Membership and Open University degrees

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76 Portland Place London W1B 1NT Tel: 020 7470 4800 Email: accreditation@iop.org www.iop.org Membership and Open University degrees The Institute of Physics welcomes applications for membership from Open University students who are studying physics-based degree programmes. The requirements for each class of membership are: Student Member - open to an Open University student who is studying any OU programme containing physics-related modules. Associate Member (AMInstP) - open to candidates who have already obtained an OU honours degree with the majority of courses in the physical sciences and/or engineering. The named degrees BSc Physical Science (B27), BSc Geosciences (B25), BSc Molecular Science (B26) and BSc Mathematics and Physics (Q77) all meet the requirements for Associate Membership as do the physics and astronomy pathways through the Natural Science degree (Q64). Member (MInstP) - open to those who meet the requirements of Associate Membership and have three years of experience during which professional skills were acquired. This experience could be gained through employment, education or training. In certain cases experience gained during, or prior to, OU degrees can be counted. Note that application can be made for the class of Member directly, without becoming a Student or Associate Member first, provided the requirements in terms of education and experience outlined above are met. If you would like to join the Institute in any of the categories above application forms are available on our website. Chartered Physicist The title Chartered Physicist (CPhys) guarantees that a physicist s competence in terms of education, experience and professional responsibility has been critically scrutinised and assessed to the satisfaction of the Institute s Council. The educational requirement for CPhys is an IOP accredited integrated Masters degree. Students with an accredited Bachelor degree will need to show equivalence to integrated Masters level. Current OU students wishing to progress to CPhys should ensure they obtain an honours degree that meets the requirements outlined in this document. Graduates that spread their study over more than one scheme or received transferred credit for modules listed as compulsory should apply to have their degree individually assessed. Students or graduates seeking further advice on the suitability of OU degrees for membership or Chartered Physicist, or to have their degrees individually assessed, should contact accreditation@iop.org March 2015 1

IOP accredited degree - Scheme 1 Valid for graduation dates up to and including 31/12/2002 MST207 Mathematical Methods, Models & Modelling (formerly MST204) Options Any five 30 point courses drawn from List 1 and 2, only two of which may be drawn from List 2. List 1 ST291 SMT356 Discovering Physics Images and Information Electromagnetism (or SM352) S281 Astronomy and Planetary Science S256 Matter in the Universe SM355 Quantum Mechanics SM351 Quantum Theory and Atomic Structure S272 The Physics of Matter T236 Introduction to Thermofluid Mechanics List 2 S342 Physical Chemistry: Principles of Chemical Change S357 Space, Time & Cosmology (or S354) MST322 Mathematical Methods & Fluid Mechanics T393 Electronic Materials and Devices T331 Engineering Mechanics: Solids & Fluids March 2015 2

IOP accredited degree - Scheme 2 Valid for graduation dates from 31/12/1999 up to 31/12/2007 The degree transcript must show: all the compulsory courses and 120 points from group 2 at least one residential course at least 60 Level 1 points from science, mathematics or technology The level 1 requirement may be replaced with level 2 or 3 courses if the course code begins with S, M or T. Group 1: S207 The Physical World* MST207 Mathematical Methods, Models & Modelling (or MST204) * Students can meet this requirement by passing either: Discovering Physics + S272 The Physics of Matter Discovering Physics + ST291 Images and Information** Group 2: Options S281 Astronomy & Planetary Science ST291 Images & Information** T236 Introduction to Thermofluid Mechanics S357 Space, Time & Cosmology (or S354) S381 The Energetic Universe SMT359 Electromagnetism (or SMT356) SM358 Quantum Mechanics (or SM355) MST322 Mathematical Methods & Fluid Mechanics T305 Digital Communications (or T322) T333 Heat Transfer: Principles & Applications T393 Electronic Materials & Devices ** ST291 may not be counted in both group 1 and group 2 Group 3: Experimental work*** SXR207 Physics by Experiment SMXR358 Quantum Mechanics: Experiments, Applications and Simulations SMXR359 Electromagnetism: Experiments, Applications and Simulations (or SMXR356) *** This requirement can also be met by one of the following: Discovering Physics S272 The Physics of Matter S207 The Physical World (in 2000) March 2015 3

IOP accredited degree - Scheme 3 Valid for graduation dates from 31/12/2004 up to 31/12/2013 Current students that wish to obtain an accredited degree but will be affected by the withdrawal of level 2 and 3 residential courses should contact accreditation@iop.org for advice. All of the following must be included: S207 MST209 SM358 SXP390 The Physical World Mathematical Methods and Models (or its predecessor MST207) The Quantum World (or its predecessor SM355) Science Project Course: Radiation and Matter Options At least one from the following must be included: SMT359 Electromagnetism (or its predecessor SMT356) S357 Space, Time and Cosmology Experimental work Successful attendance at two residential schools is required with at least one at level 3. One or both of the following: SMXR358 Quantum Mechanics: Experiments, Applications and Simulations (or SMXR355) * SMXR359 Electromagnetism: Experiments, Applications and Simulations (or SMXR356) *This requirement could be met by passing the previous course SM355 prior to 2002 providing the embedded residential school was successfully completed. Options ** If only one school is taken from the compulsory section, one of the following must be included: SXR207 Physics by Experiment SXR208 Observing the Universe MSXR209 Mathematical Modelling ** This requirement could be met by S207 The Physical World taken in 2000 or MST207 Mathematical Methods, Models and Modelling provided the embedded residential school was successfully completed. March 2015 4

IOP accredited degree - Scheme 4 Valid for graduation dates from 31/12/2011 up to 31/12/2019 honours degree and complies with the requirements detailed below. : All of the following must be included: S207 The physical world * MST210 Mathematical methods and models ** S382 Astrophysics SM358 The quantum world SMT359 Electromagnetism Experimental work: Experimental work must be included by completing option 1 or 2: Option 1: SXPA288 Practical science: physics and astronomy Option 2: Two from the following, one of which must be at level 2 or 3: SXR103 S155 TXR120 SXR207 SXR208 MSXR209 TXR220 SMXR358 SMXR359 Practising science Scientific investigations Engineering: an active introduction Physics by experiment Observing the Universe Mathematical modelling Engineering in action Quantum mechanics: experiments, applications and simulations Electromagnetism: experiments, applications and simulations Project work: At least one from the following must be included: SXP390 SXG390 SXN390 T450 Science project course: radiation and matter Science project course: geosciences Science project course: science in society The engineering project Notes All previous versions of the listed modules may be counted towards this scheme. The experimental work requirements in option 2 can be met by embedded residential schools associated with older versions of the listed physics and mathematics modules and S103 Discovering science. * S217 Physics: from classical to quantum is likely to be accepted in place of S207. ** The 30 credit module MST224 Mathematical Methods will be accepted in place of MST210 for students that are unable to take 150 credits at level two. March 2015 5