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Masters Degrees (Environmental Medicine)

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Why this course?. The MSc in Environmental Health Sciences has been designed to allow graduates from a range of science and engineering disciplines to develop and extend knowledge in risk-based assessment and management of environmental influences on human health. Read more

Why this course?

The MSc in Environmental Health Sciences has been designed to allow graduates from a range of science and engineering disciplines to develop and extend knowledge in risk-based assessment and management of environmental influences on human health.

Environmental health is the assessment and management of environmental influences on human health. This includes the study of:

- environmental protection including control of air, water and land pollution

- food safety and hygiene including production, distribution and fitness for human consumption

- occupational health and safety including investigation and control of work-related accidents and ill health

- the built environment including homes, workplaces and public spaces

Environmental health work is important and highly worthwhile and many of our students are motivated by a desire to directly improve living and working conditions for a wide range of people.

You'll develop expertise in current methods for examining factors that affect human health, assessing and managing the risks involved, and meeting the challenges resulting from changes in the interaction between people and the environment.

The wide scope of environmental health sciences and the corresponding breadth of the degree reflect rapid technological progress. Environmental impact assessment, sustainable development, air, water and noise pollution are increasingly important and there is a pressing need for graduates with skills in these disciplines.

This course also provides an emphasis on teaching subjects that are relevant to contemporary problems faced by communities, government, industry and commercial organisations.

For example, professionals from outside Strathclyde work together with academic staff and students in the teaching of case studies of outbreaks of water-borne and food-borne diseases and also in urban and industrial air quality management.

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

You’ll study

Teaching is based on a core of conventional lectures and tutorials, complemented by group projects, laboratory classes, student-led seminars and fieldwork. The programme can be studied over one year full-time, two years part-time or up to five years through Open Access.

On the full-time programme, you’ll follow a core curriculum of eight classes and four optional class. Each class is taught for two to three hours per week over eight to 12 weeks.

Following successful completion of the taught component, you’ll undertake a dissertation from June to August.

Facilities

Our laboratory facilities are well-equipped for a wide range of chemical and biological measurements. High-technological instrumentation and space are available to investigate:

- marine and freshwater quality

- air quality

- solid and hazardous wastes

- environmental microbiology

Teaching staff

The course is delivered by staff from the Department of Civil & Environmental Engineering. The academic team includes:

- Dr Iain Beverland, programme manager of the MSc in Environmental Health Sciences. He has research & teaching interests in the areas of air pollution control, environmental epidemiology, exposure assessment, & public/environmental health. Current research includes study of the effects of exposure to air pollution on human health, with a focus on traffic-related air pollution in urban areas.

- Dr Tara K Beattie has expertise in the field of public health and the management of water and solid waste. Her research interests include free-living protozoa and their potential to cause human disease.

- Dr Raymond Wong has research and teaching interests in the areas of food laws (EU and UK), policies and compliance; food poisoning, contamination and prevention; and food safety management systems.

- Dr Christine Switzer specialises in contaminant fate, transport and remediation with emphases on non-aqueous phase liquids and aggressive remediation technologies.

Additional information

Staff within the Department of Civil & Environmental Engineering have engaged with developing Environmental Health training in Africa for almost 20 years.

Flexible Options – Distance Learning & CPD

This course is also offered via Distance Learning mode, which allow you to complete an MSc via online study at home, at a time that suits you. This means you can study while balancing your existing work and family commitments. This option is suitable for students located anywhere in the world. The MSc via Distance Learning is via part-time study over 3 years.

Home students can also choose to study through the Professional Development route. You register for one module at a time and have the option to build up credits eventually leading to a Postgraduate Certificate, Postgraduate Diploma or MSc. You can take up to five years to achieve the qualification. This option is popular with students in employment, who may wish to undertake modules for Continuing Professional Development purposes. Students who do not meet the normal MSc entry requirements for this programme are welcome to apply through this route instead.

Careers

Graduates in environmental health sciences are well prepared for a wide range of professions that require intellectual flexibility and analytical skill.

Many of our graduates have highly successful careers in environmental regulation, government departments, environmental consultancy, health and safety management, food industry, public water utilities, and waste management.

There is increasing recognition by employers in the private sector that graduates in environmental health have skills and backgrounds that are well suited to management roles in a range of related business activities, including the specialist field of corporate social responsibility.

Employers of Strathclyde Environmental Health graduates include:

AECOM; ACS Physical Risk Control Ltd; British Army; British Petroleum; Glasgow Caledonian University; GlaxoSmithKline plc; Health Protection Scotland; IBI Group Inc; International Atomic Energy Agency; Institute of Occupational Medicine; Malaysian Government; Maltese Government; Swaziland Department of Health; Logica plc; Malawi Government; National Health Service in Scotland; Ricardo AEA Ltd; Royal Bank of Scotland; Royal Environmental Health Institute of Scotland; Royal Navy; RPS Group Plc; Scottish Environmental Protection Agency; Scottish Government; UK Meteorological Office; University of Edinburgh; University of Glasgow; University of Strathclyde; World Health Organisation.

The MSc Environmental Health Sciences programme is not a pre-training programme for students wishing to become a local government Environmental Health Officer in Scotland through the Royal Environmental Health Institute of Scotland (REHIS) scheme of professional training.

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



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This course develops the careers of doctors whose interest is the practice of medicine in tropical and low- and middle-income countries. Read more
This course develops the careers of doctors whose interest is the practice of medicine in tropical and low- and middle-income countries. The course offers a wide choice of modules and provides training in clinical tropical medicine at the Hospital for Tropical Diseases.

