BEng (Hons) Civil Engineering

01 Sep 2024 - 30 Jul 2030

Course Leader David Baxter, Luan Al-Haddad
Course Team Stuart Bunston, Luan Al-Haddad, Emmajane Mantle, Sarah Moses
Awarding Body University of South Wales
Teaching Institutions University of South Wales
Modes of Study Part Time

Document Version

Version 0
Valid From 01 Sep 2024
Valid To 30 Jul 2030

QAA Benchmarks

QAA Subject benchmark Statement -  

higher-education-in-apprenticeships-characteristics-statement.pdf (qaa.ac.uk) 

Apprenticeships incorporating higher education are constituted as primarily a job which requires work-integrated learning. The workplace becomes a site for the development and generation of knowledge, understanding, skills and professional behaviours rather than just a site for their application. 

The use of various assessment methods allowing workplace experience and learning to support credit and demonstrate competencies. Examples include logbooks, tripartite discussions, project work and research. 

They are designed to enable apprentices to develop professional/occupational competence within a defined occupation and apprenticeship pathway. Employers are involved in consultation and promotional events; they are invited to discuss the needs of the organisation and sector influencing the content and design of an apprenticeship with the boundaries of the framework. 

Apprenticeships are based on professional standards and specify UK standards of performance that individuals are expected to achieve in their job and the KSBs they require to perform competently and effectively. Validation of integrated degree apprenticeships ensure that all KSB’s are acknowledged, and competency can be evidenced over the duration of the apprenticeship. 

They support inclusion and diversity in the workplace and should ensure that there are no unnecessary barriers to learning or assessment. EIA for each apprenticeship program is in place as is an overarching EIA for apprenticeships across the university. The EIA endeavours to identify where additional support is required for minority groups to participate and the type of support available. USW have positive data in engaging with Welsh speaking apprentices; good representation of female apprentices in Digital framework; above average participation from BAME groups; good representation from those under 21. 

Apprenticeships incorporating higher education require the integration of on and off-the-job learning. Apprenticeships are planned to include dedicated protected learning hours, time away from the workplace and time to study with support and guidance. 

They require at least 20% off-the-job learning or six hours of off-the-job training per week for a full-time equivalent (an individual working 30 hours or more) and/or meet notional guided hours regarding the credit undertaken. Apprenticeships are planned to include dedicated protected learning hours, time away from the workplace and time to study with support and guidance. 

Degree apprenticeships require the development of professional and/or occupational competence that is concerned with the ability to continually enhance professional practice to drive innovation, informed by codes of ethical practice and values. This should be distinguished from a 'closed' model of competence, which is only concerned with the ability to perform a set task to an established standard. Whilst the framework and associated modules of the integrated degree are prescribed the apprenticeship allows for flexibility and change. Capstone projects and EBRP are used effectively and undertaken in collaboration with the tripartite. Regular consultation with employers and revalidation of integrated degree programmes ensure that curriculum is up to date and remains relevant to the employer and industry. 

Apprenticeships incorporating higher education to maximise the transferability and recognition of apprenticeship outcomes to enhance career development opportunities for apprentices and deliver workforce development objectives for employers. Progress reviews and tripartite reviews endeavour to map achievement with competency. They identify any skills gaps with the employer, support apprenticeship success, progression and include aspirations of the apprentice and the employer. 

They require comprehensive collaboration with employers at all stages. Through many mechanisms, progress reviews, tripartite reviews, SSELG, SSCLG, consultation events, Validation events, Employer and Apprentice Survey. 

Apprenticeships position the employer as the primary decision maker for admissions working closely with the higher education provider. Eligibility and appropriateness checks are undertaken as part of an onboarding process the employer making the decision (with the Apprentice) on the correct entry route. 

They involve tripartite agreements between employers, apprentices, and higher education providers. In place and undertake as part of eligibility and onboarding process. 

Apprenticeships include support for apprentices in the workplace by a competent mentor or coach and in their learning and assessment by a qualified trainer/educator/assessor who has sector experience and knowledge. Apprentices have access to a variety of qualified, expert people who form the scaffolding around the individual to ensure every chance of achievement a success. These include Academic lead, workplace mentors / managers, members of professional academy. Apprentices also have access to all other support service that any other student / learner would have. 

