Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved FEIAP Guidelines and Recent Development in International Engineering Accreditation.

Slides:



Advertisements
Similar presentations
Scoping a Foundation Skills Professional Standards Framework.
Advertisements

Accreditation and Competence in the Context of World Wide Engineering Mobility- the International Engineering Alliance Experience Basil Wakelin.
National Academic Reference Standards
© JABEE 2013 Japan Accreditation Board for Engineering Education Washington Accord And International Engineering Alliance Dr Yasuyuki AOSHIMA Executive.
Assessment of Undergraduate Programs Neeraj Mittal Department of Computer Science The University of Texas at Dallas.
Understanding of Terminology & Expectation for Engineering Programme
Dr Jim Briggs Masterliness Not got an MSc myself; BA DPhil; been teaching masters students for 18 years.
1 Graduates’ Attributes : EMF, EUR-ACE and Federal Educational Standards Alexander I. Chuchalin, Chair of the RAEE Accreditation Board Graduates’ Attributes.
Professor Stanley Marshall Makuza Dean, School of Agricultural Sciences and Technology, Chinhoyi University of Technology.
THE APEC ENGINEER A Model for the Mobility of Engineers
Outcome Based Education (OBE) & Continuous Quality Improvement (CQI)
REGIONAL ACCREDITATION OF ENGINEERING EDUCATION, QUALIFICATIONS AND MOBILITY OF ENGINEERS IN ASIA PACIFIC AND AFRICA Recent Development in International.
Outcomes-Based Accreditation: An Agent for Change and Quality Improvement in Higher Education Programs A. Erbil PAYZIN Founding Member and Past Chairman.
Mohammad Alshayeb 19 May Agenda Update on Computer Science Program Assessment/Accreditation Work Update on Software Engineering Program Assessment/Accreditation.
ABET Engineering Criteria 2000 To maintain ABET accreditation, Engineering Departments must demonstrate that all of their graduates have the following.
Purpose of the Standards
Regulating the engineering profession 1 EC UK Experience in Accreditation of Engineering Programmes Professor Ian Freeston University of Sheffield, UK.
Standards and Guidelines for Quality Assurance in the European
ABET Accreditation Board for Engineering and Technology
Alec Hay Pr Eng C Eng Chair EMF. Washington, Sydney & Dublin Accords, EMF, ETMF, APEC, FEANI EDUCATION FORUM MOBILITY FORUM.
Washington Accord Graduate Attributes: A Metric for the Quality of Engineering Education Worldwide Dr. Malcolm J. Reeves, FEC, FGC, P.Eng., P.Geo. Chair.
Accreditation Board for Engineering and Technology - is a non governmental organization that accredits post secondary educational organizations in : 1)
1 Members’ Forum  QP Concept and Philosophy  Transitional Arrangements  Accreditation Process.
Internal Auditing and Outsourcing
Substantial Equivalence between Qualifications of Accountants and Auditors Prof Dr Gert H. Karreman DePaul University, Leiden University
JIC ABET WORKSHOP No.4 Guidelines on: II Faculty Survey Questionnaire.
A Decade of Experience On Outcome Based Accreditation: Still a Long Way To Go A. Erbil PAYZIN Bülent E. PLATIN Chair, MÜDEK Executive Board Member, MÜDEK.
Day 1 Session 2/ Programme Objectives
OBE Briefing.
ABET’s coming to Rose! Your involvement Monday, Nov 5, 2012.
The Hong Kong Institution of Engineers 香港工程師學會 1 Review of Accreditation Criteria for Engineering Degree Programmes By Albert CHOW Director of Qualifications.
Education Accreditation Programs and Educational Development in Region 9 Countries Tariq Durrani, VP Educational Activities Doug Gorham Managing Director.
Prof. György BAZSA, former president Hungarian Accreditation Committee (HAC) CUBRIK Workshop IV Beograd, 13 March, 2012 European Standards and Guidelines.
IHEQN Conference October 2006 IHEQN “AND NEVER THE TWAIN SHALL MEET”? CASE STUDY OF COLLABORATION 1. Engineers Ireland and University College Cork Denis.