The Diploma in Tropical Medicine & Hygiene (DTM&H):
All students going on the MSc will take the Diploma in Tropical Medicine & Hygiene. Students with a prior DTM&H, or holding 60 Masters level credits from the East African Diploma in Tropical Medicine & Hygiene may apply for exemption from Term 1 via accreditation of prior learning.

Careers

Graduates from this course have taken a wide variety of career paths including further research in epidemiology, parasite immunology; field research programmes or international organisations concerned with health care delivery in conflict settings or humanitarian crises; or returned to academic or medical positions in low- and middle-income countries.

Awards

The Frederick Murgatroyd Award is awarded each year for the best student of the year. Donated by Mrs Murgatroyd in memory of her husband, who held the Wellcome Chair of Clinical Tropical Medicine in 1950 and 1951.

- Full programme specification (pdf) (http://www.lshtm.ac.uk/edu/qualityassurance/tmih_progspec.pdf)

Visit the website http://www.lshtm.ac.uk/study/masters/mstmih.html

Objectives

By the end of this course students should be able to:

- understand and describe the causation, pathogenesis, clinical features, diagnosis, management, and control of the major parasitic, bacterial, and viral diseases of developing countries

- demonstrate knowledge and skills in diagnostic parasitology and other simple laboratory methods

- understand and apply basic epidemiological principles, including selecting appropriate study designs

- apply and interpret basic statistical tests for the analysis of quantitative data

- critically evaluate published literature in order to make appropriate clinical decisions

- communicate relevant medical knowledge to patients, health care professionals, colleagues and other groups

- understand the basic sciences underlying clinical and public health practice

Structure

Term 1:
All students follow the course for the DTM&H. Term 1 consists entirely of the DTM&H lectures, seminars, laboratory practical and clinical sessions, and is examined through the DTM&H examination and resulting in the award of the Diploma and 60 Master's level credits at the end of Term 1.

Terms 2 and 3:
Students take a total of five study modules, one from each timetable slot (Slot 1, Slot 2 etc.). Recognising that students have diverse backgrounds and experience, the course director considers requests to take any module within the School's portfolio, provided that this is appropriate for the student.

*Recommended modules

- Slot 1:
Clinical Infectious Diseases 1: Bacterial & Viral Diseases & Community Health in Developing Countries*
Clinical Virology*
Epidemiology & Control of Malaria*
Advanced Immunology 1
Childhood Eye Disease and Ocular Infection
Designing Disease Control Programmes in Developing Countries
Drugs, Alcohol and Tobacco
Economic Evaluation
Generalised Liner Models
Health Care Evaluation
Health Promotion Approaches and Methods
Maternal & Child Nutrition
Molecular Biology & Recombinant DNA Techniques
Research Design & Analysis
Sociological Approaches to Health
Study Design: Writing a Proposal

- Slot 2:
Clinical Infectious Diseases 2: Parasitic Diseases & Clinical Medicine*
Conflict and Health*
Design & Analysis of Epidemiological Studies*
Advanced Diagnostic Parasitology
Advanced Immunology 2
Clinical Bacteriology 1
Family Planning Programmes
Health Systems; History & Health
Molecular Virology; Non Communicable Eye Disease
Population, Poverty and Environment
Qualitative Methodologies
Statistical Methods in Epidemiology

- Slot 3:
Clinical Infectious Diseases 3: Bacterial & Viral Diseases & Community Health in Developing Countries*
Control of Sexually Transmitted Infections*
Advanced Training in Molecular Biology
Applied Communicable Disease Control
Clinical Immunology
Current Issues in Safe Motherhood & Perinatal Health
Epidemiology of Non-Communicable Diseases
Implementing Eye Care: Skills and Resources
Medical Anthropology and Public Health
Modelling & the Dynamics of Infectious Diseases
Nutrition in Emergencies
Organisational Management
Social Epidemiology
Spatial Epidemiology in Public Health
Tropical Environmental Health
Vector Sampling, Identification & Incrimination

- Slot 4:
Clinical Infectious Diseases 4: Parasitic Diseases & Clinical Medicine*
Epidemiology & Control of Communicable Diseases*
Ethics, Public Health & Human Rights*
Global Disability and Health*
Immunology of Parasitic Infection: Principles*
Analytical Models for Decision Making
Clinical Bacteriology 2
Design & Evaluation of Mental Health Programmes
Environmental Epidemiology
Evaluation of Public Health Interventions
Genetic Epidemiology
Globalisation & Health
Molecular Biology Research Progress & Applications
Nutrition Related Chronic Diseases
Population Dynamics & Projections
Reviewing the Literature
Sexual Health
Survival Analysis and Bayesian Statistics
Vector Biology & Vector Parasite Interactions

- Slot 5:
AIDS*
Antimicrobial Chemotherapy*
Mycology*
Advanced Statistical Methods in Epidemiology
Analysing Survey & Population Data
Applying Public Health Principles in Developing Countries
Environmental Health Policy
Integrated Vector Management
Integrating Module: Health Promotion
Molecular Cell Biology & Infection
Nutrition Programme Planning
Pathogen Genomics
Principles and Practice of Public Health

Further details for the course modules - http://www.lshtm.ac.uk/study/currentstudents/studentinformation/msc_module_handbook/section2_coursedescriptions/ttmi.html

Project Report:
During the summer months (July - August), students complete a research project in a subject of their choice, for submission by early September. Projects may involve writing up and analysing work carried out before coming to the School, a literature review, or a research study proposal. Some students gather data overseas or in the UK for analysis within the project. Such projects require early planning.

