ࡱ>  0%bjbj00 7ZgZgP.:HH***>>>8vt> 8L (222[':''7777777$;=p57*'9'"['''57227***'^82*27*'7**r4TU52`C(5670 8#52<>1)<>U5U5&<>*{5''*'''''5757*''' 8''''<>'''''''''HX :  1Programme TitleGeneral Engineering2Programme CodeAMRU273JACS CodeH300, HECOS Code: 1002094Level of StudyLevel 45aFinal QualificationPearson BTEC Level 4 Higher National Certificate in General Engineering5bFHEQ Level46Intermediate QualificationsNot applicable7Teaching Institution (if not 91ֱ)AMRC Training Centre8FacultyEngineering9DepartmentAdvanced Manufacturing Research Centre10Other Departments involved in teaching the programmeNone11Mode of AttendancePart-time12Duration of the Programme2 years13Accrediting Professional or Statutory BodyIMechE sought14Date of production/revisionSeptember 202115. Background to the programme and subject area The AMRC Training Centre offers a comprehensive engineering/manufacturing curriculum from level 2 to level 7. The majority of the centres apprentices in learning are following a level 3 programme. The HNC forms a key part of the AMRC Training Centres curriculum offer, alongside the centres degree apprenticeships, as an additional progression route from the centres level 3 apprenticeships. The HNC forms the technical element of the centres Automation and Control Engineering Technician level 4 apprenticeship (AMRU27). In addition, learners may join the programme on a programme only basis, (AMRU28). Upon completion of the HNC, learners may be able to progress to the centres degree apprenticeships.16. Programme aims The Universitys Mission is to educate others and ourselves and to learn through doing so, as a civic institution proud of its urban character, driving growth and vibrancy for the city, the region, and the globe. Our vision is research, teaching and learning together create a positive culture of higher education. The AMRC implements this through a strong commitment to local industry, with a large number of employers both within 91ֱ and the region working with the AMRC to address the engineering skills gap by training and educating Advanced, Higher and Degree Apprentices. The AMRC has a strong commitment to both teaching and research and works to create and stimulate a commitment to self-learning and development in its students. The objectives of the BTEC Higher Nationals in Engineering are as follows: % To provide students with the core knowledge, skills and techniques that all engineers require, irrespective of future specialism, to achieve high performance in the engineering profession. % To build a body of specialist knowledge, skills and techniques in order to be successful in a range of careers in engineering at the Associate Engineer or Operational Engineer level. % To develop the skills necessary to fault find and problem solve in a timely, professional manner, reflecting on their work and contributing to the development of the process and environment they operate within. % To understand the responsibilities of the engineer within society, and work with integrity, regard for cost, sustainability and the rapid rate of change experienced in world class engineering. % To provide opportunities for students to enter, or progress in, employment within the engineering sector, or progress to higher education qualifications such as degrees and honours degree in engineering or a closely related area, by balancing employability skills with academic attainment. % To provide opportunities for students to make progress towards achieving internationally recognised registration with a Professional Body regulated by the Engineering Council. % To allow flexibility of study and to meet local or specialist needs. We aim to meet these objectives by: % Providing a thorough grounding in engineering principles at Level 4 that leads the student to a range of specialist progression pathways at Level 5, relating to individual professions within the engineering sector. % Equipping individuals with the essential qualities of an engineer, including integrity, regard for cost and sustainability, as they apply to a range of roles and responsibilities within the sector. % Enabling progression to a university degree by supporting the development of academic study skills and the selection of appropriate units for study at Level 4 or 5. % Enabling progression to further professional qualifications in specific engineering disciplines by mapping the units studied to the requirements of the Professional Bodies applicable to that discipline. % Supporting a range of study modes and timeframes for completion of the qualifications. Prepare students for professional accreditation.17. Programme learning outcomes Knowledge and Understanding:Students will have a knowledge and understanding of the:K1the concepts, theories and principles of engineering;K2mathematics necessary to apply engineering science to mechanical and electrical engineering;K3analytical and design methods used in engineering;K4use of information technology for analysis, design and simulation/modelling;K5professional responsibility of mechanical manufacture engineers and the influence of social, environmental, ethical, economic and commercial considerations on their activities. Skills and other attributes:Intellectual Skills - Students will be able to:I1Cognitive and problem solving skills;I2Critical thinking: approaching non-routine problems by applying expert and creative solutions;I3use engineering science, mathematics and, information technology to analyse engineering problems;I4 acquire, analyse and interpret experimental and other numerical data;I5exercise independent thought and judgement;I6undertake effective research, using physical and electronic resources. Practical Skills - Students will be able to:P1use appropriate mathematical methods for modelling and analysing mechanical manufacturing problems;P2conduct experimental laboratory work and analyse the results;P3use IT tools for design, computational and analytical purposes;P4produce designs in a professional manner, taking account of social, environmental, practical and commercial considerations;P5use commercial software for analysis and design;P6prepare technical reports and presentations. Transferable Skills - Students will be able to:T1self-management, adaptability and resilience;T2self-monitoring and self-development, self-analysis and reflection;T3Use of IT