Triangle

This course is closed to UK/home applicants for 2021 entry.

Course overview

Our course explores the relationship between humans and the environment. You'll develop the skills to tackle environmental problems and deliver a sustainable future.

We need scientists to respond to some of the biggest environmental challenges:

  • climate change
  • biodiversity loss of species and habitat
  • environmental pollution

You'll study global environmental issues, whilst gaining valuable life skills. In your second year you'll spend a semester at two of the following locations:

  • University of Nottingham Malaysia
  • Australia
  • USA
  • The Netherlands

Topics include:

  • environmental impact assessment
  • renewable energies
  • environmental policy
  • pollution monitoring

Practical work

Alongside the theory and background, we'll teach you a lot of practical skills. You'll gain experience in surveying techniques commonly used as an environmental consultant. For example, monitoring environmental pollutants. Day trips, field work and visits to local sites will include activities such as:

  • bat surveys
  • phase one habitat surveys
  • sustainable homes
  • renewable energy
  • winter tree ID

There is no additional costs to you for these activities. You can also choose to do a field course in Sweden.

Why choose this course?

  • Study abroad at two different locations to widen your knowledge and build life skills 
  • Study a wide range of subjects including geography and biology with the flexibility to specialise in your area of interest
  • Our passionate teaching team includes researchers who work with environmental consultancies on bioenergy technology projects
  • Ranked 2nd in the Guardian University Guide 2021 for agriculture, forestry and food
  • Accredited by the Institution of Environmental Sciences, meaning our courses meet high standards of practical, field and theoretical activities
  • Get real-life experience with an industry placement year, you could work at Dartmoor Zoo or the Field Studies Council

Entry requirements

All candidates are considered on an individual basis and we accept a broad range of qualifications. The entrance requirements below apply to 2021 entry.

UK entry requirements
A level AAB-BBB

Please note: Applicants whose backgrounds or personal circumstances have impacted their academic performance may receive a reduced offer. Please see our contextual admissions policy for more information.

IB score 34-32 including 5 in one science subject at Higher Level

A levels

AAB-BBB including one of these preferred subjects:

biology, chemistry, physics, geography, maths, geology, environmental science or equivalent.

Citizenship studies, critical thinking, general studies and leisure studies 
not accepted. We may also consider ABC depending on predicted grades in specific subjects.

You can apply to transfer to the MSci degree, subject to meeting minimum academic requirements of 55% at the end of year two at your first sitting.

Foundation progression options

Foundation year - a foundation year is available for this course

Science with Foundation Year

If you have achieved high grades in your A levels (or equivalent qualifications) but do not meet the current subject entry requirements for direct entry to your chosen undergraduate course, you may be interested in our science foundation programme.

There is a course for UK students and one for EU/international students.

Applicants must also demonstrate good grades in previous relevant science subjects to apply. You are guaranteed a place on selected undergraduate courses if all progression requirements are met.

Science Foundation Certificate

International students only

International students (non-EU) who do not have the required qualifications or grades to go directly onto an undergraduate degree course, may be interested in the Science Foundation Certificate delivered through the University of Nottingham International College. You are guaranteed a place on selected undergraduate courses if all progression requirements are met.

Mature Students

At the University of Nottingham, we have a valuable community of mature students and we appreciate their contribution to the wider student population. You can find lots of useful information on the mature students webpage.

Learning and assessment

How you will learn

Teaching methods

  • Lab sessions
  • Field trips
  • Practical classes
  • Lectures
  • Seminars
  • Workshops
  • Problem-based learning
  • Computer labs
  • Field courses

How you will be assessed

You will receive a copy of our marking criteria which provides guidance on how we will assess your work. Your work will be marked on time and you will receive regular feedback.

Your final degree classification will be based on marks gained in your second and third years of study.

You must pass each year to progress. This typically means that you will need to achieve marks of at least 40% in each module. Full details on our marking criteria and structure will be provided at your induction.

To study abroad as part of your degree, you must meet minimum academic requirements in year one.