© Engineering Council (UK) 2002 Regulation and Accreditation in the UK Jim Birch Head of International Recognition.
The “Fundamentals” of Accreditation Quality Assurance in Educational Programs Lyle D. Feisel Chair, IEEE Com. on Global Accreditation Activities Dean Emeritus.
The Engineering Body of Knowledge Joint Engineers Conference 07 November 2014 Helena, MT Robert A. Green, P.E., F. NSPE President National Society.
GLOBAL ACCREDITATION TRENDS Russel C. Jones. Ph.D., P.E. World Expertise LLC USA and UAE.
Harmonization Mobility of Engineers in Asia and the Pacific ER. TAN SENG CHUAN Past President, The Institution of Engineers, Singapore Immediate Past President,
Graduate studies - Master of Pharmacy (MPharm) 1 st and 2 nd cycle integrated, 5 yrs, 10 semesters, 300 ECTS-credits 1 Integrated master's degrees qualifications.
ABET 2000 Preparation: the Final Stretch Carnegie Institute of Technology Department Heads Retreat July 29, 1999.
PRO-EAST Workshop, Rome, May 9-11, Curriculum and Programme Objectives: Mapping of Learning Outcomes Oleg V. Boev, Accreditation Centre, Russian.
The International Engineering Alliance, EMF and APEC System for Professional Engineers Competence Assessment and Mobility Basil Wakelin, EMF Chair.
Copyright © 2011 by ABET, Inc. and TMS 1 December 2, 2008 ABET Update UMC Meeting April 6, 2015 San Francisco, CA Chester J. Van Tyne
Strengthening Mobility and Promoting Regional Integration of Professional Engineers in APEC Economies – An Overview Basil Wakelin.
Copyright © 2014 by ABET Proposed Revisions to Criteria 3 and 5 Charles Hickman Managing Director, Society, Volunteer and Industry Relations AIAA Conference.
Mutual Recognition of Engineering Educational Programs in the Washington Accord Andrew M. Wo Deputy CEO, Institute of Engineering Education Taiwan (IEET)
Preparing for ABET visit Prof. Dr. Lerzan Özkale Management Engineering Head of Department November 2010.
University of Utah Program Goals and Objectives Program Goals and Objectives Constituents U of U, COE, ASCE, IAB Constituents U of U, COE, ASCE, IAB Strategic.
OUTCOME BASED EDUCATION (O.B.E) (For Students) by: OBE Sector Committee 2016, FKMP, UTHM With Wisdom We Explore Faculty of Mechanical and.
Accreditation of study programs at the Faculty of information technologies Tempus SMGR BE ESABIH EU standards for accreditation of study.
Engineering programs must demonstrate that their graduates have the following: Accreditation Board for Engineering and Technology (ABET) ETP 2005.
ABET ACREDITATION By: Elizabeth Rivera Oficina de Acreditación.
PUBLIC ACCREDITATION AGENCY FOR HIGHER EDUCATION “Key aspects of quality assessment for teaching and learning in HE” Niko Hyka Innovation and information.
Outcome Based Education (OBE) & Continuous Quality Improvement (CQI)
Gap Analysis Megat Johari Megat Mohd Noor Azlan Abdul Aziz
Professional Engineering Practice
OUTCOME BASED EDUCATION
Day 1 Session 2/ Programme Objectives
The Skills for Success in Mechanical Engineering
College of Computer Science OBE Implementation on Curriculum Revisions
Making use of Qualification Frameworks
Proposed Revisions to Criteria 3 and 5
Presented to the World Symposium of Accreditation
EUR-ACE Engineering Programme Accreditations
Complex Engineering Problems
Assessment and Accreditation
OUTCOME BASED EDUCATION – AN INTRODUCTION
ENGINEERING COUNCIL OF SOUTH AFRICA IEA REQUIREMENTS Overview Presented by the Engineering Council of South Africa Date: 18 September 2018.
CEng progression through the IOM3
Presentation transcript:

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved FEIAP Guidelines and Recent Development in International Engineering Accreditation Jia-Yush YEN, PhD Secretary General & Executive Director of Accreditation Council, IEET Dean, College of Engineering Professor of Mechanical Engineering, National Taiwan University 11 November 2013