Students undertaking projects overseas will require additional funding of up to £1,500 to cover costs involved. The majority of students who undertake projects abroad receive financial support for flights from the School's trust funds set up for this purpose.

Find out how to apply here - http://www.lshtm.ac.uk/study/masters/mstmih.html#sixth

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LEARN ALL ABOUT HEALTH RISK ASSESSMENT. In the course of our day-to-day life, we come into contact with a vast number of chemical, biological, and physical agents that could do us harm. Read more

LEARN ALL ABOUT HEALTH RISK ASSESSMENT

In the course of our day-to-day life, we come into contact with a vast number of chemical, biological, and physical agents that could do us harm. These agents are present in the air we breathe, the water we drink, and even the food we eat. We encounter them when we travel and when we work or when we use consumer goods such as cosmetics or electrical equipment.

Determining the source of these risks, and quantifying their effects, requires cooperation by experts across a host of different disciplines. Our Master’s programme in Toxicology and Environmental Health has been designed with this in mind, training you in the fundamentals of toxicology, environmental epidemiology, emerging toxicological agents such as nanoparticles and zoonotic components, and exposure assessment. This programme will enable you to assess the risks present in the workplace or the food chain.

The multidisciplinary nature of this programme means that you will have the flexibility to specialise in a particular field or undertake more generalist training in risk assessment. You may also take part in experimental research in the fields of neurotoxicology, immunotoxicology, allergies, in vitro toxicology, endocrine toxicology, environmental toxicology, and chemistry. Alternatively, you may wish to undertake practical work in environmental or occupational exposure assessment engaging in activities such as exposure modelling or in-depth analysis of samples taken from a variety of sources.

As a graduate of this programme, you will be qualified to assess the impact of toxicological agents on populations or work environments by applying the principles of environmental and occupational epidemiology.

PROGRAMME OBJECTIVE

This MSc programme will give you the knowledge and skills needed to assess chemical, biological, and physical hazards, as well as the risks associated with exposure to toxicological agents.

After completing the MSc programme in Toxicology and Environmental Health, you will:

  • have a thorough understanding of risk assessment terminology, principles, and methodology;
  • be able to perform a basic risk assessment, making use of toxicological or epidemiological data;
  • have a broad appreciation of biological, chemical, and physical environmental health hazards, both indoors and outdoors, as well as their potential impact on human health;
  • understand the multi‐disciplinary nature of risk assessment;
  • have an understanding of current and emerging issues and techniques in health risk assessment; and
  • be able to design and set‐up a targeted health risk assessment, making optimal use of the information and approaches available to you.


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Study under Australia's leading occupational researchers and make a difference to the lives of individuals and communities affected by environmental and work-related injury and illness with this practical master's degree. Read more
Study under Australia's leading occupational researchers and make a difference to the lives of individuals and communities affected by environmental and work-related injury and illness with this practical master's degree.

You will gain the skills and knowledge to prevent and manage occupational risks and related health problems. This degree provides you with the skills necessary to evaluate health problems in communities thought to be associated with industrial activities, and control related hazards and risks.

It is particularly suitable for medical practitioners, nurses, allied health personnel, scientists and occupational health and safety managers.

Most of the course is offered by off-campus learning, with compulsory block requirements each semester. The program comprises nine core units and three electives.. The core units cover OHS, epidemiology, biostatistics, chemical and biological hazards, workplace hazard assessment and control, ergonomic and physical hazards, the psychosocial work environment, environmental influences on health, safety management systems, and research methods.

You can exit early with a Graduate Diploma in Occupational and Environmental Health or a Graduate Certificate in Occupational Health if you meet the requirements.

Visit the website http://www.study.monash/courses/find-a-course/2016/occupational-and-environmental-health-2312?domestic=true

Career opportunities

Graduates may seek employment in occupational medicine, occupational nursing, management positions within industry, government or independent professional practice. This course is recognised by the Australasian Faculty of Occupational Medicine.

For more information visit the faculty website - http://www.study.monash/media/links/faculty-websites/medicine

Faculty of Medicine, Nursing and Health Sciences

The Faculty is also home to a number of leading medical and biomedical research institutes and groups, and has contributed to advances in many crucial areas: in vitro fertilisation, obesity research, drug design, cardiovascular physiology, functional genomics, infectious diseases, inflammation, psychology, neurosciences and mental health.

Notwithstanding the relatively short history of our University, the Faculty is ranked in the top 50 in the world for its expertise in life sciences and biomedicine by the Times Higher Education and QS World University 2012 benchmarks.

Courses offered by the Faculty include medicine, nursing, radiography and medical imaging, nutrition and dietetics,emergency health studies, biomedical sciences, physiotherapy, occupational therapy, and social work. A range of research and coursework postgraduate programs is also offered.

The Faculty takes pride in delivering outstanding education in all courses, in opening students to the possibilities offered by newly discovered knowledge, and in providing a nurturing and caring environment.

Further details may be found at: http://www.med.monash.edu.au/about.html

Find out how to apply here - http://www.study.monash/courses/find-a-course/2016/occupational-and-environmental-health-2312?domestic=true#making-the-application

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The Performing Arts Medicine MSc at UCL is a unique programme providing specialised training to those interested or already involved in offering health services to this very special sector of instrumental musicians, singers, dancers, actors and other performing artists. Read more

The Performing Arts Medicine MSc at UCL is a unique programme providing specialised training to those interested or already involved in offering health services to this very special sector of instrumental musicians, singers, dancers, actors and other performing artists.