Assessment methods

  • Coursework
  • Group project
  • Lab reports
  • Oral exam
  • Poster presentation
  • Research project
  • Written exam

Contact time and study hours

In your first year, you will take 120 credits in core modules. As a guide, one credit equals approximately 10 hours of work. You will spend around half of your time in lectures, seminars and practicals. The remaining time will be independent study. Core modules are typically taught by professors or associate professors. PhD students may support teaching on some modules.

Year in industry

It is possible to do a year in industry as part of this international degree programme. We have excellent links with companies, and can help to find the best placement for you. Often a placement year can help you to secure to a graduate job.

Our students have been on placement with:

  • Game and Wildlife Conservation Trust
  • The Whitley Wildlife Trust
  • British Geological Survey

The industry placement takes place between years two and three of your degree. You can apply during year two of your degree, subject to meeting minimum academic requirements.

Study Abroad and the Year in Industry are subject to students meeting minimum academic requirements. Opportunities may change at any time for a number of reasons, including curriculum developments, changes to arrangements with partner universities, travel restrictions or other circumstances outside of the university’s control. Every effort will be made to update information as quickly as possible should a change occur.

Modules

We introduce concepts of climate and how that impacts on functioning of the Earth's ecosystems. You'll explore biodiversity and look at the loss of species and habitats.

Core modules

Climate, Atmosphere and Oceans

This module introduces key components of the Earth's circulation systems and how those contribute to determining the Earth’s climate on regional scales. It provides an overview of weather formation, atmospheric and ocean chemistry, large scale ocean circulation patterns, and Earth’s resulting climatic zones. It will introduce concepts of climate and how that impacts on functioning of the Earths ecosystems.

You will develop process based understanding of these factors practical as well as the spatial distribution of weather patterns and ocean currents. You will use models and field measurements of air flow to test how energy is transported.  We will look at the scale, rates, distribution and causes of weather systems and the implications of this for global climate change. We will examine the linkages between weather systems and ocean currents.

Global Environmental Processes
The unifying theme of this module is biogeochemical cycling - the production, distribution and cycling of materials on the Earth and their availability to, and use by, biological organisms. The module starts by covering the history of the universe, from the big bang to the evolution of the Earth's surface environment. Then you will explore the major global systems and their circulations as they are today - solids, liquids and gases. In the final section you will examine the major materials - including carbon, nitrogen, sulphur, oxygen and metals - and their budgets and cycles; and the interactions between biological and physical/chemical processes on a global scale. You will have a two-hour lecture once a week for this module. 
Environmental Geoscience
Bulk properties of the Earth, minerals, igneous rocks, sedimentary rocks, metamorphic rocks, geological time, tectonics, geological structures, map interpretation, geological hazards, resource geology.
Environmental Science and Society

This module introduces you to the role and limitations of environmental science within the context practical environmental decision-making. During this module, we will look at how the degradation of our natural environment is creating unprecedented challenges for humans and society around the world. Science has a key role to play in helping us to understand and protect our environment. Public opinion of environmental issues and science is key to this, not least because the public funds 80% of scientific research. In this module, we will look at issues around scientific ethics, trust in science, denial, scepticism and science communication. Environmental problems are now very much part of the political agenda. We will look at the history of the environmental movement, environmental activism and environmental ethics. We will explore how and why we try to protect the environment through policy, legislation, international agreements and economic strategies.

The Ecology of Natural and Managed Ecosystems

Pollinator species are hugely important for natural systems and for managed systems like agriculture, but there is concern that numbers are declining. This module introduces you to the principles of ecology and looks at how organisms have evolved to interact with their environment.

You’ll cover:

  • population and community ecology
  • the various definitions of biodiversity
  • the loss of species and habitats

You’ll have lectures from current researchers in the field and the opportunity to apply your learning in the laboratory and through field visits. This is a 20 credit module.