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Outlines 1.About IEET 2.FEIAP Guidelines 3.IEA-Washington Accord Graduate Attributes 1.Knowledge Profile 2.Level of Problem Solving 3.Graduate Attributes

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Outlines 1.About IEET 2.FEIAP Guidelines 3.IEA-Washington Accord Graduate Attributes 1.Knowledge Profile 2.Level of Problem Solving 3.Graduate Attributes

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved FEIAP Guidelines were Prepared by IEET & CIE 4

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved IEET, a Washington Accord Signatory since Australia - Represented by Engineers Australia (1989) 2.Canada - Represented by Engineers Canada (1989) 3.Chinese Taipei - Represented by Institute of Engineering Education Taiwan (2007) 4.Hong Kong China - Represented by The Hong Kong Institution of Engineers (1995) 5.Ireland - Represented by Engineers Ireland (1989) 6.Japan - Represented by Japan Accreditation Board for Engineering Education (2005) 7.Korea - Represented by Accreditation Board for Engineering Education of Korea (2007) 8.Malaysia - Represented by Board of Engineers Malaysia (2009) 9.New Zealand - Represented by Institution of Professional Engineers NZ (1989) 10.Russia - Represented by Association for Engineering Education of Russia (2012) 11.Singapore - Represented by Institution of Engineers Singapore (2006) 12.South Africa - Represented by Engineering Council of South Africa (1999) 13.Turkey - Represented by MUDEK (2011) 14.United Kingdom - Represented by Engineering Council UK (1989) 15.United States - Represented by Accreditation Board for Engineering and Technology (1989) 5

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Singapore Recognizes IEET Accreditation Singapore Professional Engineers Act: the qualification is accredited by the accrediting organisation as fully meeting the academic requirements for registration as a professional engineer Professional Engineers Act (Chapter 253): Qualifications specified in Division I of Part IV of the Schedule 6

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Malaysia Recognizes IEET Accreditation BEM has decided to recognize all engineering programs accredited by IEET from the date when IEET was accepted as the Washington Accord signatory, i.e. since

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved IEET Assists FEIAP Members Visited 2010 Visited 2013 Visited Myanmar Thailand Vietnam Indonesia Brunei Mauritius India Bangladesh Laos Philippines

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Outlines 1.About IEET 2.FEIAP Guidelines 3.IEA-Washington Accord Graduate Attributes 1.Knowledge Profile 2.Level of Problem Solving 3.Graduate Attributes

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Contents of FEIAP Guidelines Document 1Glossary of Terms 2Accreditation Criteria Template for Accreditation Agencies 3The Accreditation System Model Framework 4Mentoring System 5Evaluation of Accreditation Agency 6Periodic Monitoring 10

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Glossary of Terms 1.Organizational Acronym 2.Terminologies for Accreditation of Engineering Education 11FEIAP Work Group Meeting

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Accreditation Criteria 1.A template to steer the development of appropriate accreditation criteria  commensurate with Washington Accord and/or EUR-ACE systems. 2.Hierarchy of references Graduate attributes (umbrella body)  Outcomes (accreditation body)  Outcomes (program) 3.Elements must embrace 1.Educational environment 2.Program design, structure, content and assessment processes 3.Quality systems 12

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Accreditation System Model Framework 1.To guide the development of an engineering program accreditation system that focuses on delivery of assured graduate outcomes appropriate to a particular economy at a particular stage in development. 2.Provide guidance on developing documents as: 1)Graduate outcomes specification, 2)Accreditation criteria 3)Accreditation process 4)Governance of the accreditation body 13

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Mentoring System 1.Participation 2.Appointment and Qualification of Mentor 3.Reporting 4.Expenses 5.Continuation and Termination of the Mentoring Services 6.Guidelines for Mentors 7.Mentoring Provided by Individual Signatories

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Evaluation of Accreditation Agency 1.Application 2.Documentation in Support of Applications 3.Appointment of Review Team 4.Evaluation Process 5.Evaluation Standards 6.Decision Making