Degree apprenticeships are not necessarily aligned with traditional academic years and may reflect varied patterns of employment. Whilst USW apprenticeships (Wales) have only a single point of intake, apprenticeships are flexible and cater for work pressures, times of intense workload and the need for time off outside of normal education patterns. 

They may include professional recognition and/or a licence to practise; previously not funded. 

https://www.qaa.ac.uk/docs/qaa/subject-benchmark-statements/subject-benchmark-statement-land-construction-real-estate-and-surveying.pdf?sfvrsn=f9f3c881_4 

https://www.qaa.ac.uk/docs/qaa/subject-benchmark-statements/subject-benchmark-statement-engineering.pdf?sfvrsn=1f2c881_16 

The Higher Education Apprenticeships Toolkit. Login (qaa.ac.uk) 

Educational Aim

The overall aim of this award is to produce a Graduate with a specialist education related to Construction in the 21st century. Therefore, it will have the versatility and depth of understanding necessary to deal with new and unusual problems of the Built Environment and Civil Engineering sector. The Graduates from these courses should be imaginative, creative, and able to implement change as well as providing management and technical leadership. This award should produce high calibre graduates ready to engage within challenging and professional roles within the Built Environment and Civil Engineering. 

The aim is achieved by providing a sound educational base in the theoretical and practical aspects of Built Environment and Civil Engineering, and other complimentary topics, which are in-line with the current practice and research developments.  This is supported by a broadening of both their technical and non-technical knowledge and skills, with a focus on those relating to Commercial Awareness, Communication, Leadership, Innovation & Enterprise, Project Management and Digital Literacy. 

 

The Construction Degree Apprenticeships proposed have the following aims: 

  • Demonstrate knowledge, skills, and behavioural competencies to meet the requirements of the academic programme and Welsh Government Apprenticeship Framework, relating to either the Built Environment or Civil Engineering. 

  • Demonstrate understanding of occupational practices in the subject area of the Built Environment and Civil Engineering, reflecting on industry standards, current practice and recent research. Most of the content of the occupational competencies' must be capable of being assessed from evidence gained through on-the job training in a workplace. 

  • Provide a coherent programme of study in the Built Environment and Civil Engineering which is academically challenging and encourages degree apprentices to develop the capacity for autonomy, and critical analysis, with an understanding of how their learning applies to the workplace.  

  • Adhere to the Degree Apprenticeship Framework Specification regarding on-the-job and off-the-job training hours, so that apprentices have time allocated correctly to achieve specific outcomes, which must relate to the proportion of workplace-based assessment required for the achievement of the overall qualification. 

  • Develop the professional acumen and critical awareness necessary for effective analysis, problem solving and decision making to address a wide variety of real-world problems, relating to the Built Environment and Civil Engineering. 

  • Provide opportunities for Degree Apprentices to engage with employers, industry and professional bodies, through problem and challenge-based learning using live project case studies, guest lecturers and professional body events. 

  • Apprentices to adopt a reflective approach to learning and professional practice to develop rich evidence for completion of the degree apprenticeship competency framework and academic success. 

In line with the existing USW Apprenticeship and 2030 strategy, the development of the Built Environment and Civil Engineering Industry Degree Apprenticeships will support growth in numbers, further embed collaborative work with existing partners in industry and provide a clear response to Welsh Government Apprenticeship Strategy. 