Tutorials in Environmental Science

This 20 credit module will enable you to study effectively at university. Through lectures, practical's and tutorials you will develop your written presentation and data handling skills. You will learn:

  • how to use the library and other sources to retrieve information
  • how to read, understand and synthesise primary literature
  • how to produce a literature review on your chosen topic
Environmental Management Virtual Field Course

During this virtual field course module we will explore some of the landscapes, geological formations and biodiversity of the island. We will investigate the environmental pressures on the island and the impact of human activities such as tourism. Topics will include: energy production, desalination, and waste water treatment.

The above is a sample of the typical modules we offer but is not intended to be construed and/or relied upon as a definitive list of the modules that will be available in any given year. Modules (including methods of assessment) may change or be updated, or modules may be cancelled, over the duration of the course due to a number of reasons such as curriculum developments or staffing changes. Please refer to the module catalogue for information on available modules. This content was last updated on Wednesday 23 June 2021.

Your second year will be spent studying at two of our international university partners or campuses. You'll broaden your knowledge of international environmental science.

Core modules

  • The Soil Resource
  • Land and Water Ecochemistry
  • Contemporary Field and Lab Soil Science

Optional modules

  • Economic Environment of Agriculture
  • Plant Form and Function
  • Microbes in the Environment
  • Environmental GIS
  • Introductory Hydrology
  • Ecological Sustainability
  • Fluvial and Groundwater Geomorphology
  • Soil Properties and Processes
  • Agro-ecosystems in Developing countries
  • Advanced Hydrology and Modelling

Core modules

You will carry out an experimental or literature-based research project. Working closely with a member of academic staff you will design and deliver your project, which can be lab, field or literature based.

Previous students have given talks on their project work at undergraduate research conferences to MPs in the Houses of Parliament.

Research project in Environmental Science

You will undertake detailed research on a chosen topic after discussion with a supervisor. Each project will involve collection of data by means such as experiment, questionnaire or observation, as well as the analysis and interpretation of the data in the context of previous work.

Working closely with an academic supervisor, you develop and undertake a research project in your third year. You will present your results orally to your peers and in the form of a concise scientific paper.

The project encourages critical thinking and involves a detailed literature survey, data collection, analysis and interpretation.

Recent projects include:

  • Phytoremediation of contaminated soil
  • The effect of phosphogypsum on soil development
  • Reduction of atmospheric pollutant concentrations by hedgerows
  • Hazard assessment of heavy metal uptake to plants
  • Ecological impacts of veterinary drugs
  • Forest carbon storage and its role in mitigating CO² emission

Optional modules

Arctic Ecology Field Course

The course will focus on the function of arctic ecosystems. We will identify key terrestrial ecosystem drivers and processes in order to gain a broad understanding of arctic areas. During the field course, you will put ecological methodology into practice. Working on projects that analyse landscape patterns and processes in different habitats. The course will also address climate change impacts on arctic ecosystems. You'll develop skills in ecological methodology, experimental design, data collection and analysis, interpretation and presentation. You are required to pay a contribution towards the cost of the field course.

Environmental Biotechnology

In a series of lectures, this module provides training in environmental biotechnology, with particular emphasis on the interaction between microorganisms and the environment. The main topics covered will be wastewater treatment, bioremediation of organic and inorganic pollutants, microbes as indicators of risk factors in the environment, microbes in agriculture (biocontrol and biofertilisers) and the role of microorganisms in bioenergy production.

Conservation

Consider a range of approaches to conservation biology, such as the measurement and monitoring of biodiversity, and the legal frameworks and management strategies that exist to protect it. You will discuss particular threats to biodiversity, such as habitat loss and invasive species. You will spend around four hours per week in lectures and have four three-hour practicals to study for this module.

Palaeobiology

The module will focus on the processes that govern the interplay between the biosphere and geosphere. It will identify key events and processes in geological time which demonstrate the geological consequences of evolution. Students will gain understanding of the mechanisms that control changes in the physiochemical environmental and their impact upon evolution and in turn how life has impacted on the physiochemical environment.

