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Master of Science in Mechanical Engineering with Professional Practice

Master of Science in Mechanical Engineering with Professional Practice

at University of Wolverhampton - Telford Campus United Kingdom

Overview

The Mechanical Engineering course provides a comprehensive engineering education covering design, engineering mathematics and its application, the core concepts of mechanics, thermodynamics, structural dynamics, materials and the behaviour of fluids. As you progress through the course, you will also cover the principles of control systems, advanced materials and manufacturing processes including Additive Layer Manufacturing (ALM)/ 3D-printing of plastics and metals. You will use computer aided modelling, design and analysis software to validate product designs. Analysing the performance of materials and structures under in-service conditions through the use of finite element analysis and computational fluid dynamics is one highlight of the course. Accordingly, you will have the ability to use industry level FEA packages to analyse the performance of various engineering components.

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45

Application Processing Days

Under Graduate

Program Level

Fact & Figures

Full Time On Campus

Study Mode

24

Duration

University of Wolverhampton - Telford Campus

Location

Master of Science in Mechanical Engineering with Professional Practice Assistant Fee

$14450

Tuition Fee

$0

Average Cost of Living

$0

Application Fee

Master of Science in Mechanical Engineering with Professional Practice Admissions Requirements

  • Minimum Level of Education Required: To be accepted for this program, students must have a Bachelor's Degree.
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Where would you like to study*

Work Permit United Kingdom

There are various options through which a student can get a post study work visa in the UK. 
Tier 1 Graduate Entrepreneur Visa for the graduates with a genuine and credible business idea. 
Tier 2 (General) is the leading immigration visa to work in the UK.
Tier 4 Doctorate Extension Scheme is for students who have completed their Ph.D. and is valid for 12 months for them to work, look for work or set up a business. 
Tier 5 Youth Mobility is for individuals of certain countries like Australia, Canada, Japan, Monaco, Hong Kong, South Korea, Taiwan, and New Zealand aged between 18 -30 who wish to move to the UK. 
Tier 5 GAE is for individuals who want to come to the UK for work experience, training, research or a fellowship. 
UK Ancestry is for individuals who are a citizen of a commonwealth and plan to work in the UK and have a grandparent who was born in the UK.
 

Detailed Program and Facts

45

Application Processing Days

Full Time On Campus

Program Intensity

Under Graduate

Program Level

24

Duration

Study Visa

English Test Requirement

6.5

Minimum Overall Score

88.0

Minimum Overall Score

61.0

Minimum Overall Score

Other Courses by University of Wolverhampton - Telford Campus,United Kingdom

Modern industry operates within a highly competitive global market, the adoption, exploration and management of technology across both design and manufacture and product simulation performance is at the forefront of providing successful business with the competitive edge needed to survive and grow. In addition, society is demanding that such business enterprises become evermore proactive in terms of adopting a more socially conscious approach, such as sustainability, across all their strategies and operations.

This course aims to develop your knowledge and understanding of modern engineering analysis and simulation tools and techniques in terms of product development and optimisation before manufacture. You will gain a comprehensive understanding of how various IT-based tools and systems function while also gaining insights into how these are implemented effectively, within the manufacturing and industrial sectors. You will be equipped to undertake cross-functional management roles and to evaluate how modern organisations can strategically exploit existing and emerging technologies. This reflects the growing demand for specialists with advanced skills and knowledge to drive forward effective, new, product development and their introduction across all of the major industrial sectors including automotive, aerospace and general manufacture.
The course will allow you acquire advanced knowledge and systematic understanding of contemporary finite element modelling techniques to analyse the behaviour of complex engineering systems and components. It will involve a comprehensive understanding of advanced solid mechanics and analytical techniques pertinent to product development and sustainability, and to apply these advanced techniques to synthesise novel designs of a range of engineering systems.

12 month

Duration

$ 14450

Tuition

The Mechanical Engineering course provides a comprehensive engineering education covering design, engineering mathematics and its application, the core concepts of mechanics, thermodynamics, structural dynamics, materials and the behaviour of fluids. As you progress through the course, you will also cover the principles of control systems, advanced materials and manufacturing processes including Additive Layer Manufacturing (ALM)/ 3D-printing of plastics and metals. You will use computer aided modelling, design and analysis software to validate product designs. Analysing the performance of materials and structures under in-service conditions through the use of finite element analysis and computational fluid dynamics is one highlight of the course. Accordingly, you will have the ability to use industry level FEA packages to analyse the performance of various engineering components.

24 month

Duration

$ 14450

Tuition

The Mechanical Engineering course provides a comprehensive engineering education covering design, engineering mathematics and its application, the core concepts of mechanics, thermodynamics, structural dynamics, materials and the behaviour of fluids. As you progress through the course, you will also cover the principles of control systems, advanced materials and manufacturing processes including Additive Layer Manufacturing (ALM)/ 3D-printing of plastics and metals. You will use computer aided modelling, design and analysis software to validate product designs. Analysing the performance of materials and structures under in-service conditions through the use of finite element analysis and computational fluid dynamics is one highlight of the course. Accordingly, you will have the ability to use industry level FEA packages to analyse the performance of various engineering components.

48 month

Duration

$ 13450

Tuition

In addition to gaining in-depth knowledge and understanding of the core subject, you will also gain experience of designing engineering systems that incorporate aspects of the mechanical and electrical/electronic technologies. In addition to experimental work at the University you will use Radar equipment at the DCAE Cosford Royal Air Force base - the same equipment used to train Air Force personnel.