About this degree

The MSc and diploma cover musculoskeletal injury, performance psychology, pain management, assessment and rehabilitation, disability, travelling and touring, dance and music performance science, management of the professional voice and research methodology. MSc students also engage in a research project and dissertation. The certificate is a limited curriculum version for non-clinicians or clinicians who wish to upgrade at a later time.

Students undertake modules to the value of 180 credits.

The MSc programme consists of eight core modules (120 credits) and the research project (60 credits).

A Postgraduate Diploma (eight core modules, 120 credits)

A Postgraduate Certificate (four core modules, 60 credits)

Core modules

  • Clinical Assessment and Rehabilitation of the Performing Artists
  • Clinical Management of the Professional Voice*
  • Pain and Disability Management within the Performing Arts World
  • Environmental & Lifestyle Issues for the Performing Artist*
  • Musculoskeletal and Neuromuscular Performance Related Injury
  • Performance Psychology*
  • Research Methodology
  • Science of Dance and Music Performance*

*PG Cert core module

Optional modules

There are no optional modules for this programme.

Dissertation/research project

All MSc students undertake a research project which culminates in a dissertation of approximately 6,000–7,000 words, a presentation and a viva.

Teaching and learning

The delivery of the programme is through lectures, tutorials or workshops. Performing arts clinics and performance settings when possible are also included in the programme. Details about the lecturers and tutors can be found here

Assessment is through coursework, written examinations and objective structured clinical examinations (OSCEs).

Further information on modules and degree structure is available on the department website: Performing Arts Medicine MSc

Funding

For a comprehensive list of the funding opportunities available at UCL, including funding relevant to your nationality, please visit the Scholarships and Funding website.

Careers

Graduates gain in-depth knowledge of the diverse field of performing arts medicine. Their specialised skills can be incorporated in their own professional practice or they can participate in performing arts clinics in various settings e.g. conservatoires, orchestras, music or dance colleges. 

Graduates' knowledge and experience is valued and they may be invited as educators and trainers in performing arts medicine and will become members of an ever-growing medical community with common interest in the wellbeing of the performer. 

Graduates who have aspirations for further academic study and research activity, such as progressing to a PhD, will receive appropriate guidance.

Recent career destinations for this degree

  • Performing Arts Medicine Specialist, Perform Health
  • GP (General Practitioner), Grove Surgery
  • Physiotherapist, NHS (National Health Service)
  • Physiotherapist, Perfect Balance Clinic
  • Lecturer, Birmingham Conservatoire

Employability

Assessing a performing artist requires specialised skills and the ability to associate health issues with the particular artistic activity. The programme provides its students with broad knowledge of the art forms and their demands on the performer and how these impact on their wellbeing. With focused tutorials and real life scenarios the student builds the confidence to assess and diagnose or refer appropriately as well as to monitor rehabilitation and return to performance. The privileged position of the health professional in helping performers overcome often career threatening adversity is a most rewarding experience that enriches this type of work.

Careers data is taken from the ‘Destinations of Leavers from Higher Education’ survey undertaken by HESA looking at the destinations of UK and EU students in the 2013–2015 graduating cohorts six months after graduation.

Why study this degree at UCL?

No other MSc programme currently exists that brings together all elements of performing arts medicine. This unique programme has been designed for health professionals entering this diverse field.

The programme is taught and supervised by lecturers working in this and affiliated fields. Research is supported by the Institute of Sport Exercise and Health, the British Association of Performing Arts Medicine, orchestras, theatre companies, and music and dance colleges.

Graduate students present in international conferences and publish in journals becoming members of the global performing arts medicine community.



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The graduate program in Occupational and Environmental Hygiene is offered by the School of Population and Public Health and is a complement to its graduate programs in Population and Public Health. Read more

Program Overview

The graduate program in Occupational and Environmental Hygiene is offered by the School of Population and Public Health and is a complement to its graduate programs in Population and Public Health. The vision of the graduate program in Occupational and Environmental Hygiene is a world in which risks from occupational and environmental hazards are minimized by their recognition, evaluation, and control, to the benefit of workplace and community health and well-being.

Students interested in research or professional careers in any aspect of workplace or community environmental exposures and their impact on human health are encouraged to apply. The program's major research themes include acoustics, noise and vibration; exposure assessment; analytical methods development using immunological, biological, chemical and microsensor methods; occupational and environmental epidemiology; and risk assessment and translation of research to policy.

Program Requirements

Students in the M.Sc. program may choose to follow a project or thesis option. Because of the varied backgrounds of students, both options are relatively course-intensive and include specific non-credit requirements related to adult education in addition to regular coursework.

Students in the project option must complete 27 credits chosen from a list of specified core courses, a further 9 credits of approved electives, and a 6-credit project based on a four-month co-op placement (culminating in a comprehensive technical report and presentations) to make up a total of 42 credits of course and project work. After completion of all required components students must also pass a comprehensive examination.

Students in the thesis option must complete 18 credits chosen from a list of specified core courses, a further 12 credits of approved electives, and a 12-credit research thesis (culminating in an oral examination) to make up a total of 42 credits of course and research work.