Environmental Pollutants: Fate, Impact and Remediation

This module is concerned with the behaviour and effects of pollutants in terrestrial and aquatic environments and how their impacts can be ameliorated and managed. The focus is on both the scientific understanding of environmental pollutants and on the intervention strategies currently available. Topics covered include study of the common water and soil pollutants: heavy metal contamination of land; radionuclide behaviour in the environment; persistent organic contaminants and pesticides; nitrate pollution of groundwater; pollution of surface waters by agriculture; eutrophication of lakes; acidification of soils and freshwaters; biological monitoring of rivers; ecotoxicology and environmental epidemiology; quantitative risk assessment; land reclamation, including landfill sites. You will have lectures, tutorials, a field visit and laboratory work and demonstrations.

Plants and the Soil Environment

What happens below the ground that affects the water and nutrient uptake by plants? In this module, you’ll examine the acquisition of water and nutrients by plants in both agricultural and natural systems, and how plants interact with the soil environment. You’ll learn about the evolution of root adaptations which enable plants to thrive in environments with limited or excess water and nutrients. In an agricultural setting, you’ll explore how water and nutrient uptake by plants can be used to improve crop productivity and resource management, and use the practical study component to investigate new methods and technologies for below-ground phenotyping of roots. You’ll have a mix of lectures and computer-based practicals to gain a fundamental understanding of how water and nutrients are acquired by plants from the soil environment, and their influence on plant growth and development.

Biological Photography and Imaging II

Extend and develop your skills of creative and critical biological photography through this advanced module. You will continue to develop the practice and experience gained in Biological Photography and Imaging 1. You are encouraged to demonstrate increasing expertise in selected subject areas and/or specialist photographic techniques such as digital imaging and manipulation (using Photoshop software), digital video photography and editing, ecological and environmental photography, landscapes, macro and long lens photography and specialist lighting. Field and studio work continue to be essential elements of the module. You will have around three hours of lectures per week studying this module.

Applied Bioethics 1: Animals, Biotechnology and Society

Animal-human interactions raise some prominent ethical issues. In this module, you’ll examine the ethical dimensions concerning animal agriculture, modern biotechnologies and research in the biosciences, in relation to both humans and non-human species. You’ll learn about the ethical frameworks used to analyse specific dilemmas raised by the human use of animals. Using specific animal and biotechnology case studies, you’ll interpret the main ethical theories and principles and apply them to the case studies to inform professional decision-making. You’ll have a mix of lectures and seminars to explore these concepts.

Applied Bioethics 2: Sustainable Food Production, Biotechnology and the Environment

Building on Applied Bioethics 1, you’ll investigate widely accepted ethical principles and apply your insights to contemporary ethical issues in agricultural, food and environmental sciences. You’ll explore the ethical dimensions of prominent issues raised by the agricultural practices (including the use of biotechnology and GM crops) designed to meet the nutritional needs of the global population. You’ll also learn about how ethical theory can inform professional choices and public policies related to food production and environmental management. You’ll have a mix of lectures, tutorials and team-based exercises to develop a sound understanding of ethical principles.

Computer Modelling in Science: Applications
Modern biological and environmental science includes the study of complex systems and large data sets, including imaging data. This necessitates the use of computer models and analyses in order to understand these systems. This module contains an introduction to computer programming and modelling techniques that are used in the biological and environmental sciences. Specifically, it contains: (i) Development, simulation and analysis for models in space and time, using the Python language, with applications in the biological and environmental sciences; (ii) Analysis of long term behaviour of models in two or more dimensions; (iii) Methods for fitting models to experimental and environmental data; (iv) analysis of image data. The module will focus on relevant applications in environmental and biological science, e.g. chemical, radioactive and biological pollution, crop development and pathogens and microbiology. The module will use the Python programming language throughout and be assessed by a patchwork assessment consisting of write-ups of assignments from during the semester.
The above is a sample of the typical modules we offer but is not intended to be construed and/or relied upon as a definitive list of the modules that will be available in any given year. Modules (including methods of assessment) may change or be updated, or modules may be cancelled, over the duration of the course due to a number of reasons such as curriculum developments or staffing changes. Please refer to the module catalogue for information on available modules. This content was last updated on

Arctic Ecology Field Course - Sweden

We'll take you up to the arctic circle to look at the impact of climate change on this pristine arctic ecosystem. This part of the world is predicted to have significantly more warming than other areas.

