claiming to be environmentally conscious do not perform to the expected standards, still heavily contributing to global CO2 emissions and often providing unsatisfactory comfort conditions to occupants. The same can be said for the existing built environment which is largely outdated and underperforming, requiring urgent implementation of effective retrofit strategies. This is due to a lack of comprehensive performance prediction and feedback protocols, which are still not common practice in architectural design.

Course content

Students on this course will take a fresh critical look at this subject. Here you will gain the knowledge and tools to make informed design decisions based on post-occupancy feedback and performance analysis, towards a new paradigm of environmental architecture, which is environmentally and energy conscious, yet sensitive to the contextual and socio-cultural landscape we live in. You will learn environmental design methods which relate to the various stages of architectural design. You will be able to evaluate existing buildings and design new ones following a combined bioclimatic and building occupant focused approach. In the core design modules you will follow an evidence based design approach where the acquisition of specialised software and analytical tools will be directly applied to an evaluation or design project.

Architecture and Environment Design MScThis interdisciplinary and international course will provide you with skills that can be applied to diverse building typologies and global climatic, environmental and contextual issues. On completion of this course you will have a thorough understanding of the principles and methodology of environmental design and will develop critical thinking skills to challenge established practices. You will hold the knowledge and the practical tools to better understand existing buildings for retrofit and to design new ones – positively driving change in this field and moving towards a truly environmentally conscious architecture.

The course covers both the wider contextual and sustainable approach to environmental design, and the more technical aspects of environmentally and energy conscious building design and performance. As well as taught modules, you will take design-based modules where you will apply quantitative and qualitative analysis to the study of existing built environments and to new design projects.

Modules

The following modules are indicative of what you will study on this course.
-EVALUATION OF BUILT ENVIRONMENTS
-PRINCIPLES OF ENVIRONMENTAL DESIGN
-THEORY AND HISTORY OF ENVIRONMENTAL DESIGN
-ENVIRONMENTAL AND ENERGY MODELLING
-THESIS PROJECT

Facilities

The course is delivered at our central London Marylebone Campus, which is easily accessible by all forms of public transport. Design work is developed within dedicated studio spaces. In addition to an extensive CAD lab, a complete suite of 100 computers has been installed in the design studios to the highest specification and with all the latest software. Together, these facilities offer a wide range of drawing, graphics and video applications. The new Fabrication Laboratory includes state-of-the-art CAD-CAM equipment in shape of several 3D printers, laser-cutting machines and computer-controlled drilling machines. Metalworking and woodworking workshops, as well as other support facilities are also available. The course also has access to an environmental laboratory which contains a wide range of testing and monitoring equipment for assessing environmental conditions such as temperature, humidity, day-lighting, air velocity and sound; and surveying equipment. An Artificial Sky for the physical modelling and analogue simulation of daylighting is also under construction

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With the need for manufacturing organisations to remain highly competitive lean and agile manufacturing strategies play a pivotal role in ensuring organisations manage the extended enterprises in which they operate to maximum effectiveness and efficiency. Read more
With the need for manufacturing organisations to remain highly competitive lean and agile manufacturing strategies play a pivotal role in ensuring organisations manage the extended enterprises in which they operate to maximum effectiveness and efficiency. This course aims to develop and equip individuals from a wide variety of backgrounds with the necessary skills to perform as a competent manager in a production and -manufacturing organisation.

Course Overview

This programme reflects the current industrial demand for expertise in lean and agile manufacturing techniques. This programme involves activities that play a key role in managing the extended enterprise. This programme involves activities that focus on designing products and processes for manufacturing, while managing risk at the design stage of product development and process planning.

The discipline embraces areas such as supply chain management and logistics which are key to competing in global markets and providing world class service. The programme aims to provide students with the knowledge of key procedures in international trade and how organisations can reduce their environmental impact throughout the supply chain and manufacturing operations. Key areas of quality and purchasing form an integral part of the course where a range of tools and techniques are developed that can be used to improve performance and competitive advantage.

Modules

Part 1
-Lean and Agile Manufacturing
-Logistics and Supply Chain Management
-Quality Engineering
-Advanced CAD/CAM
-Design for Manufacture
-Purchasing and Inventory Management
-Leadership, Product Development and Innovation
-Research Methods

Part 2
-Major Project

Key Features

The School of Logistics and Manufacturing Engineering prides itself on providing a supportive and friendly learning environment enhanced by the excellent industrial experience of the programme team, many of whom have many years experience in industry at a senior level. This knowledge and experience has enabled all of our graduates to further their careers which they have attributed to a caring and dedicated programme team that can relate to the issues in the workplace.

Class sizes are generally around 25 students which creates an environment where students can foster ideas and discuss issues that they have in common with their fellow students. Our extensive engagement with employers and professional institutions means we are able to enhance our graduate’s employment and career prospects. Many of our students have received promotions while undertaking their studies and every graduate has gone on to further their careers. Our vision for students, is to create an environment that will enable them to achieve their goals and enhance their careers and earning potential.

Assessment

Assessment used within this programme is usually formative or summative. Assessments are designed to develop students’ ability to practice a wide range of tools and techniques and to see the strategic implications of decisions and problems. These typically take the form of case studies, research and critical evaluation exercises and practical work based reports to resolve problems, develop a purchasing or quality strategy, for example. In some modules students are required to present their research/findings to their lecturer’s and peers followed by a question and answer session. Such assessment strategies are utilised by the course team to generate student driven work.

Career Opportunities

This programme provides graduates with a wide range of professional skills and competencies that are transferable within business sectors and from sector to sector. Oral and written skills are developed enabling individuals to grow in confidence through the programme of study.