Learning Outcomes

A1 A1 Knowledge and understanding of scientific principles and methodology necessary to underpin their education in their engineering discipline, to enable appreciation of its scientific and engineering context, and to support their understanding of relevant historical, current and future developments and technologies.
A2 A2 Knowledge and understanding of mathematical and statistical methods necessary to underpin their education in their engineering discipline and to enable them to apply mathematical and statistical methods, tools and notations proficiently in the analysis and solution of engineering problems.
A3 A3 Understanding of the need for a high level of professional and ethical conduct in engineering and a knowledge of professional codes of conduct.
A4 A4 Knowledge and understanding of the commercial, economic and social context of engineering processes.
A5 A5 Knowledge and understanding of management techniques, including project management, that may be used to achieve engineering objectives.
A6 A6 Awareness of relevant legal requirements governing engineering activities, including personnel, health & safety, contracts, intellectual property rights, product safety and liability issues.
A7 A7 Knowledge and understanding of risk issues, including health & safety, environmental and commercial risk, and of risk assessment and risk management techniques.
A8 A8 Understanding of contexts in which engineering knowledge can be applied (for example operations and management, application and development of technology, etc.).
A9 A9 Knowledge of characteristics of materials, equipment, processes or products.
A10 A10 Understanding of the use of technical literature and other information sources.
A11 A11 Knowledge of relevant legal and contractual issues.
A12 A12 Understanding of appropriate codes of practice and industry standards.
A13 A13 Awareness of quality issues and their application to continuous improvement.
B1 B1 Ability to apply and integrate knowledge and understanding of other engineering disciplines to support study of their own engineering discipline.
B2 B2 Understanding of engineering principles and the ability to apply them to analyse key engineering processes.
B3 B3 Ability to identify, classify and describe the performance of systems and components using analytical methods and modelling techniques.
B4 B4 Understanding of, and the ability to apply, an integrated or systems approach to solving engineering problems.
B5 B5 Investigate and define the problem, identifying any constraints including environmental and sustainability limitations; ethical, health, safety, security and risk issues; intellectual property; codes of practice and standards.
B6 B6 Apply advanced problem-solving skills, technical knowledge and understanding, to establish rigorous and creative solutions that are fit for purpose for all aspects of the problem including production, operation, maintenance and disposal.
B7 B7 Understanding of the requirement for engineering activities to promote sustainable development and ability to apply quantitative techniques where appropriate.
B8 B8 Ability to apply relevant practical and laboratory skills.
B9 B9 Ability to work with technical uncertainty.
C1 C1 Ability to apply quantitative and computational methods to solve engineering problems and to implement appropriate action.
C2 C2 Understand and evaluate business, customer and user needs, including considerations such as the wider engineering context, public perception and aesthetics.
C3 C3 Work with information that may be incomplete or uncertain and quantify the effect of this on the design.
C4 C4 Plan and manage the design process, including cost drivers, and evaluate outcomes.
C5 C5 Communicate their work to technical and non-technical audiences.
C6 C6 Understanding of, and the ability to work in, different roles within an engineering team.
C7 C7 Apply their skills in problem solving, communication, information retrieval, working with others and the effective use of general IT facilities.
C8 C8 Plan self-learning and improve performance, as the foundation for lifelong learning/CPD.
C9 C9 Plan and carry out a personal programme of work, adjusting where appropriate.
C10 C10 Exercise initiative and personal responsibility, which may be as a team member or leader.

Course Structure

Level 4 Modules

Module Code Module Id Module Title Module Status Credit Value Module Type
AM1S30 MOD000068 Mathematics for Engineers Running 20 specified
NG1S122 MOD012449 Civil Engineering Materials Running 20 specified
NG1S228 MOD001278 Engineering Mechanics 1 Running 20 specified
NG1S124 MOD012451 Engineering Communication Running 20 specified
NG1S120 MOD010025 Thermo-Fluid Mechanics Running 20 specified
NG1S127 MOD013643 Professional Engineering (Online) Running 20 specified

Level 5 Modules

Module Code Module Id Module Title Module Status Credit Value Module Type
NG2S115 MOD012452 Practicing Civil Engineering Running 20 specified
NG2S109 MOD001289 Geotechnics and Engineering Geology Running 20 specified
NG2S118 MOD012455 Structural Mechanics and Design Running 20 specified
NG2S110 MOD001290 Hydraulics & Engineering Hydrology Running 20 specified
NG2S112 MOD007376 Analytical and Numerical Methods Running 20 specified
NG2S116 MOD012453 Highways and Transportation Running 20 specified

Level 6 Modules

Module Code Module Id Module Title Module Status Credit Value Module Type
NG3S109 MOD001328 Geotechnics - Analysis and Design Running 20 specified
NG3S112 MOD010037 Hydraulics & Environmental Engineering Running 20 specified
NG3S110 MOD001329 Structural Engineering Running 20 specified
NG3S121 MOD012456 Managing Civil Engineering Projects Running 20 specified
NG3D703 MOD013585 Work-Based Learning Project Running 40 core

Teaching and Assessment


Learning and Teaching Methods


Employer Engagement

VISITING SPEAKERS

This is a strength of our courses in the Faculty of Computing, Engineering, and Science.  We engage with a wide range of professionals from industry who are invited to deliver guest lectures as part of our suite of courses in the subject area.  Many of these guest lectures are alumni.  We envisage a series of guest lecturers across a variety of modules over the course of the apprentices’ academic journey, bringing informed and industry specific case studies into the classroom. 

