This four-year course includes a foundation year (Year 0), providing an alternative route into higher education if you don't have the traditional qualifications or can't meet the entry requirements for an undergraduate degree. As well as an understanding of the fundamentals of chemistry, you’ll gain laboratory experience and essential IT and research skills.
The Chemistry Extended Degree BSc begins with a foundation year (Year 0), during which you’ll gain a broad knowledge of key scientific disciplines and develop the confidence, motivation and skills that are vital for continuing on at honours level.
Throughout your foundation year and beyond, you’ll benefit from the knowledge and experience of our exemplary staff; many lecturers are current industry experts or active researchers. They’ll guide you through the fundamentals of physical, inorganic and organic chemistry and your chosen speciality topics.
You’ll learn in our £30 million Science Centre, with 280+ cutting-edge workstations, giving you hands-on experience with the latest technology in the field. As well as a laboratory-based project in your final year, you’ll have the opportunity to participate in various work-based placements.
Assessment consists of progress tests, online tests, coursework, practical reports and presentations.
In addition to the University's standard entry requirements, you should have:
All applicants must be able to demonstrate proficiency in the English language. Applicants who require a Tier 4 student visa may need to provide a Secure English Language Test (SELT) such as Academic IELTS. For more information about English qualifications please see our English language requirements.
Other applicants may have level 3 qualifications such as A level, BTEC Extended Diploma or Access to Higher education qualifications with high UCAS points and grades, but not in the relevant subject areas eg Biology and Chemistry, which are required to study for BSc programmes in the School of Human Sciences.
The modules listed below are for the academic year 2018/19 and represent the course modules at this time. Modules and module details (including, but not limited to, location and time) are subject to change over time.
Year 1 modules include:
This module introduces students to key biochemical concepts to provide a foundation for subsequent study in the Applied Biology, Biomedical Sciences, and Molecular & Pharmaceutical Science subject areas at Level 4.
The aim of this module is to give students the necessary background to appreciate the structure and function of the key molecules that cells are made of such as proteins, nucleic acids, lipids and carbohydrates. An introduction to the principles of cellular energetics and metabolism will be given, and the maintenance of biological pH buffering systems will be discussed. This will provide suitable grounding for the study of life science subjects at level 4
This module introduces students to key concepts of cell biology and human physiology to provide a foundation for subsequent study of biological subjects at Level 4. The key aims and objectives of this module are to enable students to achieve a fundamental knowledge base of biology which will underpin studies at higher levels. An introduction will be given to the structure of cells and the concept of the cell as the basic unit of life. A range of cell types will be discussed. Following an appreciation of the role of cells in the structure and function of tissues and organs, students will be introduced to the anatomy and physiology of key organ systems in the body.
This module will be introducing important ideas and concepts in fundamental chemistry that will allow students to study scientific subjects at level 4. The module aims to develop students’ understanding of fundamental concepts key to subjects involving the molecular sciences. In addition, skills adjunct to the chemical sciences including numeracy, logical argument, research, referencing and the utilisation of abstract models will be developed.
This module will introduce (i) the basic mathematical concepts needed to succeed on any science degree course; (ii) basic laboratory techniques related to life science modules, designed to support and re-inforce theoretical syllabus content; (iii) study skills to prepare students for future studies. The practical section will reinforce safe practice in the laboratory environment and introduce laboratory record keeping. The mathematics section will be taught using equations relevant to biology and chemistry to encourage connections between disciplines to be made. Supporting material will be available on-line; tutorial sessions will focus on practising mathematical techniques. Formative online pre-laboratory session questions will prepare the students in advance for the practical in question. Formative exercises in the form of mini tests will be carried out during tutorial sessions to reinforce the previous lecture.
In terms of aims, this module will enable students to consolidate their understanding of mathematics, and to increase confidence by extending their use of mathematical vocabulary, definitions and formal reasoning. The module will also give students an introduction to the laboratory environment and to simple biological and chemical procedures. Particular attention will be drawn to developing study skills, and to broadening students’ transferable skills in time management, writing and studying skills, enabling them to derive maximum benefit from their proposed courses of study. The module will also give students an introduction to the laboratory environment and to simple biological and biochemical procedures relevant to any science degree.
The first year of this extended degree (Year 0) is a modular course that runs over two semesters. In each semester, all full-time students enrol on four modules. Year 0 can also be studied part-time over two years.
Year 0 (Level 3) topics include:
Modules at levels 4, 5 and 6 can be found on the Chemistry BSc (Hons) course page.
Our graduates often find work in high technology science-based industries, although many also choose to go on to further study in order to maximise their earning potential.
Chemistry is also a popular degree with employers in all sectors, and you will find opportunities in finance, commerce and information technology among many other industries.
Extended degrees provide applicants with an alternative route into higher education. If you do not have traditional qualifications or cannot meet the entry requirements for an undergraduate degree, you may still be able to gain entry by completing an extended degree. Extended degrees include a Year 0, which is also known as a foundation year. Once you successfully complete your first year of study you will progress into Year 1 of an undergraduate degree.
Please note, in addition to the tuition fee there may be additional costs for things like equipment, materials, printing, textbooks, trips or professional body fees.
Additionally, there may be other activities that are not formally part of your course and not required to complete your course, but which you may find helpful (for example, optional field trips). The costs of these are additional to your tuition fee and the fees set out above and will be notified when the activity is being arranged.
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If you're a UK/EU applicant applying for full-time study you must apply via UCAS unless otherwise specified.
UK/EU applicants for part-time study should apply direct to the University.
Non-EU applicants for full-time study may choose to apply via UCAS or apply direct to the University. Non-EU applicants for part-time study should apply direct to the University, but please note that if you require a Tier 4 visa you are not able to study on a part-time basis.
The University and Colleges Admissions Service (UCAS) accepts applications for full-time courses starting in September from one year before the start of the course. Our UCAS institution code is L68.
If you will be applying direct to the University you are advised to apply as early as possible as we will only be able to consider your application if there are places available on the course.
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London Met alumnus Paul Gerrard returned to visit his alma mater and find out more about his father, who was Head of Chemistry at a predecessor of London Met.
Two London Met students have presented their dissertation research at Westminster Palace.
A London Met Chemistry student put his knowledge to the test and appeared on the BBC’s hit show, Pointless.
Chemistry BSc student chosen for highly sought after training week at GlaxoSmithKline.
Chemistry BSc students have been using 3D printing to give their learning an extra dimension.
Five students from London Met were selected to present their research at this year’s British Conference of Undergraduate Research.
London Metropolitan University has launched a project for Promoting and Disseminating Undergraduate student Research (PADUR)