Master of Science in Applied Oceanography

Master of Science in Applied Oceanography

Course Title

Master of Science in Applied Oceanography

MQF Level

7

Duration and Credits

3 Semesters

90 ECTS

Mode of Study

Full-time

Information for International applicants

Applicants must be in possession of:

Refer to the list of country-specific qualifications

A first cycle degree from this University in Science, Engineering, Architecture or Information Technology, or any other area deemed relevant by the Board.

In exceptional cases the Admissions Board, on the recommendation of the Board, may admit into the Course applicants not in possession of a Bachelor degree, provided that it is satisfied that such applicants are in possession of other academic qualifications and experience that together are deemed to be comparable to the qualifications listed in the above paragraph. The admission of applicants under this paragraph may be made conditional on the results of an interview conducted by a board appointed for the purpose.

Knowledge of Mathematics and programming skills is strongly recommended.

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Applications for our February and October intakes have been officially open since the third week in November. You can submit your application online. The deadlines for submission of applications vary according to the intake and courses. We encourage all international applicants to submit their applications as soon as possible. This is especially important if you require a visa to travel and eventually stay in Malta.

You can compare your national qualifications to the local requirements by visiting our qualifications comparability webpage. Access more information about our admission process and English language requirements.

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Our dedicated team at the student recruitment office is here to support you every step of the way. From the moment you start your application to the moment when you receive your decision letter, we're here to assist you. If you have any questions or need further information, don't hesitate to reach out to us. You can contact us at info@um.edu.mt, and our team will be more than happy to help.

After you receive an offer from us, our International Office will assist you with visas, accommodation and other related issues.

The course builds on the core principles of oceanography in coastal and open sea domains, with a focus on operational oceanography and the versatile and broad spectrum of disciplines and offshoot applications related to it. The course targets to match the human resource needs in the evolving marine sector at local, European and global scales, providing professionals with wide ranging skills to exploit the outcomes of marine research and technology in favour of the competitiveness of the industry and service sectors.

The course intends to train postgraduate students and professionals on state-of-the-art methodologies and tools to measure and to accomplish the human resource backbone to sustain a range of marine-related activities and economic endeavours. It will also empower you to comprehend the methods and tools of operational oceanography.

The Master of Science in Applied Oceanography builds on the core principles of oceanography in coastal and open sea domains, with a focus on operational oceanography and the versatile and broad spectrum of disciplines and offshoot applications related to it. The main target of the course is to match the human resource needs in the evolving marine sector at local, European and global scales, providing professionals with wide ranging skills to exploit the outcomes of marine research and technology in favour of the competitiveness of the industry and service sectors. It is also set against a background of the rising industrialisation of seas and oceans with increasing human impact (such as from renewable energy provision, aggregate extraction, fishing and leisure industries) and the extended quest for achieving sustainable development by protecting the marine ecosystem, minimising the impacts of climate change, natural hazards and anthropogenic influences, whilst maximising benefits to society. This is naturally also fitting to maritime Malta with its 266Km long shoreline, a marine territory up to the 25 nautical mile limit amounting to 20 times the extent of the land area, and the economic, social and scientific dimensions of human activity that are inextricably linked to the sea.

If you are a postgraduate student or professional, the course will equip you with state-of-the-art methodologies and tools to measure, understand and predict the marine environment, and derive sustained benefits from the sea, to accomplish the human resource backbone to sustain a range of marine-related activities and economic endeavours. It empowers you to comprehend the methods and tools of operational oceanography, and provide a wide view on how this is relayed into services relying on marine data acquisition and forecasting systems, on applications to sustain the management of marine space around our islands, and to improve marine-related activities of economic, social and scientific value in general.

The course programme features the following key elements:

  1. an overview of supporting sciences covering the essentials in physical, chemical, biological and geological oceanography, as well as other baseline topics such as satellite oceanography, marine GIS and spatial planning, etc.;
  2. the adoption of specialized methods and tools used in marine studies and assessments; and
  3. a focus on dedicated applications and services deriving from operational oceanography such as in relation to marine environmental management and monitoring, policy development and decision making, planning, marine research, marine security, and a range of other marine-related services.

This specialized course spans and merges the legal, socio-economic, scientific and environmental elements into one whole to offer students a wide-ranging vision to marine affairs, linking science to management, putting technology at the service of users and stakeholders, and providing tools for more efficient service-oriented applications. Targeted areas of such applications include environmental monitoring and surveillance, assessment and mitigation of risks, marine science-based policy development and strategic planning, climate change, sustainable resource exploitation, ocean governance, marine industries and service provision and the overall empowerment of human resources to face current and emerging challenges in the marine domain. While retaining the necessary elements related to the acquisition of knowledge, the course targets to put an emphasis on achievement of skills, and empower students to excel in performance on applications and operational practices.

 
Year   (This/these unit/s start/s in Semester 1 and continue/s in Semester 2)
 
Compulsory Units (All students must register for this/these unit/s)
 
LIN5063 Academic Reading, Writing and Speaking in English for Postgraduates 5 ECTS    

 
 
Semester 1
 
Compulsory Units (All students must register for this/these unit/s)
 
GSC5501 Theoretical Baseline of Oceanography 5 ECTS    
GSC5502 Hands-on Oceanography 5 ECTS    
GSC5503 Ocean Informatics 5 ECTS    
GSC5504 Instrumentation and Ocean Data Systems 5 ECTS    
GSC5505 Marine Environmental Management 5 ECTS    
GSC5506 Ocean Modelling 5 ECTS    

 
 
Semester 2
 
Compulsory Units (All students must register for this/these unit/s)
 
GSC5507 Ocean Science Communication 5 ECTS    
GSC5508 Oceanography Boot Camp 5 ECTS    
GSC5509 An introduction to ocean governance and policy-making 5 ECTS    
GSC5510 Applications and Services in Operational Oceanography 5 ECTS    
GSC5511 Work Placement 5 ECTS    

 
 
Summer Semester
 
Compulsory Units (All students must register for this/these unit/s)
 
GSC5512 Dissertation 30 ECTS    

 

This programme of study is governed by the General Regulations for University Postgraduate Awards, 2021 and by the Bye-Laws for the award of Master of Science in Applied Oceanography - M.Sc. - under the auspices of the Faculty of Science.