INDUSTRY PROJECTS

Employer related project that forms part of the work-based learning module, where an agreed problem is tasked to the apprentice around a real-world issue in the context of their own employment. The apprentice is to work towards making recommendations for the employer through critical analysis of the problem, linking theory to research, then research to practice.  

INDUSTRY VISITS

For each course there will be opportunities to visit industry related venues/sites to enrich and contextualised learning, such as construction sites, residential or commercial developments. Site visits provide apprentices with alternative experience and perspective from different industry practitioners and locations. 

VOLUNTEERING

Opportunities exist for our apprentices to volunteer through our Students’ Union, Careers Service, employer network and the apprentice’s own personal network and independent research. 

WORK-BASED LEARNING

Apprenticeship framework will stipulate competencies and necessary skills to achieve through the course which will employer led and assessed in partnership with professional bodies.  

EMPLOYER FORUMS

Both the Built Environment and Civil Engineering have active Industrial Advisory Boards.  They meet twice a year and comprises industrial partners from local and national organisation, as well as PSRB representatives and Alumni. 

In addition, USW runs an Opportunities Fair every autumn where many employers are present, providing apprentices exposure to many opportunities. Course Leaders also engage with employers and run individual sessions to suit employer demand and apprentice interest. 

OTHER

We engage with our PSRBs and facilitate on campus visits and talks on the benefits of professional body membership. 


Means of Assessment


Learning Support

INDUCTION

An induction event would be required at USW where apprentices will attend induction sessions and activities in the first week of their course.  The University’s Unilearn is used together with VERO to provide access to the course handbook, module information, an assessment schedule and their timetable.  

There is a refresher delivered 4 weeks into term and induction information is uploaded to course pages on Blackboard.  

Information sessions are recorded and made available on Course Pages.  This ensures that apprentices who are late to enrol can catch up with any information missed.  Attendance records are used, to enable CLs to identify apprentices who missed induction and may require additional support when they arrive. 

The expectation is that the induction programme does not just last for one week and that course teams continue to develop course identity, a sense of belonging and opportunities for apprentices to collaborate with peers and academics throughout Term 1. 

This would be organised through drop-in sessions for students to catch up with course team and staff, scheduled team building activity, enhancement activity during quiet times or build into the programme.  

PERSONAL ACADEMIC COACH

Through the Personal Academic Coaching (PAC) system apprentices will be assigned a coach who will formally meet apprentices on a termly basis. The apprentice can then request meetings outside of these formal windows when the need arises. The apprentices can meet with their PAC as often as they need. 

Apprentices will normally remain with the same PAC throughout their studies.  Returning apprentices are sent reminder emails from their PAC at the start of the academic year, to remind them that their PAC is still available to offer support.   

The relevant Course Leader will identify the PAC for their apprentices and incorporate PAC feedback into the 61-day reviews as part of the tripartite. 

LEARNER ANALYTICS

These courses utilise learner analytics to support our apprentices by identifying non-engagement and taking corrective steps to re-engage our apprentices.  This data relates to attendance as recorded in Jisc’s Study Goal app, engagement with Blackboard Ultra our virtual learning environment (VLE), access to our library services and assessment submissions. 

The course uses ‘Steam’ which is a USW project which acts as a dashboard in collecting the various streams of data and presents course leaders with an alert on non-engagement to take further action.  

OFFICE HOURS

Typically, staff are available when not teaching.  The Faculty of Computing, Engineering, and Science embraces an Open-Door Policy. Apprentices are provided with a document which details the arrangements for contacting staff, with particular emphasis on the Open Door Policy, which is now available both on campus and virtually.  The communications document identifies normal office hours as Monday to Friday between the hours of 08:00 and 18:00 UK time.  In addition to this, apprentices can make formal appointments to meet with staff. 

TUTORIALS

These sessions allow apprentices to be more practically engage with a topic and apply/develop/practise their learning through group and class discussions, problem solving, undertaking short exercises, working through set tasks, demonstrating their work, all with the support of a lecturer. The more personal nature of these sessions facilitates personal and tailored apprentice academic support. 

SEMINARS

There are several annual seminars and conferences which apprentices will have access to, such as the Apprenticeships Conference and events organised by the USW Careers Team and CITB.  

