• Swansea University Featured Masters Courses
  • Ross University School of Veterinary Medicine Featured Masters Courses
  • University of Edinburgh Featured Masters Courses
  • Anglia Ruskin University Featured Masters Courses
  • University of Edinburgh Featured Masters Courses
  • Goldsmiths, University of London Featured Masters Courses
  • University of Southampton Featured Masters Courses
  • Jacobs University Bremen gGmbH Featured Masters Courses
Cranfield University Featured Masters Courses
FindA University Ltd Featured Masters Courses
Imperial College London Featured Masters Courses
Barcelona Technology school Featured Masters Courses
Swansea University Featured Masters Courses
"software" AND "developer…×
0 miles

Masters Degrees (Software Developer)

We have 96 Masters Degrees (Software Developer)

  • "software" AND "developer" ×
  • clear all
Showing 1 to 15 of 96
Order by 
Visit our website for more information on fees, scholarships, postgraduate loans and other funding options to study Logic and Computation at Swansea University - 'Welsh University of the Year 2017' (Times and Sunday Times Good University Guide 2017). Read more

Visit our website for more information on fees, scholarships, postgraduate loans and other funding options to study Logic and Computation at Swansea University - 'Welsh University of the Year 2017' (Times and Sunday Times Good University Guide 2017).

Logic is the basis for reasoning about what we can express and compute, having a profound influence in philosophy, linguistics, mathematics, computer science, and electronics. Since the invention of computers, logic has always been the primary source of ideas and techniques for the theoretical and practical development of programming.

Today, as the scope of programming technologies expands, and the horizon of applications widens, research in logic and its applications in software and hardware development is booming. In industry, formal methods are an integral part of system development, e.g., in automotive electronics, avionics, and chip design.

The MRes Logic and Computation course will teach you about advanced techniques in logic and their applications in research problems in computer science. You will receive an elite education of direct relevance to research and development problems in contemporary information and communication technology (ICT).

Key Features

Teaching score of Excellent.

Highest percentage of top-class researchers of any Computer Science department in Wales – and only 12 in the UK have higher.

70% of the research activity assessed as world-leading or internationally excellent.

Our industrial programme IT Wales which can arrange vacation employment placements.

A state-of-the-art education.

Friendly staff, committed to the highest standards.

A university with high success rate, low drop-out rate, and excellent student support.

Swansea's Library spends more per student on books and other resources than any other university in Wales, and most in the UK.

Course Content

Research Component

The main part of the MRes in Logic and Computation is a substantial and challenging project involving cutting edge research. The completion of such a project will give you the ability and confidence to pursue a successful career in industrial research and development, or to proceed to academic PhD studies.

Taught Component

In seminars and reading courses you will enter the world of research by studying general topics in theoretical computer science as well as special topics for your research project. Guided by your supervisor you will conquer new technical subjects and learn to critically assess current research.

Lecturers and students will meet regularly to discuss recent developments and give informal talks. Topics of the seminars are chosen in accordance with the research projects, and will cover material such as:

Theorem proving techniques

Formal program verification

Algebraic and coalgebraic specification

Modelling of distributed systems

Advanced methods in complexity theory

Additionally you will choose selected taught modules covering important topics such as Critical Systems, IT Security, Concepts of Programming

Languages, Artificial Intelligence Applications, Design Patterns and Generic Programming.

Facilities

The Department is well equipped for teaching, and is continually upgrading its laboratories to ensure equipment is up-to-date – equipment is never more than three years old, and rarely more than two. Currently, students use three fully networked laboratories: one, running Windows; another running Linux; and a project laboratory, containing specialised equipment. These laboratories support a wide range of software, including the programming languages Java, C# and the .net framework, C, C++, Haskell and Prolog among many; integrated programme development environments such as Visual Studio and Netbeans; the widely-used Microsoft Office package; web access tools; and many special purpose software tools including graphical rendering and image manipulation tools; expert system production tools; concurrent system modelling tools; World Wide Web authoring tools; and databases.

Careers

All Computer Science courses will provide you the transferable skills and knowledge to help you take advantage of the excellent employment and career development prospects in an ever growing and changing computing and ICT industry.

90% of Swansea’s Computer Science graduates are in full-time employment or further study within six months of graduating (HESA June 2011).

Some example job titles from the HESA survey 2011:

Software Engineer: Motorola Solutions

Change Coordinator: Logica

Software Developer/Engineer: NS Technology

Workflow Developer: Irwin Mitchell

IT Developer: Crimsan Consultants

Consultant: Crimsan Consultants

Programmer: Evil Twin Artworks

Web Developer & Web Support: VSI Thinking

Software Developer: Wireless Innovations

Associate Business Application Analyst: CDC Software

Software Developer: OpenBet Technologies

Technical Support Consultant: Alterian

Programming: Rock It

Software Developer: BMJ Group

Research

The results of the Research Excellence Framework (REF) 2014 show that Swansea Computer Science ranked 11th in the UK for percentage of world-leading research, and 1st in Wales for research excellence. 40% of our submitted research assessed as world-leading quality (4*).



Read less
Visit our website for more information on fees, scholarships, postgraduate loans and other funding options to study Computer Science. Read more

Visit our website for more information on fees, scholarships, postgraduate loans and other funding options to study Computer Science: Informatique at Swansea University - 'Welsh University of the Year 2017' (Times and Sunday Times Good University Guide 2017).

The MSc in Computer Science: Informatique is a Dual Degree scheme between Swansea University and Université Grenoble Alpes for computer science.

The MSc in Computer Science: Informatique Grenoble dual degree scheme is a two year programme that provides students with an opportunity to study in both Swansea, UK and Grenoble, France. One year of the Computer Science: Informatique programme students study at Swansea University and the second year of the programme students study at Université Grenoble Alpes. Upon successful completion of the programme, students will receive an M.Sc. in Advanced Computer Science from Swansea University and a Master from Université Grenoble Alpes.