You'll do ecological surveys to measure the impact on the tundra.

env bio

Fees and funding

UK students

£9,250
Per year

International students

To be confirmed in 2022*
Keep checking back for more information

*For full details including fees for part-time students and reduced fees during your time studying abroad or on placement (where applicable), see our fees page.

If you are a student from the EU, EEA or Switzerland, you may be asked to complete a fee status questionnaire and your answers will be assessed using guidance issued by the UK Council for International Student Affairs (UKCISA) .

Additional costs

As a student on this course, you should factor some additional costs into your budget, alongside your tuition fees and living expenses.

Our field course to Sweden is subsidised by the University but will incur an additional cost. In 2017, the average cost was £250. You will also need to factor in costs for studying overseas for a year. This includes a visa application (approximately £300) and flights (up to £1,000). Currently there is a reduced tuition fee during the year on exchange.

You should be able to access most of the books you’ll need through our libraries, though you may wish to purchase your own copies. If you do these would cost around £40.

Due to our commitment to sustainability, we don’t print lecture notes but these are available digitally. You will be given £5 worth of printer credits a year. You are welcome to buy more credits if you need them. It costs 4p to print one black and white page.

If you do a work placement, you need to consider the travel and living costs associated with this.

Personal laptops are not compulsory as we have computer labs that are open 24 hours a day but you may want to consider one if you wish to work at home.

Scholarships and bursaries

Home students*

Over one third of our UK students receive our means-tested core bursary, worth up to £1,000 a year. Full details can be found on our financial support pages.

* A 'home' student is one who meets certain UK residence criteria. These are the same criteria as apply to eligibility for home funding from Student Finance.

International students

We offer a range of international undergraduate scholarships for high-achieving international scholars who can put their Nottingham degree to great use in their careers.

International scholarships

Careers

You could work for conservation organisations, environmental consultancies, alternative energy companies, local authorities and government agencies.

Roles include:

  • environmental education officers
  • engineering consultants
  • marine biologists
  • nature conservation officers
  • hydrology, recycling and sustainability officers

These degrees can also lead into roles in teaching, scientific journalism or further research degrees.

Average starting salary and career progression

85.3% of undergraduates from the School of Biosciences secured employment or further study within 15 months of graduation. The average annual salary for these graduates was £24,418.*

*Data from UoN graduates, 2017-2019. HESA Graduate Outcomes. Sample sizes vary.

Studying for a degree at the University of Nottingham will provide you with the type of skills and experiences that will prove invaluable in any career, whichever direction you decide to take.

Throughout your time with us, our Careers and Employability Service can work with you to improve your employability skills even further; assisting with job or course applications, searching for appropriate work experience placements and hosting events to bring you closer to a wide range of prospective employers.

Have a look at our careers page for an overview of all the employability support and opportunities that we provide to current students.

The University of Nottingham is consistently named as one of the most targeted universities by Britain’s leading graduate employers (Ranked in the top ten in The Graduate Market in 2013-2020, High Fliers Research).

Institution of Environmental Sciences

This course is accredited by the Committee of Heads of Environmental Sciences (CHES),the education committee of the Institution of Environmental Sciences (IES). A programme accredited by CHES is assured to meet high standards, contain a strong component of practical, field and theoretical activities,and has excellent opportunities for training, work experience and links to the professional environmental sector.

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" I chose an environmental science degree because I enjoyed science and this degree covered a wide range of topics. I didn’t know what career path I wanted to take so the flexibility within this course allowed me to explore different areas and then specialise in the ones I enjoyed. "

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Important information

This online prospectus has been drafted in advance of the academic year to which it applies. Every effort has been made to ensure that the information is accurate at the time of publishing, but changes (for example to course content) are likely to occur given the interval between publishing and commencement of the course. It is therefore very important to check this website for any updates before you apply for the course where there has been an interval between you reading this website and applying.