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Periodic Monitoring 1.Submission of Documents 2.Appointment of Review Team 3.Evaluation Process 4.Evaluation Standards 5.Decision Making 6.Expenses

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Outlines 1.About IEET 2.FEIAP Guidelines 3.IEA-Washington Accord Graduate Attributes 1.Knowledge Profile 2.Level of Problem Solving 3.Graduate Attributes

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved 18 History of the Washington Accord : Initial Phase Initial Expansion 2007-present: Structured Development Signatories: UK, Ireland, USA Canada, Australia, New Zealand Hong Kong, South Africa Japan, Singapore, Chinese Taipei, Korea, Malaysia, Turkey, Russia Original Rules and Procedures 2007 Educational Accords Rules and Procedures 2011 Educational Accords Rules and Procedures WA Secretariat Provided by a Volunteer Signatory 2007 International Engineering Alliance Secretariat Substantial Equivalence of Accreditation Criteria 2007: GA are exemplars 2011: GA to become standards : Developing The Graduate Attributes (GA) Reference: Presentation by Prof. Hu Hanrahan, WA Chair, Taipei, Sept

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved 19 Washington Accord: Status in Accord Signatory: A body entitled to fully participate in the Accord, enjoys the same rights and obligations as all other signatories. The body must be: –independent of the academic institutions delivering accredited or recognised programs within their jurisdiction. –An authority, agency or institution representative of the engineering profession that has legal or recognised authority to accredit programs Provisional Status: A body that has demonstrated that it has an accreditation / recognition system conceptually similar to signatories –Has none for the rights or duties of signatories. Reference: Presentation by Prof. Hu Hanrahan, WA Chair, Taipei, Sept

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved 20 Washington Accord: Mutual Recognition Agreement states: Accreditation criteria, policies and procedures of the signatories have been verified comparable Accreditation decisions made by one signatory are acceptable to the other signatories Recognition applies only to accreditations conducted within the signatory’s national or territorial boundaries, except: –Offshore programmes offered by university with programs accredited in home territory –A designated signatory accredits in a developing countries where the is no capacity to operate an accrediting body Reference: Presentation by Prof. Hu Hanrahan, WA Chair, Taipei, Sept

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved 21 Implication of Substantial Equivalence Assume that we have a programme that satisfies the Graduate Attributes exactly To be substantially equivalent to the Graduate Attributes: the programmes accredited by a signatory must produce graduates that would be equally prepared to progress to training and experience to achieve professional registration Reference: Presentation by Prof. Hu Hanrahan, WA Chair, Taipei, Sept

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Old Method vs. New Method of Judging Substantial Equivalence Rules and Procedures The Final Report shall include: …. g. A statement as to whether the standard of the graduates of accredited/ recognised programs are substantially equivalent to graduates of other Accord signatories Rules and Procedures g –a collective judgement by the Team as a whole as to whether the accreditation standard is substantially equivalent to that of the Accord as illustrated by the exemplar graduate attributes of the relevant Accord. Reference: Presentation by Prof. Hu Hanrahan, WA Chair, Taipei, Sept

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved 23 Purpose of Engineering Education The purpose of engineering education must include: to build knowledge, skill and attitudes to enable the graduate to proceed to training and experience that will develop the competencies required for independent practice in an engineering role How do we know that the purpose is achieved? Ensure that the graduates have agreed characteristics or graduate attributes Reference: Presentation by Prof. Hu Hanrahan, WA Chair, Taipei, Sept

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved 24 Graduate Attributes Defined Graduate attributes form a set of individually assessable outcomes that indicate the graduate's potential to acquire competence to practise at the appropriate level. The Graduate Attributes are exemplars of the attributes expected of graduate from an accredited programme. Graduate Attributes are clear, succinct statements of the expected capability, qualified if necessary by a range indication appropriate to the type of programme. Reference: Presentation by Prof. Hu Hanrahan, WA Chair, Taipei, Sept