Quick Facts

- Degree: Master of Science
- Specialization: Occupational and Environmental Hygiene
- Subject: Health and Medicine
- Mode of delivery: On campus
- Program components: Coursework + Options
- Faculty: Faculty of Medicine

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Our programme will give you a thorough grounding in the radiation and environmental protection aspects of nuclear physics. Read more

Our programme will give you a thorough grounding in the radiation and environmental protection aspects of nuclear physics.

This includes in-depth knowledge of radiation protection and showing you how the technical and organisational procedures of the discipline may be applied to the broader concept of environmental protection.

The substantial practical element of this programme enables you to relate taught material to real-world applications. Formal lectures are complemented with work in specialist radiation laboratories that were recently refurbished as part of a £1m upgrade to our facilities.

Here you will work with a wide range of radioactive sources and radiation detectors. There is also an extended project in the spring and an eleven-week MSc dissertation project in the summer.

Programme structure

This programme is studied full-time over one academic year and part-time students must study at least two taught technical modules per academic year. 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.

Research-led teaching

The programme material is taught by a combination of academics from the Department of Physics at Surrey and specialists provided by industrial partners. The Surrey academics are part of the Centre for Nuclear and Radiation Physics which houses the largest academic nuclear physics research group in the UK.

In addition to the formal lectures for taught modules, the programme provides a wide range of experimental hands-on training. This includes a nine-week radiation physics laboratory which takes place in the specialist radiation laboratories within the Department of Physics at the University of Surrey.

These were recently refurbished as part of a £1 million upgrade to the departmental teaching infrastructure. Within the Department, we also have a common room and a departmental library, which contains copies of earlier MSc dissertations.

As well as the laboratory training, you will also undertake a research project at the beginning of the Spring semester as a precursor to the eleven-week research dissertation project which makes up the final part of the MSc.

There are many opportunities for both the spring research project and summer dissertation project to be taken in an external industrial environment.

Careers

The programme has produced over 500 UK and overseas graduates, many of whom have gone on to well-paid positions in companies in the nuclear and radiation sectors. In the UK we need to decommission old reactors and build new ones to provide a low-carbon source of energy.

This, together with, for example, the importance of radioisotopes in fields such as medicine, means that the career prospects of our graduates are excellent.

Educational aims of the programme

The programme integrates the acquisition of core scientific knowledge with the development of key practical skills with a focus on professional career development within medical physics and radiation detection, and related industries.

The principle educational aims and outcomes of learning are to provide participants with advanced knowledge, practical skills and understanding applied to medical physics, radiation detection instrumentation, radiation and environmental practice in an industrial or medical context.

This is achieved by the development of the participants’ understanding of the underlying science and technology and by the participants gaining an understanding of the legal basis, practical implementation and organisational basis of medical physics and radiation measurement.

Programme learning outcomes

Knowledge and understanding

  • A systematic understanding of Radiation and Environmental Protection in an academic and professional context together with a critical awareness of current problems and / or new insights
  • A comprehensive understanding of techniques applicable to their own research project in Radiation and / or Environmental Protection
  • Originality in the application of knowledge, together with a practical understanding of radiation-based, experimental research projects
  • An ability to evaluate and objectively interpret experimental data pertaining to radiation detection
  • Familiarity with generic issues in management and safety and their application to Radiation and Environmental Protection in a professional context

Intellectual / cognitive skills

  • The ability to plan and execute under supervision, an experiment or investigation and to analyse critically the results and draw valid conclusions from them. Students should be able to evaluate the level of uncertainty in their results, understand the significance of uncertainty analysis and be able to compare these results with expected outcomes, theoretical predictions and/or with published data. Graduates should be able to evaluate the significance of their results in this context
  • The ability to evaluate critically current research and advanced scholarship in the discipline of radiation protection
  • The ability to deal with complex issues both systematically and creatively, make sound judgements in the absence of complete data, and communicate their conclusions clearly to specialist and non- specialist audiences

Professional practical skills

  • The ability to communicate complex scientific ideas, the conclusions of an experiment, investigation or project concisely, accurately and informatively
  • The ability to manage their own learning and to make use of appropriate texts, research articles and other primary sources
  • Responsibility for personal and professional development. Ability to use external mentors for personal / professional purposes

Key / transferable skills

  • Identify and resolve problems arising from lectures and experimental work
  • Make effective use of resources and interaction with others to enhance and motivate self-study
  • Make use of sources of material for development of learning and research such as journals, books and the internet
  • Take responsibility for personal and 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.



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MSc in Environmental Engineering. MSc in Environmental Engineering and Business Management. MSc in Environmental Engineering and Sustainable Development. Read more
MSc in Environmental Engineering

MSc in Environmental Engineering and Business Management

MSc in Environmental Engineering and Sustainable Development

This course provides training in all aspects of the supply of clean water, the control of pollution and the protection of public health, waste water treatment, air pollution control and solid waste management.

The problems of both industrialised and less developed countries are addressed in detail.

A close collaboration exists with the London School of Hygiene and Tropical Medicine and the Water Research Centre.

The Chartered Institution of Water and Environmental Management meets regularly at the College, and students are encouraged to attend these meetings.

All of our MSc courses are career-orientated and cover both theoretical background and practical design considerations.

Lectures are given mainly by full-time staff but important contributions are made by visiting professors and guest lecturers who are eminent industrialists.

Many of our students continue their studies to undertake research towards a PhD.

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The MSc in International Health and Tropical Medicine provides a multidisciplinary and interdisciplinary foundation in global health. Read more
The MSc in International Health and Tropical Medicine provides a multidisciplinary and interdisciplinary foundation in global health. This exciting new course embraces the breadth and complexity of global health challenges facing resource limited contexts and equips candidates with the tools and awareness to contribute to innovative solutions. The course is embedded within the Oxford Centre for Tropical Medicine and Global Health [embedded link] and benefits from the Centre's reputation and expertise in Global Health research and practice.