The first year of study will cover a range of engineering topics and is aimed at providing a sound base for the following years. You will study Mathematics, and the underlying concepts of Electrical, Mechanical, Materials, and Production Engineering. You will undertake laboratory work and utilise your new production knowledge to build and test a design. In the second year, you will learn about Telecommunications and Signal Processing, Electronic Design, and Control Systems. You will also study Engineering Management and learn the role and responsibilities of a professional engineer. In your third year, you will complete an individual project, acquire specialist Electronics and Communications Systems knowledge, and learn how to convert an idea into a commercial venture. Should you pursue the MEng then you will cover some of these topics in more depth alongside broadening studies, for example in business management and accounting.

48 month

Duration

$ 13450

Tuition

The Mechanical Engineering course provides a comprehensive engineering education covering design, engineering mathematics and its application, the core concepts of mechanics, thermodynamics, structural dynamics, materials and the behaviour of fluids. As you progress through the course, you will also cover the principles of control systems, advanced materials and manufacturing processes including Additive Layer Manufacturing (ALM)/ 3D-printing of plastics and metals. You will use computer aided modelling, design and analysis software to validate product designs. Analysing the performance of materials and structures under in-service conditions through the use of finite element analysis and computational fluid dynamics is one highlight of the course. Accordingly, you will have the ability to use industry level FEA packages to analyse the performance of various engineering components.

 

48 month

Duration

$ 13450

Tuition

This course is for those who want to become design engineers in the Automotive industry, to undertake the challenges of modern vehicle design and work in industry as part of teams generating the next phase of road vehicles. As such the course consists of all the necessary elements to ensure its graduates are prepared for the various roles of the modern automotive engineer. Modern production technologies and conceptual design feature highly to promote an innovative design ethos, which will go towards fulfilling the increasingly regulated world of global vehicle design along with an understanding of legal requirements. Fuel efficiency is an area of increasing scrutiny in the consideration of new vehicles and can be achieved by a number of factors, including conceptual engine design, use of hybrid and renewable energies and the streamlining of vehicle aerodynamics, all of which feature heavily on this new bespoke course, designed to meet current and future needs.

48 month

Duration

$ 13450

Tuition

The Mechanical Engineering course provides for a comprehensive engineering education covering design, engineering mathematics and its application, the core concepts of mechanics, thermodynamics, structural dynamics, materials and the behaviour of fluids. As you progress through the course, you will also cover the principles of control systems, advanced materials and manufacturing processes including Additive Layer Manufacturing (ALM)/ 3D-printing of plastics and metals. You will use computer aided modelling, design and analysis software to validate product designs. Analysing the performance of materials and structures under in-service conditions through the use of finite element analysis and computational fluid dynamics is one highlight of the course. Accordingly, you will have the ability to use industry level FEA packages to analyse the performance of various engineering components.

48 month

Duration

$ 13450

Tuition

In addition to gaining in-depth knowledge and understanding of the core subject, you will also gain experience of designing engineering systems that incorporate aspects of the mechanical and electrical/electronic technologies. In addition to experimental work at the University you will use Radar equipment at the DCAE Cosford Royal Air Force base - the same equipment used to train Air Force personnel.

The first year of study will cover a range of engineering topics and is aimed at providing a sound base for the following years. You will study Mathematics, and the underlying concepts of Electrical, Mechanical, Materials, and Production Engineering. You will undertake laboratory work and utilise your new production knowledge to build and test a design. In the second year, you will learn about Telecommunications and Signal Processing, Electronic Design, and Control Systems. You will also study Engineering Management and learn the role and responsibilities of a professional engineer. In your third year, you will complete an individual project, acquire specialist Electronics and Communications Systems knowledge, and learn how to convert an idea into a commercial venture. Should you pursue the MEng then you will cover some of these topics in more depth alongside broadening studies, for example in business management and accounting.

48 month

Duration

$ 13450

Tuition

The highly bespoke motorsport engineering course is for those applicants who wish to focus on all aspects of modern race vehicles, from high performance engines, use of hybrid power and power delivery, to the high performance end of spectrum of aerodynamics and vehicle stability mechanisms and methodologies.

The modules range from track-side and creative to relevant technical modules which give the basis for technical study, such as mathematics, science, thermodynamics and liquid mechanics. Contextualisation of all course content ensures the maximum industrial relevance along with pace being kept to extremely fast moving and often restricted industrial technologies.

Virtual technologies feature heavily in the course, as a valuable industrial tool to reduce lead times in the conceptualisation of prototype vehicles, it is an essential aspect of the modern engineer, the basics of solid modelling (3D CAD) are taught initially and used to develop designs, leading into the use of FEA (finite element analysis) and CFD (computational fluid dynamics) to assess various designs and prototypes.

36 month

Duration

$ 13450

Tuition

This course is for those who want to become design engineers in the Automotive industry, to undertake the challenges of modern vehicle design and work in industry as part of teams generating the next phase of road vehicles. As such the course consists of all the necessary elements to ensure its graduates are prepared for the various roles of the modern automotive engineer. Modern production technologies and conceptual design feature highly to promote an innovative design ethos, which will go towards fulfilling the increasingly regulated world of global vehicle design along with an understanding of legal requirements. Fuel efficiency is an area of increasing scrutiny in the consideration of new vehicles and can be achieved by a number of factors, including conceptual engine design, use of hybrid and renewable energies and the streamlining of vehicle aerodynamics, all of which feature heavily on this new bespoke course, designed to meet current and future needs.

48 month

Duration

$ 13450

Tuition

View All Courses by University of Wolverhampton - Telford Campus, United Kingdom

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