Key Features of Computer Science: Informatique MSc

- We are top in the UK for career prospects [Guardian University Guide 2018]

- 5th in the UK overall [Guardian University Guide 2018]7th in the UK for student satisfaction with 98% [National Student Survey 2016]

- We are in the UK Top 10 for teaching quality [Times & Sunday Times University Guide 2017]

- 12th in the UK overall and Top in Wales [Times & Sunday Times University Guide 2017]

- 92% in graduate employment or further study six months after leaving University [HESA data 2014/15]

- UK TOP 20 for Research Excellence [Research Excellence Framework 2014]

- Our Project Fair allows students to present their work to local industry

- Strong links with industry

- £31m Computational Foundry for computer and mathematical sciences will provide the most up-to-date and high quality teaching facilities featuring world-leading experimental set-ups, devices and prototypes to accelerate innovation and ensure students will be ready for exciting and successful careers. (From September 2018)

- Top University in Wales [Times & Sunday Times University Guide 2017]

Modules of Computer Science: Informatique MSc

Modules on the MSc in Computer Science: Informatique may include:

Critical Systems; IT-Security: Theory and Practice; Visual Analytics; Data Science Research Methods and Seminars; Big Data and Data Mining; Data Visualization; Human Computer Interaction; Big Data and Machine Learning; Web Application Development; High Performance Computing in C/C++; Software Testing; Graphics Processor Programming; Embedded System Design; Mathematical Skills for Data Scientists; Logic in Computer Science; Computer Vision and Pattern Recognition; High-Performance Computing in C/C++; Hardware and Devices; Modelling and Verification Techniques; Operating Systems and Architectures.

Facilities

The Department of Computer Science is well equipped for teaching, and is continually upgrading its laboratories to ensure equipment is up-to-date – equipment is never more than three years old, and rarely more than two. Currently, Computer Science students use three fully networked laboratories: one, running Windows; another running Linux; and a project laboratory, containing specialised equipment. These laboratories support a wide range of software, including the programming languages Java, C# and the .net framework, C, C++, Haskell and Prolog among many; integrated programme development environments such as Visual Studio and Netbeans; the widely-used Microsoft Office package; web access tools; and many special purpose software tools including graphical rendering and image manipulation tools; expert system production tools; concurrent system modelling tools; World Wide Web authoring tools; and databases.

As part of our expansion, we are building the Computational Foundry on our Bay Campus for computer and mathematical sciences. This development is exciting news for Swansea Mathematics who are part of the vibrant and growing community of world-class research leaders drawn from computer and mathematical sciences.

Careers

All Computer Science courses will provide you the transferable skills and knowledge to help you take advantage of the excellent employment and career development prospects in an ever growing and changing computing and ICT industry.

94% of our Postgraduate Taught Computer Science Graduates were in professional level work or study [DLHE 14/15].

Some example job titles include:

Software Engineer: Motorola Solutions

Change Coordinator: Logica

Software Developer/Engineer: NS Technology

Workflow Developer: Irwin Mitchell

IT Developer: Crimsan Consultants

Consultant: Crimsan Consultants

Programmer: Evil Twin Artworks

Web Developer & Web Support: VSI Thinking

Software Developer: Wireless Innovations

Associate Business Application Analyst: CDC Software

Software Developer: OpenBet Technologies

Technical Support Consultant: Alterian

Programming: Rock It

Software Developer: BMJ Group

Research

The results of the Research Excellence Framework (REF) 2014 show that Swansea Computer Science ranked 11th in the UK for percentage of world-leading research, and 1st in Wales for research excellence. 40% of our submitted research assessed as world-leading quality (4*).



Read less
The Advanced Software Engineering MSc is a newly redesigned course that enables graduates enable students to extend their knowledge of, and gain valuable experience in, software engineering as it applies to a number of new and important areas of IT and computing. Read more
The Advanced Software Engineering MSc is a newly redesigned course that enables graduates enable students to extend their knowledge of, and gain valuable experience in, software engineering as it applies to a number of new and important areas of IT and computing.

Graduates will be able to follow a flexible program of study designed to lead to, and enhance, a career in software engineering with a focus on new technologies and areas of application, such as cybersecurity, big data, or mobile application development.

The rapid pace of technical change in software development is notorious and this has been accompanied and compounded by an increase in the complexity of the systems that are developed. Recently this has been most noticeable in the increase in mobile computing and the use of sophisticated hardware that require developer knowledge of new paradigms.

Many applications that run on these systems whether mobile or stationary are distributed in nature and will consume web services provided by service-oriented architectures and cloud-based platforms. There has also been an increase in the use of virtualisation techniques for providing flexible and maintainable systems. Businesses are now regularly using virtualised systems and techniques to lower cost and complexity and increase availability in computing environments.

The surge in cybersecurity issues and threats facing businesses and organisations that depend on IT systems has meant that software engineers need a thorough understanding of security when building and maintaining software applications and systems.

There is an acknowledged national shortage of IT and computing skills in the workforce. In the specific area of software development, a number of factors contribute to this. Most obviously, the rate of technological change means that an individual's specific knowledge frequently becomes out of date. Secondly, many significant technological developments originate in industry rather than academia, and are not yet firmly embedded in undergraduate curricula. Finally, many people enter the software industry without a specific educational background in computer science and acquire much vital knowledge in the workplace in relatively ad hoc ways.

In response to this, for many years the Department of Computer Science has been running courses that combine an emphasis on methodical approaches to the development of software applications and information systems with a determination to equip graduates with a portfolio of relevant research-oriented and practical skills and knowledge to compliment and expand their own knowledge.

The rationale behind the MSc in Advanced Software Engineering is to draw on this experience to provide an education that will cover in-depth specific skills and best current practice in software development where there is currently a significant skills shortage, whilst at the same time instilling important research-based skills that will equip students for independent lifelong learning in fast-changing and technically challenging environment.

Course content

The Masters of Science in Advanced Software Engineering takes into account the emerging needs of industry underpinned by theory and software engineering practices. As a consequence the modules emphasise both the critical conceptual underpinnings as well as the practical skills for each subject.

Modules

The following modules are indicative of what you will study on this course.