The course aims to develop students':
• knowledge and understanding of the major global health problems in resource limited settings and their potential solutions;
• knowledge and skills in research techniques applied in the analysis of global health problems, including quantitative and qualitative research methods, health policy and systems research and public health, with opportunities for training in additional specialist fields;
• capacity to critically appraise evidence in global health;
• skills and practical experience in researching specific health problems.

Upon completion of the course, students will be equipped to continue to advance their knowledge, understanding and skills further in research or professional practice in the field of global health. In the future we anticipate our graduates will assume leadership and research positions within major international health organisations and ministries of health.

Course Content:
In the first term, the course provides an introduction to the breadth of topics in, and methods applicable to global health. The second term offers options ranging from international development to vaccinology. The third term provides students with the unique opportunity to apply their skills and gain first hand experience in a global health project in a resource limited setting. Students will then produce a 10,000 word dissertation related to their third term project.

The first term will consist of core topics on research methods, an overview of some major global health challenges, and topics related to the research and practice of global health. Core modules include:
1. Paradigms and Tools for Global Health: This module will cover epidemiology, statistics, health economics, social science for health and health policy and systems analysis. Methodological paradigms in the health and social sciences will be introduced and basic tools provided for each. Upon completion of this module, students will be able to critically review published literature covering a wide range of global health topics and can opt to further their application skills through the third term placement project.
2. Challenges and Change in International Health: This module will cover some of the key health challenges found in resource limited contexts. Topics will include: water and sanitation; land use, population and migration; climate change; nutrition; vector borne diseases; vaccine preventable diseases; neglected tropical diseases; maternal and child health; non-communicable diseases; accidents and injuries. Upon completion of this module, students will have a broad awareness of the kinds of factors affecting international health, their challenges, solutions that have worked and current efforts to affect change.
3. Global Health Research and Practice: This module highlights some of the important considerations in the research or practice of global health. Topics covered include global health governance, global health research ethics, challenges to research in global health, data management and governance, health impact evaluation, design of disease prevention and health promotion programmes, health programme evaluation, and outbreak investigation.

In the first term, there will be a series of problem-based learning sessions to integrate the core topics covered and allow students the opportunity to engage in more depth with real global health scenarios.

During the second term, in addition to some continued core content, students can select two of the following six options for further study:
1. Advanced Topics in Tropical Medicine: This option delves deeper into the range of infectious diseases affecting resource limited settings and provides a historical account of efforts to address them, the failures and successes, as well as current developments and advances.
2. Vaccinology: This exciting option is for those with an interest in the application of more basic science. The module will examine the science of vaccine development and the challenge of its application in real world contexts. The content will cover advances at the cutting edge of vaccine development.
3. Reproductive, Maternal, Newborn and Child Health: This option addresses in more depth the persisting challenges faced by mothers, infants and young children in resource limited settings. Topics will engage with the current challenges, discuss viable solutions and address the obstacles to implementation.
4. International Development and Health: This option, offered jointly to MPhil students in Development Studies, aims to introduce students to the important linkages between processes of development (political and economic) and health. The module challenges conventional health thinking and compels a broader consideration of the inter-related factors affecting the health of populations.
5. Health, Environment and Development: This innovative option brings together students (and teachers) from Geography, Development and Global Health to engage with a series of cases illustrating the intersection between processes of development, environmental changes and human health.
6. Case Studies in Field Epidemiology: This option aims to familiarise students with the principles and practice of field epidemiology by lectures and discussions of outbreak investigation case studies.

The third term will involve a funded eight week placement with a global health project in a resource limited setting. Projects represent the range of subjects covered in the course. We have established a series of projects hosted by the Oxford Tropical Network in various geographic regions. Students, with advice from their departmental tutors, may choose from the placements available or propose their own placement (providing it meets course guidelines). The placement project will then form the basis of an independent 10,000 word dissertation to be submitted six weeks after return from placement.

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This master's degree aims to provide participants with the basic tools they need to generate scientific knowledge for improving health care. Read more
This master's degree aims to provide participants with the basic tools they need to generate scientific knowledge for improving health care. The content ranges from the genetic, nutritional and environmental factors of growth and development – taught at a highly specialized level using hypothesis formulation – to the design of studies and statistical analyses for health problems, the drawing up of research protocols for studies involving children (including ethical implications), and the publication of results.

The main objective is to train students to work as researchers, teachers and professionals with a multidisciplinary profile. They will have an overall knowledge of all areas of growth and development and will be able to act as project leaders and adapt effectively to a rapidly changing context.

Student Profile

The Inter-university Master's Degree in Genetic, Nutritional and Environmental Factors in Growth and Development is aimed to the training researchers, teachers and professionals with a multidisciplinary profile having a global knowledge of all areas related to growth and development being able to lead the development of projects and adapt to changes quickly.

Career Opportunities

Graduates in Inter-university Master's Degree in Genetic, Nutritional and Environmental Factors in Growth and Development are able to work in companies in the food sector that carry out genetic studies and companies dealing with environmental issues; departments of paediatrics, nutrition and food science, diet and nutrition, biochemistry, immunology, pharmacology, genetics, medical education, and education for health; health and safety programmes; neurological development; personality, evaluation and psychological treatment; evolutionary and educational psychology; experimental psychology; physiology of behaviour; experimental science teaching; social anthropology; teaching and research.

