Key Enabling Technologies (Structured Masters)

Integrated Masters with deeper specialization and research focus
Taught in English
Duration 1 Years
Mode On Campus
Level Postgraduate
Degree Masters Degree
Next Intake TBA

Course Overview

The Structured Masters in Key Enabling Technologies at the University of Galway is designed for ambitious individuals eager to master the convergence of cutting-edge technologies that will define future product and process innovation. As Europe's competitiveness hinges on the skillful integration of fields like photonics, advanced materials, and nanotechnologies, this interdisciplinary programme equips you with the expertise to address complex societal challenges. You will delve into areas such as scientific programming, biophotonics, and advanced biomaterials, preparing you to innovate across diverse technological frontiers. This postgraduate degree is ideal for those seeking to lead advancements in high-impact scientific and industrial applications.

You will engage in a dynamic learning experience, studied full-time on campus over one year, encompassing a wide array of optional and required modules. Throughout your studies, you will have opportunities for industry placements and research projects, allowing you to apply theoretical knowledge to practical scenarios. The curriculum emphasizes scalable innovation and laser-enabled bioprinting, supported by advanced training in optical design and tissue engineering. You will graduate with a Masters Degree, prepared for impactful careers in research and development, particularly within the biomedical engineering sector, or for further doctoral studies.

Course Curriculum & Details

Detailed information for serious evaluators

Program Overview

This Master's program provides a comprehensive foundation in key enabling technologies through a wide array of optional modules. Students will explore diverse fields such as biophotonics, scientific programming, solid-state physics, advanced biomaterials, and power electronics. The curriculum also includes essential skills like research methodology, project management, and scientific writing, culminating in a significant research project.

1 Year 1 (90 Credits)

Biophotonics Optional
Scientific Programming Concepts Optional
Non-Linear Elasticity Optional
Electromagnetism and Special Relativity Optional
Solid State Physics Optional
Advanced Biomaterials Optional
Communication & Outreach Optional
Research Placement 1 Optional
Journal Club Programme Optional
Research Placement 2 Optional
Graduate Research Information Skills Optional
Digital Signal Processing Optional
Power Electronics Optional
Project Management, Experimental Design & Data Analysis Optional
Principles of Cell & Molecular Biology Optional
Anatomy 2 - Gross Anatomy Optional
Industry Placement 3 Optional
Industry Placement 2 Optional
Industry Placement 1 Optional
Research Placement 3 Optional
Electrical & Electronic Engineering and Physiology Optional
Anatomy 1 - Histology Optional
Scalable Innovation Optional
Scientific Writing Optional
Principles of Optical Design & Image Formation Optional
Statistical Methods for Research Optional
Bioinstrumentation Design Optional
Work Based Placement 2 Optional
Work Based Placement 1 Optional
Work Based Placement 3 Optional
Advanced Mechanics of Materials Optional
Systems Reliability Optional
Graduate Workshop on Key Enabling Technologies Optional
High Performance Computing and Parallel Programming Optional
Non Linear Systems Optional
Fluid Mechanics Optional
Human Reliability Optional
Biophotonics and Imaging Graduate Summer School (BIGSS) Optional
Nanotechnology Optional
Lasers and Spectroscopy Optional
Applied Optics and Imaging Optional
Advanced Tissue Engineering Optional
Advanced Characterisation Techniques Optional
Turbomachines and Advanced Fluid Dynamics Optional
Advanced Power Electronics Optional
Nanobiomaterials Optional
Masterclass: Quantitative analysis of solid-state pharmaceuticals Optional
Masterclass in Carbohydrate Chemistry Optional
Advanced Molecular Cell Biology Optional
Stereology Optional
Power, Machines & Control Optional
Teaching & Learning Optional
Monitoring for Health Hazards at Work Optional
Lasers and Applications Optional
Laser-enabled bioprinting Optional
Research Project Required

Cost & Affordability

A clear picture of what this course will cost you

Program Costs

First Year Fee Tuition fee
USD 32,938.00
Total Program Cost Estimated total tuition
USD 32,938.00

Currency note: Program costs shown in USD based on the available tuition breakdown.

Living Costs

Accommodation
USD 864.00 - USD 1,085.00
Food & Groceries USD 2,807.00 - USD 4,491.00
Transport USD 702.00 - USD 1,684.00
Utilities & Bills USD 1,404.00 - USD 2,105.00
Estimated Total USD 4,913.00 - USD 8,280.00

Living cost estimates are based on Galway Campus.

Outcomes & Employability

What happens after you graduate

96%
Graduate Employment Rate Within 6 to 12 months of graduation

Common Graduate Roles

Coal & Consumable FuelsDevOps & Site Reliability EngineeringEnvironmental & Sustainability ConsultingEnvironmental & Sustainability ServicesForestry & LoggingHome Health & Long‑Term CareLivestock & Animal HusbandryMedical Research & Clinical TrialsPharmacovigilance & Drug SafetyResidential Construction

Top Employers Hiring for this course

Abbott

Agri-Food and Biosciences Institute

Boston Scientific

Cisco

CÚRAM, the Research Ireland Centre for Medical Devices

ESB

Eli Lilly and Company

Health Service Executive (HSE)

Why Study Key Enabling Technologies (Structured Masters) at University of Galway

What makes this program stand out

Top 20 in UK For Computer Science

Exeter's Computer Science department consistently ranks among the top 20 in the UK for both teaching quality and research output.

Fast Offers Quick turnaround

Exeter typically responds to applications within 2-3 weeks, giving you clarity on your options quickly.

Flexible Intakes September start

Primary intake in September with January start available for some pathways through the INTO foundation program.

Accredited Industry recognized

Accredited by BCS, The Chartered Institute for IT, meeting requirements for Chartered IT Professional (CITP) status.

Life at University of Galway in Ireland

What daily life looks like for international students

Language

English

Primary language everywhere

Climate

Mild & Rainy

10-20°C average, pack layers

Safety (Numbeo Safety Index)

Very Safe

Exeter is one of UK's safest cities

Frequently Asked Questions

Common questions about Key Enabling Technologies (Structured Masters) at University of Galway

Can I work while studying?

International students can work up to 20 hours per week during term time and 40 hours during breaks. No separate work permit is required as long as students are enrolled full-time in a one-year program.

What English language score do I need for this course?

To meet the English language requirements, international students must achieve specific scores. For example, TOEFL requires an overall score of 88, while IELTS requires a minimum overall score of 6.5.

What jobs can I get after studying this course?

Graduates can pursue job titles such as Research Scientist, Manufacturing Engineer, Product Developer, or Medical Device Engineer.

What will I actually study in this course?

This MSc program focuses on key enabling technologies like Photonics and Advanced Manufacturing. It offers structured training in Scalable Innovation and Laser-enabled bioprinting to equip students for future industry challenges.

When can I start — what are the intake months?

The intake month for the Key Enabling Technologies course is September. Students can enroll for either full-time or part-time study, with the full-time duration being one year and part-time taking two years.
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