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved 25 Benefit of Agreed Standards The Graduate Attributes Are the consensus emerging from a long learning process Capture a common understanding of the globally- relevant outcomes and (their level) Are mature: future changes to GA are likely to be for clarification only Are aspirational standards for bodies wishing to improve their education and accreditation systems Are neutral: bodies developing their accreditation systems may not want to imitate other signatories Reference: Presentation by Prof. Hu Hanrahan, WA Chair, Taipei, Sept

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved WA Knowledge Profile A systematic, theory-based understanding of the natural sciences applicable to the discipline (e.g. calculus-based physics); Conceptually-based mathematics, numerical analysis, statistics and formal aspects of computer and information science to support analysis and modelling applicable to the discipline; A systematic, theory-based formulation of engineering fundamentals required in the engineering discipline; Engineering specialist knowledge that provides theoretical frameworks and bodies of knowledge for the accepted practice areas in the engineering discipline; much is at the forefront of the discipline; Knowledge that supports engineering design in a practice area; Knowledge of engineering practice (technology) in the practice areas in the engineering discipline; Comprehension of the role of engineering in society and identified issues in engineering practice in the discipline: ethics and the professional responsibility of an engineer to public safety; the impacts of engineering activity: economic, social, cultural, environmental and sustainability; and, Engagement with selected knowledge in the research literature of the discipline.

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Level of Problem Solving: WA Definition of Complex Problems Complex problems: [are] engineering problems which cannot be resolved without in- depth engineering knowledge, much of which is at, or informed by, the forefront of The professional discipline, and have some or all of the following characteristics: Involve wide-ranging or conflicting technical, engineering and other issues Have no obvious solution and require abstract thinking, originality in analysis to formulate suitable models Requires research-based knowledge much of which is at, or informed by, the forefront of the professional discipline and which allows a fundamentals-based, first principles analytical approach Involve infrequently encountered issues Are outside problems encompassed by standards and codes of practice for professional engineering Involve diverse groups of stakeholders with widely varying needs Have significant consequences in a range of contexts Are high level problems including many component parts or sub-problems

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved WA Graduate Attributes (1/3) 1.Engineering Knowledge – Apply knowledge of mathematics, science, engineering fundamentals and an engineering specialization to the solution of complex engineering* problems. 2.Problem Analysis – Identify, formulate, research literature and analyse complex engineering problems reaching substantiated conclusions using first principles of mathematics, natural sciences and engineering sciences. 3.Design / Development of Solutions – Design solutions for complex engineering problems and design systems, components or processes that meet specified needs with appropriate consideration for public health and safety, cultural, societal, and environmental considerations. 4.Investigation – Conduct investigations of complex problems using research-based knowledge and research methods including design of experiments, analysis and interpretation of data, and synthesis of information to provide valid conclusions.

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved WA Graduate Attributes (2/3) 5.Modern Tool Usage – Create, select and apply appropriate techniques, resources, and modern engineering and IT tools, including prediction and modeling, to complex engineering activities, with an understanding of the limitations. 6.The Engineer and Society – Apply reasoning informed by contextual knowledge to assess societal, health, safety, legal and cultural issues and the consequent responsibilities relevant to professional engineering practice. 7.Environment and Sustainability – Understand the impact of professional engineering solutions in societal and environmental contexts and demonstrate knowledge of and need for sustainable development. 8.Ethics – Apply ethical principles and commit to professional ethics and responsibilities and norms of engineering practice.

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved WA Graduate Attributes (3/3) 9.Individual and Team Work – Function effectively as an individual, and as a member or leader in diverse teams and in multi-disciplinary settings. 10.Communication – Communicate effectively on complex engineering activities with the engineering community and with society at large, such as being able to comprehend and write effective reports and design documentation, make effective presentations, and give and receive clear instructions. 11.Project Management and Finance – Demonstrate knowledge and understanding of engineering and management principles and apply these to one’s own work, as a member and leader in a team, to manage projects and in multidisciplinary environments. 12.Life Long Learning – Recognize the need for, and have the preparation and ability to engage in independent and life-long learning in the broadest context of technological change.

Copyright© 2009 Institute of Engineering Education Taiwan. All Rights Reserved Thank You for Listening! , Hong Kong2007, Washington DC 2011, Taipei 2009, Kyoto