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Provides you with a broad overview of the molecular and cellular causes and treatments of human diseases. Develop a practical and theoretical understanding of the most important topics in molecular medicine. Read more
  • Provides you with a broad overview of the molecular and cellular causes and treatments of human diseases
  • Develop a practical and theoretical understanding of the most important topics in molecular medicine
  • Gain hands-on training in research techniques such as confocal microscopy, flow cytometry, cloning, in situ hybridisation and bioinformatics
  • Learn to apply your skills to industry-relevant challenges

What will you study?

Sample modules:

  • Research techniques and experimental design
  • Advanced topics in biomedicine
  • Biology of cancer
  • Synthetic biology
  • Regenerative medicine

Please note that all modules are subject to change. Please see our modules disclaimer for more information.

What career can you have?

All our master’s programmes emphasise the practical skills that employers need, whether that is the ability to identify plants, carry out environmental assessments or use the latest cutting-edge molecular techniques. As a University of Reading MSc graduate, you will be well equipped to work in the field or the lab, and in the private or public sector. Many of our graduates go on to study for a PhD and pursue a career in research either in industry or in universities.

Typical roles of graduates from our ecology and wildlife-based MSc programmes include conservation officers, project managers, field ecologists and environmental consultants. Graduates from our biomedical MSc programme typically go on to pursue PhD studies or work in the pharmaceutical industry.



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Established for over 15 years and completed by more than 200 students from ten different countries, this programme is based on a multidisciplinary approach to tackling a wide range of occupational health issues and is accredited by both the Institute of Occupational Safety and Health (IOSH) and the British Occupational Hygiene Society (BOHS) for graduate membership. Read more
Established for over 15 years and completed by more than 200 students from ten different countries, this programme is based on a multidisciplinary approach to tackling a wide range of occupational health issues and is accredited by both the Institute of Occupational Safety and Health (IOSH) and the British Occupational Hygiene Society (BOHS) for graduate membership.

Organised by the Institute of Occupational and Environmental Medicine (IOEM) at the University of Birmingham this programme is designed to meet the needs of postgraduate training in the prevention and control of work-related ill health and to understand the issues of ill health and its effect on work in the 21st century.

Open to graduates with relevant first degrees and those with appropriate work experience including doctors, nurses, hygienists, and health and safety personnel.

Aiming to develop the practitioner in occupational health and associated disciplines, this programme combines the academic and practical aspects of occupational health so that you can contribute to the development of occupational health services as well as improving practices and dealing effectively with management issues.

About the College of Medical and Dental Sciences

The College of Medical and Dental Sciences is a major international centre for research and education, make huge strides in finding solutions to major health problems including ageing, cancer, cardiovascular, dental, endocrine, inflammatory diseases, infection (including antibiotic resistance), rare diseases and trauma.
We tackle global healthcare problems through excellence in basic and clinical science, and improve human health by delivering tangible real-life benefits in the fight against acute and chronic disease.
Situated in the largest healthcare region in the country, with access to one of the largest and most diverse populations in Europe, we are positioned to address major global issues and diseases affecting today’s society through our eight specialist research institutes.
With over 1,000 academic staff and around £60 million of new research funding per year, the College of Medical and Dental Sciences is dedicated to performing world-leading research.
We care about our research and teaching and are committed to developing outstanding scientists and healthcare professionals of the future. We offer our postgraduate community a unique learning experience taught by academics who lead the way in research in their field.

Funding and Scholarships

There are many ways to finance your postgraduate study at the University of Birmingham. To see what funding and scholarships are available, please visit: http://www.birmingham.ac.uk/postgraduate/funding

Open Days

Explore postgraduate study at Birmingham at our on-campus open days.
Register to attend at: http://www.birmingham.ac.uk/postgraduate/visit

Virtual Open Days

If you can’t make it to one of our on-campus open days, our virtual open days run regularly throughout the year. For more information, please visit: http://www.pg.bham.ac.uk

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This programme recognises the increasing demand from both industry and enforcement bodies to integrate occupational health, safety and environmental management issues. Read more
This programme recognises the increasing demand from both industry and enforcement bodies to integrate occupational health, safety and environmental management issues.

On completion of this course you will be able to identify hazards, evaluate risks, and suggest control measures in a range of situations. The course is accredited by the Institution of Occupational Safety and Health.

The programme is a collaborative endeavour with the Institute of Occupational and Environmental Medicine. It recognises the increasing demand from both industry and enforcement agencies to integrate occupational health, safety and environmental issues.

Postgraduate Diploma

Subjects studied include the following:

Environmental Protection
Safety Technology
Risk and Safety Management
Occupational Health and Hygiene
Chemical and Biological Incident Management
MSc

(As above, plus the following):

Research Methods and Dissertation
The programme is accredited by the Institution of Occupational Safety and Health.

About the School of Geography, Earth and Environmental Sciences

The School of Geography, Earth and Environmental Sciences has a renowned history for international excellence in research and teaching.
Our postgraduate programmes are shaped by research that addresses global grand challenges across the fields of geography, planning, earth sciences, environmental science, occupational health and safety, and environmental and public health. With policy- and practice-focused teaching, all our programmes have high employability outcomes.
We offer excellent facilities for postgraduate study including extensive map and archive facilities, earth imaging laboratory, stable-isotope laboratory (SILLA), environmental library, fully digital drawing office, and state-of-the-art laboratories for environmental chemistry, sedimentology, ecology, groundwater and palaeobiology. Our diverse range of programmes will provide you with a thorough understanding of the discipline, high-quality training and skills development, and access to our expert staff and extensive facilities.
Our graduates go on to forge careers in areas that matter – from environmental consultancies and the hydrocarbon industries, to urban planning, policy roles in NGOs and government regulatory services – and make a real contribution to global challenges. Many graduates also go on to study for PhDs.