Core modules
-ADVANCED SOFTWARE DESIGN
-ENTERPRISE DEVELOPMENT
-CONCURRENCY AND PARALLELISM
-RESEARCH METHODS AND PROFESSIONAL PRACTICE
-ADVANCED SOFTWARE ENGINEERING PROJECT

Option modules - In addition you will pursue a pathway of your choice, selected with the guidance and advice of our academic staff. You can chose up to five of the following pathways modules:
-BIG DATA THEORY AND PRACTICE
-ADVANCED BIG DATA ANALYTICS
-CLOUD COMPUTING APPLICATIONS
-DATA MINING & MACHINE LEARNING
-DATA VISUALISATION AND DASHBOARDING
-CYBERSECURITY THREATS AND COUNTERMEASURES
-INTERNET SECURITY
-MOBILE APPLICATION DEVELOPMENT
-MOBILE AND UBIQUITOUS COMPUTING
-USABILITY AND USER EXPERIENCE DESIGN
-FREE CHOICE MODULE

Associated careers

Graduates will typically be part of a team working on sophisticated n-tier applications, as a designer, programmer, systems administrator or systems analyst (among others). Graduates will also find positions within new and established businesses that specialise in mobile applications. Other roles are possible in computer science research for either a commercial enterprise or academic institution. Further PhD study opportunities within the University of Westminster are also an option.

Read less
The Advanced Software Engineering MSc is a newly redesigned course that enables graduates enable students to extend their knowledge of, and gain valuable experience in, software engineering as it applies to a number of new and important areas of IT and computing. Read more
The Advanced Software Engineering MSc is a newly redesigned course that enables graduates enable students to extend their knowledge of, and gain valuable experience in, software engineering as it applies to a number of new and important areas of IT and computing.

Graduates will be able to follow a flexible program of study designed to lead to, and enhance, a career in software engineering with a focus on new technologies and areas of application, such as cybersecurity, big data, or mobile application development.

The rapid pace of technical change in software development is notorious and this has been accompanied and compounded by an increase in the complexity of the systems that are developed. Recently this has been most noticeable in the increase in mobile computing and the use of sophisticated hardware that require developer knowledge of new paradigms.

Many applications that run on these systems whether mobile or stationary are distributed in nature and will consume web services provided by service-oriented architectures and cloud-based platforms. There has also been an increase in the use of virtualisation techniques for providing flexible and maintainable systems. Businesses are now regularly using virtualised systems and techniques to lower cost and complexity and increase availability in computing environments.

The surge in cybersecurity issues and threats facing businesses and organisations that depend on IT systems has meant that software engineers need a thorough understanding of security when building and maintaining software applications and systems.

There is an acknowledged national shortage of IT and computing skills in the workforce. In the specific area of software development, a number of factors contribute to this. Most obviously, the rate of technological change means that an individual's specific knowledge frequently becomes out of date. Secondly, many significant technological developments originate in industry rather than academia, and are not yet firmly embedded in undergraduate curricula. Finally, many people enter the software industry without a specific educational background in computer science and acquire much vital knowledge in the workplace in relatively ad hoc ways.

In response to this, for many years the Department of Computer Science has been running courses that combine an emphasis on methodical approaches to the development of software applications and information systems with a determination to equip graduates with a portfolio of relevant research-oriented and practical skills and knowledge to compliment and expand their own knowledge.

The rationale behind the MSc in Advanced Software Engineering is to draw on this experience to provide an education that will cover in-depth specific skills and best current practice in software development where there is currently a significant skills shortage, whilst at the same time instilling important research-based skills that will equip students for independent lifelong learning in fast-changing and technically challenging environment.

Course content

The Masters of Science in Advanced Software Engineering takes into account the emerging needs of industry underpinned by theory and software engineering practices. As a consequence the modules emphasise both the critical conceptual underpinnings as well as the practical skills for each subject.

Modules

The following modules are indicative of what you will study on this course.

Core modules
-ADVANCED SOFTWARE DESIGN
-ENTERPRISE DEVELOPMENT
-CONCURRENCY AND PARALLELISM
-RESEARCH METHODS AND PROFESSIONAL PRACTICE
-ADVANCED SOFTWARE ENGINEERING PROJECT

Optional modules - In addition you will pursue a pathway of your choice, selected with the guidance and advice of our academic staff. You can chose up to five of the following pathways modules:
-BIG DATA THEORY AND PRACTICE
-ADVANCED BIG DATA ANALYTICS
-CLOUD COMPUTING APPLICATIONS
-DATA MINING & MACHINE LEARNING
-DATA VISUALISATION AND DASHBOARDING
-CYBERSECURITY THREATS AND COUNTERMEASURES
-INTERNET SECURITY
-MOBILE APPLICATION DEVELOPMENT
-MOBILE AND UBIQUITOUS COMPUTING
-USABILITY AND USER EXPERIENCE DESIGN
-FREE CHOICE MODULE

Associated careers

Graduates will typically be part of a team working on sophisticated n-tier applications, as a designer, programmer, systems administrator or systems analyst (among others). Graduates will also find positions within new and established businesses that specialise in mobile applications. Other roles are possible in computer science research for either a commercial enterprise or academic institution. Further PhD study opportunities within the University of Westminster are also an option.

Read less
This MSc provides an ideal foundation for graduates who wish to pursue a career as software engineers. Read more
This MSc provides an ideal foundation for graduates who wish to pursue a career as software engineers. The programme provides the opportunity to undertake a significant group software engineering project sponsored by a financial services company, allowing students to specialise in software systems engineering from a financial computing perspective.

Degree information

Students gain instruction in all aspects of software engineering needed for the development of large, complex, highly dynamic, distributed software-intensive systems. The programme covers requirements engineering, software design, validation and verification, tools for the development of software intensive systems, and provides instruction in financial information systems.

Students undertake modules to the value of 180 credits.

The programme consists of seven core modules (105 credits), one optional module (15 credits) and a group project (60 credits).

Core modules
-Requirements Engineering and Software Architecture
-Software Abstractions and Systems Integration
-Validation and Verification
-Tools and Environments
-Financial Institutions and Markets
-Professional Practice
-Financial Information Systems

Optional modules
-Compliance, Risk and Regulation
-People and Security
-Networked Systems
-Distributed Systems and Security

Dissertation/report
All students participate in a group project, encompassing the full software development lifecycle and applying techniques learned, such as the technical skills of analysis, design and implementation.