Typical career opportunities are shift manager, production supervisor, engineering manager, quality manager, planning and scheduling manager, operations manager/director. All of our graduates who have studied part-time have received promotion while studying or after completing their studies, which they have attributed to their qualification. Younger graduates have found that their employment prospects where enhanced and they were able to gain employment as a line engineer, quality engineer and supply chain specialist. A number of major companies have now recognised this course as a key requisite in order to gain promotion or hold a particular role.

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This course is offered in response to sustained international demand for highly skilled graduates in mechanical engineering for manufacturing and process engineering industries. Read more
This course is offered in response to sustained international demand for highly skilled graduates in mechanical engineering for manufacturing and process engineering industries. On completion of the course, you will be able to:

- show a thorough understanding of the principles and theoretical bases of modern manufacturing techniques, automation, and production processes
- identify appropriate manufacturing systems for different production requirements and analyse their performance
- apply appropriate technology, quality tools and manufacturing methodology to design, re-design and continuously improve the manufacturing operations of engineering companies
- plan, research, execute and oversee experiments and research projects, critically analyse and interpret data, and effectively disseminate results
- work effectively as a member of a multidisciplinary team, be self-motivated, able to work independently and demonstrate leadership

Visit the website: http://www.ucc.ie/en/ckr27/

Course Details

The course is 12 months in duration starting in September and consists of 60 credits in Part I from September to March, and 30 credits in Part II from June to September. You take 10 taught modules from the list below to the value of 50 credits and also undertake a preliminary research project (ME6019) worth 10 credits in Part I. If you obtain a minimum of 50% in the taught modules and the preliminary project, you will be eligible to progress to Part II and undertake a major four-month research project (ME6020) worth 30 credits, and submit a dissertation leading to the award of the MEngSc degree.

ME6001 Manufacturing Systems (5 credits)
ME6002 CAD/CAM (5 credits)
ME6003 Production Management (5 credits)
ME6004 Operations Research and Project Economics (5 credits)
ME6007 Mechanical Systems (5 credits)
ME6008 Mechatronics and Robotics (5 credits)
ME6009 Industrial Automation and Control (5 credits)
ME6010 Technology of Materials (5 credits)
ME6012 Advanced Robotics (5 credits)
PE6002 Process Automation and Optimisation (5 credits)
PE6003 Process Validation and Quality (5 credits)
PE6007 Mechanical Design of Process Equipment (5 credits)
PE6009 Pharmaceutical Engineering (5 credits)
CE3010 Energy in Buildings (5 credits)
CE4016 Energy Systems in Buildings (5 credits)
CE6024 Finite Element Analysis (5 credits)
EE4012 Biomedical Design (5 credits)

Further details on the content and modules are available on the Postgraduate College Calendar - http://www.ucc.ie/calendar/postgraduate/Masters/engineering/page05.html

Format

Each module typically consists of 24 lectures, 12 hours of continuous assessment, plus additional supplemental reading and study, carried out over one of two 12-week semesters from September to December (Semester 1), or January to March (Semester 2). The exact workload in each teaching period will depend on the choice of modules. In addition, a substantial weekly commitment to the project module ME6019 is expected over both semesters.

Assessment

Individual modules have different methods of assessment but this typically consists of a single end-of-semester examination in December or April/May, plus continuous assessment throughout the relevant semester. This continuous assessment may consist of a combination of in-class tests, formal laboratories or practicals, design exercises, project work, written reports and presentations. Any repeat examinations are held in August.

Students who pass but fail to achieve an average mark of at least 50% across the taught modules excluding the Preliminary Research Project (ME6019) or do not achieve a mark of at least 50% in the Preliminary Research Project (ME6019) will be eligible for the award of a Postgraduate Diploma in Mechanical Engineering (Manufacturing, Process and Automation Systems). Candidates passing Part I of the programme who do not wish to proceed to Part II may opt to be conferred with a Postgraduate Diploma in Mechanical Engineering (Manufacturing, Process and Automation Systems).

Careers

In response to increasing demand for highly skilled graduates in the field of mechanical engineering applied to the manufacturing and pharma-chem industries, this course will produce mechanical engineering postgraduates who are proficient in the development and realisation of modern manufacturing, process and automation systems. This is achieved through developing an understanding of the concepts of manufacturing systems, and the skills to analyse, design and implement manufacturing systems in practice. This is combined with an understanding of process automation and operational management. The course will equip you with an-up-to date knowledge of manufacturing techniques and processes.

How to apply: http://www.ucc.ie/en/study/postgrad/how/

Funding and Scholarships

Information regarding funding and available scholarships can be found here: https://www.ucc.ie/en/cblgradschool/current/fundingandfinance/fundingscholarships/

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Mechanical engineering is the basis of just about anything that has movable parts, which includes areas like transport (automotive, railway, aerospace), renewable energy, and manufacturing. Read more
Mechanical engineering is the basis of just about anything that has movable parts, which includes areas like transport (automotive, railway, aerospace), renewable energy, and manufacturing. These areas will continue to be important to the UK economy and to all developed economies.

The taught part of this course consists of six compulsory modules. An individual industrial project allows you to extend your knowledge by exploring an area that interests you, whilst giving experience of the way in which a complete product or process requirement would be addressed.

The PgDip covers a selection of taught modules, with no individual project. Students may progress to an MSc given good results.

Modules
• Intelligent System Control
• Mechanics and Actuators
• Advanced CAD/CAM
• Design and Modelling of Systems
• Renewable Energy
• Linking Group Project
• Individual Project

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