Funding and Scholarships

There are many ways to finance your postgraduate study at the University of Birmingham. To see what funding and scholarships are available, please visit: http://www.birmingham.ac.uk/postgraduate/funding

Open Days

Explore postgraduate study at Birmingham at our on-campus open days.
Register to attend at: http://www.birmingham.ac.uk/postgraduate/visit

Virtual Open Days

If you can’t make it to one of our on-campus open days, our virtual open days run regularly throughout the year. For more information, please visit: http://www.pg.bham.ac.uk

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Research degrees are ideal for those wishing to study for a PhD and/or those aiming to improve their laboratory and practical skills. Read more

Course summary

Research degrees are ideal for those wishing to study for a PhD and/or those aiming to improve their laboratory and practical skills. Students wishing to study for a PhD must identify a project supervisor with whom they work to develop a project outline.

Key features

-Intensive period of independent laboratory based training

Career opportunities

Possible careers include: academic/research positions; pharmaceutical industry; biotech companies; environmental agencies; entrepreneurship; patent or science communication

The University welcomes research degree applications in the following areas:

-Biochemistry and cell biology
-Biosensors
-Cancer
-Computational biology
-Ecology, conservation and environmental policy
-Environmental biotechnology and sustainability
-Forensic science
-Immunology
-Kidney disease and diabetes
-Metabolic disease
-Microbiology
-Neuroscience
-Pharmacology

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This study course is for students who wish to become specialised graduates with an advanced biomedical knowledge concerning the links between the structure and the purpose of biomolecules and bio-systems operating at cellular and tissue level of the human body, in both physiological and pathological conditions. Read more

This study course is for students who wish to become specialised graduates with an advanced biomedical knowledge concerning the links between the structure and the purpose of biomolecules and bio-systems operating at cellular and tissue level of the human body, in both physiological and pathological conditions. The wide knowledge of the techniques is based on a solid practical activity in laboratories during the internship.

Subject to the educational aims of Class LM-9, the acquired knowledge allows specialized graduates to assist physicians in the diagnostic and therapeutic tasks involving the manipulation of cells, genes, and other biosystems requiring applicants to learn special skills in experimental biotechnology (e.g. Diagnosis and gene therapy; therapy through the use of genetically engineered cells; rational design and development of new medicines based on models of molecular targets known or derived from pharmacogenomic knowledge; preparation of nano-biotechnological tools for advanced diagnostics imaging and drug delivery; modulation of the immune response; diagnostics based on innovative processes of science and medical laboratory techniques; immunotherapy to targeted cells); organize and coordinate laboratory activities for advanced research or for diagnostic examinations requiring the use of biotechnological methods and the manipulation of cells or biotechnological materials; organize and coordinate the experimental protocols of clinical research involving the use of materials or biotechnology techniques; design and perform with autonomy research in biotechnology applied to medicine; lead and coordinate, also in governance, development programs and surveillance of biotechnology applied to human beings, taking into account the ethical, technical, environmental and economic implications.

Course structure

First year: Advanced Biomedical Technologies Or Laboratory Activities 1: Cellular And Molecular Therapies Or Laboratory Activities 2: Molecular And Systems Biology, Laboratory Medicine Technologies And Molecular Diagnostics, Pharmaceutical Biotechnology: Design And Analysis Of Biopharmaceuticals, Seminar

Molecular Medicine Curriculum: 6 Months At Ulm University: Glp/Gsp Bioethics, Molecular Oncology, Trauma Research And Regenerative Medicine

Traditional Curriculum: Proteomics And Bioinformatics, Cell And Organ Physiology And Medical Pathophysiology, Genetics, Immunology And General Pathology, Nanobiotechnology

Second year: Experimental Models In Vivo And Vitro, Pharmacology And Molecular Therapies, Stem Cell Biology And Molecular Biology Of Development, Thesis Work

Molecular Medicine Curriculum + Proteomics And Bioinformatics

Career opportunities

Biotechnology physicians will be able to head research laboratories in a predominantly technological and pharmacological environment and coordinate, as well as in terms of management and administration, program development and the monitoring of biotechnology applied on human beings with emphasis on the development of pharmaceutical products and vaccines, taking into account the ethical, technical, and legal implications and environmental protection.

  • To work in industry (pharma, biotech companies) for new diagnostics, molecular therapeutics, regenerative medicine and vaccines
  • To work in academia as a researcher in one of the many fields of Molecular Medicine
  • To be an entrepreneur in Biotech start up companies as a result of scientific discoveries

Graduates will be able to assist doctors in the diagnostic and in the therapeutic phases when those imply the manipulation of cells, genes and other bio systems and when specific biotechnological experimental competences are required.

Scholarships and Fee Waivers

The University of Padova, the Veneto Region and other organisations offer various scholarship schemes to support students. Below is a list of the funding opportunities that are most often used by international students in Padova.

You can find more information below and on our website here: http://www.unipd.it/en/studying-padova/funding-and-fees/scholarships

You can find more information on fee waivers here: http://www.unipd.it/en/fee-waivers



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