Teaching and learning
The programme is delivered through a combination of lectures, written and laboratory exercises, and project work. Student performance is assessed through written exercises with modelling notations, laboratory exercises with tools and environments, unseen examination papers, and a significant, comprehensive group project.

Careers

This professionally oriented programme provides an ideal foundation for graduates who wish to pursue a career as a software architect or leader of software development organisations. It also provides an excellent introduction for those who want to pursue research in software systems engineering.

Graduates from UCL are keenly sought by the world's leading organisations, and many progress in their careers to secure senior and influential positions. UCL Computer Science graduates are particularly valued as a result of the department's international reputation, strong links with industry, and ideal location close to the City of London.

Graduates have found positions at global companies such as RBS and UBS.

Top career destinations for this degree:
-IT Developer, Microsoft
-Financial Assistant, ZhenHua Oil
-Software Engineer, Epsilon Net
-International Company Law, Université Paris-Sorbonne (Paris-Sorbonne University)
-MBA (Master of Business Administration), IFMR (Institute of Financial Management and Research)

Employability
There is, throughout the world, a strong demand for software engineers with solid foundations covering not only the programming aspects of software development, but also aspects related to requirements engineering, software architectures, system integration, and testing. Many surveys rank software engineering positions as among the best jobs in the world.

Following graduation, our students are generally hired as software engineers or software architects by large financial institutions, sometimes by institutions they have engaged with in the context of their MSc project.

Why study this degree at UCL?

UCL Computer Science is recognised as a world leader in teaching and research, and was one of the top-rated departments in the country according to the UK government's recent research assessment exercise.

Our Master's programmes have some of the highest employment rates and starting salaries, with graduates entering a wide variety of industries from entertainment to finance.

We take an experimental approach to our subject and place a high value on our extensive range of industrial collaborations. In the recent past, students have worked on projects and coursework in collaboration with Microsoft, IBM, and financial institutions such as JP Morgan, Citigroup and BNP Paribas.

Read less
The Computer Science MSc provides a balance between computer science theory and practical software engineering skills, including teamwork for industrial or research clients. Read more
The Computer Science MSc provides a balance between computer science theory and practical software engineering skills, including teamwork for industrial or research clients. Graduates find employment in the IT industry, or complement their first degree subject with computer science knowledge, leading to interdisciplinary industrial positions and PhD research.

Degree information

You will learn fundamental aspects on how computers work by taking modules in computer architecture, operating systems, compilers, data structures and algorithms. You will also gain practical knowledge in areas such as human-computer interaction, App design, databases and software engineering. You will develop programming skills in modern languages, such as object-oriented Java for Android development.

Team working, project planning and communication skills are developed by working in small groups developing software for real industrial and research clients. Optional modules allow specialisation in subjects such as functional programming, computer music, entrepreneurship and artificial intelligence.

Students undertake modules to the value of 180 credits.

The programme consists of five core modules (75 credits), three optional modules (45 credits) and a research project (60 credits).

Core modules
-Introductory Programming
-Apps Design
-Architecture and Hardware
-Systems Infrastructure
-Algorithmics

Optional modules
-Artificial Intelligence and Neural Networks
-Computer Music
-Database Systems
-Entrepreneurship: Theory and Practice
-Functional Programming
-Interaction Design
-Software Engineering
-Project Management

Dissertation/report
All students undertake an independent computer-based science project which culminates in a dissertation in the form of a project report.

Teaching and learning
The programme is delivered through a combination of lectures and tutorials. Lectures are often supported by laboratory work with help from demonstrators. Student performance is assessed by unseen written examinations, coursework and a substantial individual project.

Careers

Graduates from UCL are keenly sought by the world's leading organisations, and many progress in their careers to secure senior and influential positions. UCL Computer Science graduates are particularly valued as a result of the department's strong international reputation, strong links with industry, and ideal location close to the City of London. Our graduates secure careers in a wide variety of organisations; for example with global IT consultancies, as IT analysts with City banks, or as IT specialists within manufacturing industries.

Top career destinations for this degree:
-IT Consultant, BAE Systems
-Software Developer, Arts Alliance Media
-User Experience Designer / User Interface Developer, Retechnica
-Senior Consultant, EY
-Software Developer, Tryzens

Employability
This degree opens up many different career routes. Recent graduates have been employed by some of the world's leading IT companies such as Accenture, Barclays Capital and Credit Suisse. The entrepreneurial spirit is ignited in other students and they may either start their own companies or join the excitement of dynamic start-ups. Other graduates have gone on to PhD study to conduct cutting-edge research in areas that interest them.

Why study this degree at UCL?

UCL Computer Science is recognised as a world leader in teaching and research, and was one of the top-rated departments in the country according to the UK government's recent Research Excellence Framework.

Our Master's programmes have some of the highest employment rates and starting salaries, with graduates entering a wide variety of industries from entertainment to finance.

We take an experimental approach to our subject, enjoy the challenge and opportunity of entrepreneurial partnerships and place a high value on our extensive range of industrial collaborations.

Read less
Computer science supports the build, development and use of computer systems. There is a growing need across the world for skilled, advanced computer science professionals. Read more

Why this course?

Computer science supports the build, development and use of computer systems.

There is a growing need across the world for skilled, advanced computer science professionals. This course helps you develop the skills necessary to design and deploy sophisticated modern software systems in a range of application areas.

You’ll improve your practical software engineering skills and learn new theories of software development. This course gives you the necessary qualifications to get a skilled position in the computing industry.

Our courses have some of the highest student satisfaction rates in the UK and our graduates are highly sought after.

See the website https://www.strath.ac.uk/courses/postgraduatetaught/advancedsoftwareengineering/

You’ll study

Diploma and MSc students will study the following classes:
- Software Architecture and Design
- Advanced Topics in Software Engineering
- Designing Usable Systems
- Distributed Information Systems
- Mobile Software and Applications
- Personal Study
- Research Methods

You can also take a tailored programme of options from our other Masters classes. This allows you to graduate with a degree in Advanced Computer Science. Those who progress to the Masters will undertake an individual project.

Individual project/dissertation (MSc students only)

You’ll take on an individual research project on an approved topic related to your selected pathway. You’ll pursue a specific interest in further depth, giving scope for original thought, research and technical presentation of complex ideas.