By the end of the course, you will:

  • Comprehend the basic scientific concepts of oceanography in a holistic view embracing the physical, chemical, biological and geological aspects, and on how they relate to the underlying processes and functioning of the marine environment;
  • Comprehend the concept and practice of operational oceanography for the systematic and long-term routine measurements of the seas and oceans and atmosphere, and the rapid interpretation and dissemination of information;
  • Gain full understanding on ocean and coastal observing and forecasting systems in operational oceanography, technical and theoretical aspects related to metocean observations, operational monitoring platforms, state-of-the-art instrumentation and sensor technology, understanding their performance (including limitations and configurations) and understanding their basic functions and use to the benefit of specific applications;
  • Demonstrate an understanding of the process of acquisition and the nature of the information in remote sensing for the comprehensive study of the sea and the applications to oceanographic studies;
  • Acquire interests and informed opinions in a range of areas in applied mathematical methods relevant to oceanography;
  • Understand the concepts and terminology for maritime spatial planning (MSP), especially within the European perspective, including benefits and relation to other existing management approaches, primarily integrated coastal zone management (ICZM) and ecosystem-based management (EBM).

The main expected benefits that you will gain by successfully completing the Master of Science in Applied Oceanography are:

Subject Knowledge and Understanding

  • Comprehend the basic scientific concepts of oceanography in a holistic view embracing the physical, chemical, biological and geological aspects, and on how they relate to the underlying processes and functioning of the marine environment;
  • Comprehend the concept and practice of operational oceanography for the systematic and longterm routine measurements of the seas and oceans and atmosphere, and the rapid interpretation and dissemination of information;
  • Gain full understanding on ocean and coastal observing and forecasting systems in operational oceanography, technical and theoretical aspects related to metocean observations, operational monitoring platforms, state-of-the-art instrumentation and sensor technology, understanding their performance (including limitations and configurations) and understanding their basic functions and use to the benefit of specific applications;
  • Demonstrate an understanding of the process of acquisition and the nature of the information in remote sensing for the comprehensive study of the sea and the applications to oceanographic studies;
  • Acquire interests and informed opinions in a range of areas in applied mathematical methods relevant to oceanography;
  • Understand the concepts and terminology for maritime spatial planning (MSP), especially within the European perspective, including benefits and relation to other existing management approaches, primarily integrated coastal zone management (ICZM) and ecosystem-based management (EBM);
  • Acquire a grounding in Geographic Information Systems (GIS) as a tool for mapping and analysis of spatial data with special reference to the marine domain;
  • Recognise and understand how specialized technologies in operational oceanography, especially computer-based modelling, are contributing to enhance applications in a wide range of marine activities through specific European experiences and examples.

IntellectualDevelopment

  • Acquire knowledge on the national, regional and international frameworks and programmes for coordinating and implementing efforts in operational oceanography with a focus on Europe;
  • Learn, follow and apply common methods and practices to make best use of marine equipment to obtain high quality oceanographic data at the appropriate spatial and temporal scales and resolution;
  • Acquire a practical background on the investigative techniques that are used to study the physical, biological, geological, and chemical parameters of the marine environment;
  • Appreciate the scope of field studies through active participation in group projects and individual research efforts;
  • Interpret concepts of advanced computer-based modelling and techniques in operational oceanography.

Key Transferable Skills

  • Apply the fundamentals of ocean science to describe and explain processes pertaining to the marine environment in coastal and open sea domains, and the interactions between the atmosphere and the oceans;
  • Understand scientific literature on related topics and have sufficient insight to follow and apprehend past and current research efforts, as well as critically evaluate the validity of existing literature on oceanography against accepted benchmarks and standards;
  • Make judicious assessments on the response of the marine ecosystem to natural and anthropogenic forcings;
  • Apply the scientific method in the design of studies and assessments, in establishing feasible sampling and surveying protocols, in the sound interpretation of data, and in deriving meaningful conclusions;
  • Apply knowledge, understanding and problem-solving abilities in new or unfamiliar contexts involving broader (or multidisciplinary) factors that link science to management issues and across legal and socio-economic aspects;
  • Comprehend the scope of Environmental Impact Assessments, and the process of formulating and submitting such assessments on the basis of informed and multi-disciplinary inputs.

Non EU Applicants:

Total Tuition Fees: Eur 13,400

You are viewing the fees for non EU nationals. Switch to EU nationals if you are a national of any country from within the EU/EEA.

This course is tailor-made if you aspire to join several streams of expertise and jobs, amongst others: Management of coastal/marine resources; Policy-making and governance; Marine impact assessment and specialized analysis of environmental scenarios; Marine-related industries, services and economic activities; Marine-related operational activities such as in surveying, surveillance, search and rescue, marine transportation, etc.; Environmental monitoring; Research fields in oceanography; Numerical modelling of the marine environment; Data mining, management, quality control and archival; Marine observations and forecasting.

Technology Stream

 

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