systems and digital technology;T4articulate effectively; communicate effectively, orally and in writing;T5collaborate with others in teams;T6manage their time efficiently - planning and prioritising;T7find information and learn independently;T8solve problems logically;T9scope out and manage a work-based project.18. Teaching, learning and assessment Development of the learning outcomes is promoted through the following teaching and learning methods: Learning activities will adopt an active learning approach, with a combination of lecture, individual work and group problem solving, research and analysis activities. Learners will be given access to electronic and physical research material through the Universitys library resources. In addition, all units will be supported by on-line VLE resources, encouraging learners to learn independently outside the classroom. Reference will be made to the industrial context of each subject in learning activities, encouraging students to contribute knowledge and experience from their employment to enrich group learning. Learners will develop practical skills, as required, at the AMRC Training Centre. Learners will have access to well-equipped IT suites and the centres state of the art practical workshops, as appropriate. Tutorial sessions will provide 1:1 support and guidance to all learners and will provide the opportunity for target setting and monitoring of learner progress. Opportunities to demonstrate achievement of the learning outcomes are provided through the following assessment methods: Assessment will take the form of centre produced assignments, devised in accordance with Pearsons requirements and internally verified to ensure quality and fitness for purpose. Where possible, a range of assessment instruments will be used. Assessment processes will follow Pearsons specifications for HN assessment and will be subject to internal verification, as required by Pearson. Learners will receive written formative and summative feedback, as required by Pearson, to allow learners to improve their grades in accordance with Pearson regulations. All assessment activities will be subject to external scrutiny by an External Examiner, in accordance with Pearson external quality assurance requirements.19. Reference points The learning outcomes have been developed, by Pearson, to reflect a range of points of reference, including: Subject Benchmark Statements  HYPERLINK "https://www.qaa.ac.uk/quality-code/subject-benchmark-statements" https://www.qaa.ac.uk/quality-code/subject-benchmark-statements Framework for Higher Education Qualifications (2014)  HYPERLINK "https://www.qaa.ac.uk/docs/qaa/quality-code/qualifications-frameworks.pdf" https://www.qaa.ac.uk/docs/qaa/quality-code/qualifications-frameworks.pdf HYPERLINK "http://www.qaa.ac.uk/publications" \h  20. Programme structure and regulations The HNC programme is modular, being constructed of eight 15-credit units delivered over two years, with a total of 120 credits. All units have been designed by Pearson and units have been selected according to the published rules of combination. The programme is delivered on a part-time, day release basis. Units are scheduled to allow logical progression in development of skills and knowledge. 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Programme quality is monitored and assured, as required, through annual Examination Boards, annual programme review and routine internal quality assurance activities. The AMRC Learning and Teaching Committee provides programme oversight, in accordance with University regulations.21. Student development over the course of study Level 1 (1st year)In the first year, students will develop their essential mathematical and analytical skills and knowledge by studying three core units: Engineering Maths, Engineering Science. Students contextualise and develop their learning further through the following core units; Electrical and Electronic Principles, and Automation, Robotics and PLCs. Where possible and appropriate, students are encouraged to draw upon their learning and experience in the workplace to contextualise their learning.Level 2 (2nd year)In the second year, students build on their first-year learning by studying the two final core units: Engineering Design and Managing a Professional Engineering Project. In addition to building on prior learning, these units further develop students transferable and intellectual skills and knowledge and require students to apply these skills and knowledge. During the second year, students also undertake two core units: Electrical Systems and Fault Finding, and Instrumentation and Control.22. Criteria for admission to the programme Students with one of the following criteria are eligible for admission to the programme: A BTEC Level 3 Diploma in Engineering (with 120 credits at merit-merit level) or equivalent qualifications such as Cambridge Technicals; A minimum of two A-Levels at grade C or above, including a mathematical based subject and a science, technology, engineering or an additional mathematics-related subject; An EAL Diploma - merit or higher.23. Additional information Further information is available at  HYPERLINK "http://www.amrctraining.co.uk/degree-apprenticeships" http://www.amrctraining.co.uk/      FILENAME amru27 ver21-22  PAGE 4 Programme Specification A statement of the knowledge, understanding and skills that underpin a taught programme of study leading to an award from 91ֱ o!o~õĵڵ۵!.:?ortĶŶɶζ϶Ѷ #Ggoøíâh$\hO_B*phh$\hB*phh$\hB*phh$\hk~+B*phh$\h B*phh$\h*B*phh$\h$^B*phhjhH* hjhhjhO_5hjh5 hjhO_hjh*B*ph2ĵtgg xx$Ifgdj x$Ifgdj$ @ xxgdjlkdju$$IfHp&`'0`'44 Hap ytf4ķzobb xx$Ifgdj x$Ifgdjkdv$$IfH0p&"0`'44 Hapytf4÷ķ!'(*<=Aaem!,^abflmnֵvvvvhjh B*phhjhB*phhjhO_5h$\hO_B*phh$\h B*phh$\hB*phh$\h4B*phh$\hB*phh$\h B*phh$\h$^B*phhjhH* hjh hjhO_hjh5.;ĺozgZI88 & Fxx$Ifgdj & Fxx$Ifgdj xx$Ifgdj$ @ xxgdjkdv$$IfH0p&"0`'44 Hapytf4:;`lºúĺ#amnoûѻһ޻3456789:;<=>?@ABCDEøڠhdNhdNCJaJh:Jjh:JUhjho0J' hjhojhjhoU hjhhjhO_5hjh5 hjhO_hjhO_B*phh$\B*phhjh B*ph55u xx$Ifgdj$ @ xxgdjjkdLw$$IfHp&`'0`'44 Hap ytf45679:<=?@BCDEdz$gd7 $ 9r a$gdjlkdw$$IfHp&`'0`'44 Hap ytf4 EFPQWXY^cdeklmnopq¼ !"#$%» hjhO_ hdN5CJ hdN5CJh:JhdNh9hmHnHu hdNhjhdNUh hwxhdNhj0J&CJhhdN0J&CJhh0J&CJhmHnHuhwxhdN0J&CJh jhwxhdN0J&CJUh dopq !"#$%gdj:D<<:D $<<:Da$$$a$gdo 50P. 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