Pre-Masters preparation course

The Pre-Masters Programme is a preparation course for international students (non EU/UK) who do not meet the entry requirements for a Masters degree at the University of Strathclyde. The Pre-Masters programme provides progression to a number of degree options.
To find out more about the courses and opportunities on offer visit isc.strath.ac.uk or call today on +44 (0) 1273 339333 and discuss your education future. You can also complete the online application form. To ask a question please fill in the enquiry form and talk to one of our multi-lingual Student Enrolment Advisers today.

Learning & teaching

The course is taught through lectures, tutorials and practical laboratories.

Careers

There'll be opportunities for you to meet industry employers and take part in recruitment events.

As a graduate of advanced software engineering you could be an analyst, architect or developer. There's a demand for advanced practitioners and researchers in the growing area of embedded systems development.

How much will I earn?

- Systems analyst - typical salaries for junior analysts are around £25,000. More experienced analysts earn £40,000 a year, on average.*
- Applications developer - graduate salaries start at around £20,000. This can vary depending on the size of the employer and the sector which you are working in. The typical salary range for a senior applications developer is approximately £45,000 to £50,000.*

*Information is intended only as a guide.

Find information on Scholarships here http://www.strath.ac.uk/search/scholarships/

Read less
This MSc can lead to a career such as a project manager, software engineer or developer of large-scale systems. All our one year full time Computer Science Masters programmes are available with an optional one year industry placement. Read more
This MSc can lead to a career such as a project manager, software engineer or developer of large-scale systems.

Why choose this course?

All our one year full time Computer Science Masters programmes are available with an optional one year industry placement. The 'with placement' programmes give you additional industrial experience by applying the skills you have learned throughout your studies.

They offer you the opportunity to work for one year in a highly professional and stimulating environment. You will be a full time employee in a company earning a salary and will learn new skills that can't be taught at University. During the placement, you will be able to gain further insight into industrial practice that you can take forward into your individual project.

We will provide excellent academic and personal support during both your academic and placement periods together with comprehensive careers guidance from our very experienced dedicated Careers and Placements Service.

Although the responsibility for finding a placement is with you, our Careers and Placements Service maintains a wide variety of employers who offer placement opportunities and organise special training sessions to help you secure a placement, from job application to the interview. Optional one-to-one consultations are also available.

-This MSc is one of a range of advanced courses within our postgraduate masters programme in Computer Science, this particular course provides you with a specialism in software engineering.
-You will develop knowledge and skills in the models, methodologies, measures and tools that can be employed in software development considered as an engineering discipline.
-You will be taught by a highly-regarded and long-established computer science department with strong links to business.
-Half the research outputs in Computer Science at the University of Hertfordshire have been rated at world-leading or internationally excellent in the Research Excellence Framework (REF) 2014.

Read less
Software development is one of the most rapidly evolving industries in the world, presenting an ever-greater number of creative opportunities and exciting challenges. Read more

Overview

Software development is one of the most rapidly evolving industries in the world, presenting an ever-greater number of creative opportunities and exciting challenges. Software developers therefore need a special set of skills to keep pace with technology and innovation. Our course gives you the knowledge and confidence to do just that. We focus on large-scale development of advanced software, teaching you how to make use of the latest frameworks, methodologies and technology to produce professional-quality applications. Crucially, you will also learn how to be an effective member of a development team. With close links to software giants like Microsoft, Sony, and IBM, we work hard to ensure that our course is always up to date and that our graduates leave with the cutting-edge skills highly sought-after by industry. Therefore, this MSc is appropriate not just for fresh Computer Science graduates, but also for those with existing commercial experience who wish to update their skills and knowledge.

The course begins in September each year and lasts twelve months. There are two trimesters of taught modules, followed by an individual dissertation project during the third trimester. An optional extra trimester – either immediately before or after the dissertation – gives you significant industrial experience through a module based in our software development unit, working with commercial clients and software. This is unique to Hull.

The Department of Computer Science creates an excellent experience for students, with a supportive student community. We have an international reputation for our research activities, with a strong record of industrial and public grant funding. We are also affiliated with Microsoft’s DreamSpark programme, which allows you to access the latest Microsoft operating systems and development software for home use. Once registered with the department, you can download the software free of charge.

Industrial Experience

There is the option to take an Industrial Experience variant, with the opportunity to extend the period of study by a trimester, to gain experience of working alongside commercial software developers within a commercial software development facility on site (SEED), promoting real-world applications of the advanced concepts met in the course.

Study

The MSc Computer Science (Software Engineering) programme is designed to support students with various levels of computing and programming practice experience. There is suitable content on professional skills and the importance of ethics for practising computer scientists. Material on software engineering, referencing and unfair means supports the transition into the postgraduate environment.
As a route into research, the programme supports the development of postgraduate technical skills, alongside critical research, analysis and planning activities.
In lectures you’ll benefit from a range of techniques, from interpreting complex ideas through interactive discussions, to live programming or other problem-solving demonstrations.

Core modules

• Oriented Design and Development Using C++
• Component-based Architecture
• Maintaining Large Software Systems
• Development Project
• Distributed Applications
• Trustworthy Computing
Optional modules
• Computer Science Software Development Practice – pass/fail module
• Dissertation (There is the option of taking this module either in trimester 3 or trimester 4, depending on whether you take the Industrial Experience module.)

Teaching and learning

We place a strong emphasis on practical laboratory sessions. This will significantly develop your core computer science skills, and enhance your employability through exposure to commercial projects.
As teamwork plays a key role in commercial software development and has great value as an employable skill, group work is used in a number of modules.

Assessment

Practical coursework is the main form of assessment, and you will design, build and test software solutions to a variety of problems. This is complemented by written coursework.
The largest assessment is the dissertation, which is based on the work done in the third trimester and documented in a report of up to 20,000 words.

Careers

The MSc Computer Science (Software Engineering) is designed to open up pathways to postgraduate research, as well as careers in a wide range of areas within your discipline. The industrial placement option will enable you to practise your skills and knowledge of computer science ‘in situ’, giving you a useful insight and advantage when it comes to starting your career.
We have a range of inspirational extra-curricular activities including the Three Thing Game, Imagine Cup Worldwide Software Development Challenge, Really Useful Seminars and Global Game Jam. They are designed to boost your CV and employability, and taking part costs very little.

Our graduates gain a wide range of roles including: Applications Developer, Business Systems Analyst, Computer Analyst, Computer Programmer, Computer Operations Manager, Data Management Analyst, Database Assistant, Developer Support Engineer, Games Programmer, Games Programmer (Engine design), Information Manager, IT Design, IT Systems Manager, IT Technician, IT user Support, Mobile Developer, Operations Director, Software Designer, Software Developer, Software Engineer, Solutions Developer, Systems Engineer, Technical Sales, Technical Specialist, Web Developer.

Read less
Our computer science conversion course is for those who have little or no experience in computing. You will study the principles and practice of computing. Read more

Our computer science conversion course is for those who have little or no experience in computing. You will study the principles and practice of computing. It will include the fundamentals of computing science, database design, network technologies and programming.

This course can also be taken as Continuing Professional Development (CPD), for example by ICT teachers who are switching to the new Computer Science curriculum.

Our graduates have an excellent record of finding employment (around 90%). Recent examples include:

-Graduate Trainee, British Airways

-Software Developer, IBM UK

-Graduate Developer, Scott Logic

-Software Engineer, BT

Our research expertise feeds into our teaching. This means that you learn at the cutting edge of the discipline. We incorporate new techniques and knowledge into your learning and have an active research community. We have several research groups and four three research centres.

Delivery

The course is delivered by the School of Computing. You can study over one year full time or two years' part time.

The first nine months of the full time course are devoted to taught modules (120 credits), which are examined by written papers. There will be about 20 contact hours per week. You will also undertake a substantial amount of supervised and unsupervised practical work.

The taught part of the course follows three main threads:

  • programming: introduces the Java programming language
  • computer architecture: covers the basic structure of computers and computer networks
  • software engineering: considers the problems of the design and implementation of large computing systems produced by a team of designers and programmers

The three summer months are devoted to a dissertation project (worth 60 credits).

You can find more information on the School website:

Accreditation

We seek British Computer Society (BCS) accreditation for all our degrees. This ensures that you will graduate with a degree that meets the standards set out by the IT industry. A BCS-accredited degree provides the foundation for professional membership of the BCS on graduation. This is the first step to becoming a chartered IT professional.

The School of Computing Science at Newcastle University is an accredited and a recognised Partner in the Network of Teaching Excellence in Computer Science.

Facilities

You will have dedicated computing facilities in the School of Computing. You will have access to the latest tools for system analysis and development. For certain projects, special facilities for networking can be set up as required.

You will enjoy access to specialist IT facilities to support your studies, including:

  • over 300 dedicated PCs running Linux and Windows
  • an immersive virtual reality suite
  • motion capture facilities
  • 3D printing facilities
  • Graphics Processing Unit
  • cloud scale virtualisation facilities
  • Linux based home pages and student hosting services
  • haptic and wearable computing hardware

Our new £50m Science Central building is currently under construction. We are due to move there in Autumn 2017. The move will further enhance the facilities available to our students and academic community.



Read less
Cloud computing is revolutionising the way that large, and often complex, datasets are stored and analysed. Our Cloud Computing MSc aims to produce experts with practical experience who can work with companies from around the world to realise the business benefits of this exciting technology. Read more
Cloud computing is revolutionising the way that large, and often complex, datasets are stored and analysed. Our Cloud Computing MSc aims to produce experts with practical experience who can work with companies from around the world to realise the business benefits of this exciting technology.

Our course focuses on both theory and practice so that you can understand and implement cloud computing applications. You will cover key subjects such as advanced object-oriented programming, data mining and big data analytics.

Through this course you will develop both your technical and professional skills to underpin personal development and future career success. Our comprehensive research training provides a basis for PhD study.

This is a demanding and rewarding course. We have close links to research by the Scalable Systems Group and the Digital Institute in the School of Computing Science. Our Cloud Computing research also has links with companies such as Red Hat and Hewlett-Packard. They often employ our graduates and also offer summer project internships to students.

Our graduates have an excellent record of finding employment. Recent examples include Software Engineer for IBM UK and Software Developer for Red Hat.

All academic staff involved in teaching cloud computing modules have international reputations for their contributions to the field and some have extensive experience as practitioners in industry.

As a student on this course, you will be encouraged to play a full part in the life of the School, participating in seminars delivered by distinguished external speakers. Our experienced and helpful staff are happy to offer support with all aspects of your course from admissions to graduation and developing your career. The course is part of a suite of related courses, which creates a tight-knit cohort.

Delivery

Our Cloud Computing MSc can be completed full time or part time. The course typically starts in mid-September and is delivered on our Newcastle campus.

Full time students are taught in three blocks. Each block is timetabled to accommodate all formal lectures and practical sessions for the modules covered in that block. This arrangement is to provide the foundational knowledge necessary to study the modules covered in later blocks. For example, Advanced OO Programming, covered in the first block, provides the essential background for Enterprise Middleware in the second block which, in turn, supports understanding of the concepts and tools for Cloud Computing and System Design in the third block.

Modules worth 60 credits are taught in the first three months and are assessed through written examinations conducted in mid-January. The remaining 120 credits worth of study are assessed by coursework and project work. Of these 120 credits, the individual project is worth 90 credits and is carried out in the last five months.

Part time students have the flexibility to study over two years. The only constraint is that you must be examined for modules worth at least 30 credits in the January of your first year. The part time version of the course is designed to encourage participation of employees from local IT companies. As a part time student you can carry out your individual project in your place of work, as long as the supervisory processes in place meet University standards.

Project work

You will need to demonstrate your understanding and competence in cloud computing during the taught part of the course before you can proceed with your individual project. There are no formal lectures during this period. Your five month individual project gives you an opportunity to develop and deepen your knowledge and skills, and to work in a research or development team. For your project you will build a challenging and comprehensive cloud computing application, from design to prototype development, testing and demonstration. You can develop your project either at the University under an academic supervisor or by securing an industrial placement through an open competition. You will have one-to-one supervision from an experienced member of staff, supported with supervision from industry partners as required.

The project can be carried out in:
-One of our research groups at Newcastle
-An industry laboratory
-Your place of work

Accreditation

We have a policy of seeking British Computer Society (BCS) accreditation for all of our degrees, so you can be assured that you will graduate with a degree that meets the standards set out by the IT industry. Studying a BCS-accredited degree provides the foundation for professional membership of the BCS on graduation and is the first step to becoming a chartered IT professional.

The School of Computing Science at Newcastle University is an accredited and recognised Partner in the Network of Teaching Excellence in Computer Science.

Read less
Our MSc in Advanced Computer Science and IT Management is taught in collaboration with Manchester Business School. As such, the programme benefits from the offerings of both schools. Read more
Our MSc in Advanced Computer Science and IT Management is taught in collaboration with Manchester Business School. As such, the programme benefits from the offerings of both schools. Manchester Business School is the largest campus-based business and management school in the UK offering world-leading business education informed by leading edge theory and practice. Similarly, the School of Computer Science is renowned as a world-class centre of excellence in computing teaching and research.

This course is ideal for students who have the desire to drive technology into effective use in business. Information systems are pervasive in every aspect of industry, business and society and therefore there is growing demand for people who have a high level of technical knowledge and are prepared for a leadership role, utilising entrepreneurial and management skills in the solution of business problems. This course is centred around a Management theme, which encompasses relevant MBS course units, and combines it with a choice of complementary Computer Science themes such as Data Management, Software Engineering, and Advanced Web Technologies. The students take modules from 4 theme pools, two in IT Management and two in Computer Science. The course also provides a specialisation in Information Management.

Coursework and assessment

Teaching and assessment take place through small group lectures, supervised laboratory work, mini-projects and independent learning. Course units are assessed by a mixture of written examinations, computer based practical work, and a range of coursework assessments including assessed mini-projects, group projects, reports and essays. The MSc requires a project dissertation to be submitted.

Course unit details

The collaborative nature of the course ensures that students benefit from the offerings of both the School of Computer Science and the Manchester Business Scool. Taught course units can be chosen from the broad range of Advanced Computer Science course units. In addition, there are course units especailly developed by the Manchester Business School covering topics on computing and IT support for strategic analysis and management, strategic change and effective decision making in corporate organisations.

Career opportunities

The MSc in Advanced Computer Science with IT Management has an excellent record of employment for its graduates. They are clearly in demand by the IT industry and related sectors. The following indicates the areas in which our graduates have found work: Associate Consultant Business/IT consultant, Computer Programmer, Business Analyst, Graduate Trainee, IT Consultant, IT Contractor, Internet Developer, Consultant-Programmer analyst, Senior Software Engineer, Software Developer, Support Engineer, Teacher, Technical Consultant.

We maintain close relationships with potential employers and run various activities throughout the year, including career fairs, guest lectures, and projects run jointly with partners from industry.

Accrediting organisations

Dual accredited for CEng registration, for standard route IEng registration and Sydney Accord recognition.

Read less
Computer science is the study of theoretical foundations and practical techniques for implementation in computer systems. Despite its short history, computer science has made major contributions to science and society that have transformed the way we live our lives. Read more
Computer science is the study of theoretical foundations and practical techniques for implementation in computer systems. Despite its short history, computer science has made major contributions to science and society that have transformed the way we live our lives.

There are many sub-fields of computer science and this course provides an opportunity to study a range of these to an advanced level, with a particular emphasis on application development,network security and artificial intelligence.

You will be taught by an internationally recognised team, drawn from the University’s Centre of Excellence in Mobile Applications and Services (CEMAS), the Computer Science and Artificial Intelligence Paradigms research unit (CSAIP) and the Information SecurityResearch Group.

See the website http://courses.southwales.ac.uk/courses/252-msc-computer-science

What you will study

- Real-time Computer Graphics
- Software Development
- Network Security
- Mobile Application Development
- Neural Networks
- Expert Systems
- Professional Skills Development
- Advanced Research Methods
- Project Management
- Research Project: an investigation of your choice, related to the course
- MSc Project: the development and evaluation of a significant application or task of your choice, related to the course.

Learning and teaching methods

The course is delivered in four major blocks that offer an intensive but focused learning pattern, with two entry opportunities for applicants every year – February and September. Full-time students will typically spend 12 hours in classes each week. If you choose to study part-time, this is reduced to around six hours each week. You will study through lectures, tutorials, practical sessions, seminars and projects. You need to spend a significant amount of time working independently, reading and preparing for assessments.

Work Experience and Employment Prospects

The skills developed on this course strongly relate to the role of a software developer in a range of specialised areas. For example, business analytics for optimisation is one of the key areas highlighted by e-skills, and this course provides an opportunity to develop knowledge and skills at the forefront of this field, in addition to practical programming elements.

Students who complete this award will be educated to a professional standard in a range of fields related to computer science, and will have improved transferable skills. These include problem solving, communication, team working, effective use of IT facilities and information retrieval.

With training to Masters level now the recognised professional level of competence, graduates will be better placed to pursue careers in industry, or continue their interest in computer science through research at PhD level.

Assessment methods

You will be assessed primarily by coursework. You will work on a significant research project and major project of your choice, where strong independent thinking, critical analysis and project management skills will be important.

Facilities

We have a full range of high-specification computer labs and an ongoing investment programme to ensure that our facilities stay at the forefront of computing developments.

Read less
This programme aims to prepare students for a successful career in the IT sector, even if they do not have a prior degree in computer science. Read more

This programme aims to prepare students for a successful career in the IT sector, even if they do not have a prior degree in computer science. It enables students who have studied computer science previously to expand their knowledge and acquire further skills across a broader range of computer science topics.

Taught modules address mobile and cloud computing, big data and database systems, and the importance of information security, in relation to the foundational information systems principles.

This programme will equip you with professional skills that will allow you to work as an IT consultant/manager, system architect/analyst, or software developer in any industry field that heavily relies on software and information technology.

Programme structure

This programme is studied full-time over one academic year and part-time over three academic years. It consists of eight taught modules and a dissertation.

Example module listing

The following modules are indicative, reflecting the information available at the time of publication. Please note that not all modules described are compulsory and may be subject to teaching availability and/or student demand.

Educational aims of the programme

The aims of the programme are to:

  • Prepare students for a range of computing related careers
  • Enable students to understand, design and apply information systems and software development technologies
  • Enable students to develop interest and basic skills for doing research in computer science
  • Enable students to realise their full potential for learning and communication
  • Enable students to appreciate rapid innovation and creativity in computer science

Programme learning outcomes

The programme provides opportunities for students to develop and demonstrate knowledge and understanding, skills, qualities and other attributes in the following areas:

Knowledge and understanding

Students will gain an understanding of:

  • The principles of information systems and software development
  • The principles and applications of contents technologies
  • The practice of information systems and software development
  • The professional issues involved in the exploitation of computing
  • The areas of emergent and innovative computing technologies
  • The key research issues in information and software systems

Intellectual / cognitive skills

Students will be able to:

  • Understand and articulate the requirements of the users of software systems / applications
  • Succinctly present, to a range of audience, knowledge relevant to the building, testing and deployment of a system
  • Research and develop solutions through the application of systems analysis / software engineering methods

Professional practical skills

Students will gain the ability to:

  • Specify, design and develop software systems and applications
  • Critically evaluate software systems and tools
  • Work as a member of a development team
  • Communicate with potential and actual users and to understand their needs
  • Retrieve Information
  • Analyse data and present information in appropriate ways
  • Plan, research, manage and implement a major project

Key / transferable skills

Students will gain skills in:

  • Research and information retrieval skills
  • Numeracy in both understanding and presenting cases involving a quantitative dimension
  • Time management and organisational skills
  • Self-learning skills
  • Effective use of specialist IT facilities
  • Continuing professional development

Global opportunities

We often give our students the opportunity to acquire international experience during their degrees by taking advantage of our exchange agreements with overseas universities.

In addition to the hugely enjoyable and satisfying experience, time spent abroad adds a distinctive element to your CV.



Read less
Computer science has an ever-greater influence on our lives, and the technological breakthroughs of today shape the way we live tomorrow. Read more

Overview

Computer science has an ever-greater influence on our lives, and the technological breakthroughs of today shape the way we live tomorrow. Opportunities continue to grow for highly skilled practitioners, and the taught Masters course allows you to make great advancements on your existing skills and knowledge. By the end of the programme you will be equipped to thrive in one of the fastest moving industries in the world.

Industrial Placement Trimester

There is the option to take an Industrial Experience variant, with the opportunity to extend the period of study by a trimester, to gain experience of working alongside commercial software developers within a commercial software development facility on site (SEED), promoting real-world applications of the advanced concepts met in the course.

You will learn specialist computer science techniques and fundamental theories, but you’ll also have the opportunity to put this knowledge into practice by developing applications and working with real software. We cover a range of topics, including real time graphics and computational science, and you can choose from options including artificial intelligence, robotics and visualisation – built upon a solid foundation of good programming skills.

The course begins each September each year and lasts twelve months. There are two trimesters of taught modules, followed by an individual dissertation project during the third trimester. There is an option to take an extra trimester – either immediately before or after the dissertation – gaining industrial experience through a module based in SEED, our software development unit working with commercial clients and software. This is unique to Hull.

The Department of Computer Science creates an excellent experience for students, with a supportive student community. We have an international reputation for our research activities, with a strong record of industrial and public grant funding. We are also affiliated with Microsoft’s DreamSpark programme, which allows you to access the latest Microsoft operating systems and development software for home use. Once registered with the department, you can download the software free of charge.

Study

The MSc programme is designed to support students with various levels of computing and programming practice experience. However, this programme is particularly suited to those with significant experience of writing code. There is a focus on the transition to postgraduate study, with suitable content on professional skills and the importance of ethics for practising computer scientists.
In lectures you’ll benefit from a range of techniques, from interpreting complex ideas through interactive discussions, to live programming or other problem-solving demonstrations.

Core modules

• C++ Programming and Design
• Real Time Graphics
• Advanced Computational Science
• Development Project

Optional modules

• Game Development Architecture
• Simulation and Concurrency
• Visualization
• Advanced Rendering and Artificial Intelligence for Games
• Trustworthy Computing
• Dissertation (There is the option of taking this module either in trimester 3 or trimester 4, depending on whether you take the Industrial Experience module.)
• The Industrial Experience optional 60-credit single trimester module allows students to gain significant commercial experience.

Teaching and learning

We place a strong emphasis on practical laboratory sessions. This will significantly develop your core computer science skills, and enhance your employability through exposure to commercial projects.
As teamwork plays a key role in commercial software development and has great value as an employable skill, group work is used in a number of modules.

Assessment

Practical coursework is the main form of assessment, and you will design, build and test software solutions to a variety of problems.
Written coursework is used to assess your descriptive and critical skills, as well as verify the methodology used to complete your practical coursework. The largest assessment is the dissertation, which is based on the work done in the third trimester (or fourth, depending on your option choices) and documented in a report of up to 20,000 words.

Careers

The MSc Advanced Computer Science programme is designed to open up pathways to postgraduate research, as well as a wide range of careers. The computational science module introduces concepts and ideas which will help prepare you for postgraduate study; the industrial placement option, meanwhile, will enable you to practise your skills and knowledge of computer science ‘in situ’, giving you a useful insight and advantage when it comes to starting your career.
We have a range of inspirational extra-curricular activities including the Three Thing Game, Imagine Cup Worldwide Software Development Challenge, Really Useful Seminars and Global Game Jam. They are designed to boost your CV and employability, and taking part costs very little.

Our MSc graduates typically gain roles including: Applications Developer, Business Systems Analyst, Computer Analyst, Computer Programmer, Computer Operations Manager, Data Management Analyst, Database Assistant, Developer Support Engineer, Games Programmer, Games Programmer (Engine design), Information Manager, IT Design, IT Systems Manager, IT Technician, IT user Support, Mobile Developer, Operations Director, Software Designer, Software Developer, Software Engineer, Solutions Developer, Systems Engineer, Technical Sales, Technical Specialist, Web Developer.

Read less

Show 10 15 30 per page



Cookie Policy    X