FORMATIVE ASSESSMENT

Each module has an element of formative assessment designed into its delivery program. This is to enable apprentices and staff to understand how the apprentices are progressing through the course and to relieve assessment pressure by allowing apprentices to become acclimatised to the level of study expected of them. 

PROGRESS MEETINGS

These will be tripartite involving 61-day reviews with Apprentice/Employer/Course Leaders to monitor the academic and work-based learning experience. Here, the knowledge, skills, and behaviours will be monitored against the competency framework checklist related to each pathway. Any progression issues can be identified, and individual action plans agreed upon for either apprentice or employer. 

PROJECT SUPERVISION

A work-based learning module will begin at the start of Year 4 and apprentices are expected to critically analyse their apprenticeship journey to write a reflective essay on their experience across the four years. Using their evidence logbook, 61-day reviews and academic study materials, apprentices will present their assessment to their academic supervisors, who are allocated at the start of the module, and their employers as part of a formal presentation. Apprentices would typically be expected to meet their academic supervisor regularly over the duration of the module, either face to face or electronically (MS Teams/phone/email), depending on circumstance. 

ONLINE RESOURCES

Teaching and coursework assessment materials are made available on-line through the University’s virtual learning environment (Unilearn).  

Modern computing laboratories provide access to specialist resources. The University also has centrally managed open-access laboratories for more general work. Each apprentice has an academic e-mail account that is particularly useful when requesting support from teaching staff. 

Staff email apprentices via Unilearn to announce course and module related information. 

 

The Built Environment are exploring investment options to enhance the programme of study using CostX, to quickly and accurately generate quantities from both 2D and 3D (BIM) models and prepare complete estimates, tenders and bills of quantities; as well as BlueBeam, a software that helps improve design quality with purpose-built markup and collaboration tool. 

ADVICE ZONE

The University operates advice zones located in the libraries of each campus. The Advice Zone supports apprentices with anything that might affect their ability to study and achieve their goals. They help with both personal and academic issues. If they cannot help directly, they guide apprentices towards the specialist support they need. 

DISABILITY

USW?has a legal obligation to make reasonable adjustments in relation to education and services as required by disabled apprentices.?It does this using individual support plans. The Disability Service provides information, advice and guidance to and co-ordinates support for?USW apprentices who have disabilities, including physical, sensory, mental health or unseen disabilities, specific learning difficulties (e.g., dyslexia) and autism. The Disability Service also has a key role in ensuring?the University meets its commitment to providing an inclusive environment for disabled apprentices. 

IT/LIBRARY

IT Services provide apprentices with their online student account (giving them access to email, printing and payments and more),?Unilearn, open access to computers on each campus, printing services, and media equipment.  The faculty has dedicated Student Resource Rooms that provides further PCs with relevant software. 

Library Services provides a wide range of high-quality library and information services to USW students, academics and researchers.  They also provide a dedicated Subject Librarian Sharon Latham, who produces subject specific guides and in class library research sessions. 

Course Exit Points

Award Criteria Final
Bachelor of Engineering (with Honours) 360 credits of which at least 100 must be at Level 6 or above, 120 at Level 5 or above, 120 at Level 4 or above and no more than 20 at Level 3 Final
Diploma of Higher Education 240 credits of which at least 100 must be at Level 5 or above, 120 credits at Level 4 or above and no more than 20 credits at Level 3 Exit
Certificate of Higher Education 120 credits of which at least 100 must be at Level 4 or above and no more than 20 at Level 3 Exit

Progression Route


Entry Requirements

Admission to the course is typically through the following qualifications:

The qualification seeks to actively promote University policies on equal opportunities and widening access and will seek to recruit as wide a range of apprentices as the current modes of attendance and admission requirements permit. 

The Degree Apprenticeships in the Built Environment and Civil Engineering pathway at Level 6 is primarily suitable for applicants who have either completed A levels appropriate for university entrance, or who may have already completed a related apprenticeship at Levels 3, 4 or 5.   

Please note: Applicants for this apprenticeship pathway are likely to be 18+ years and normally, evidence will be sought for a minimum average IELTS (International English Language Testing System) score of 6.5. 

It is likely that applicants may be asked to undertake a variety of tests which will include English, maths and problem solving, supported by an employer interview.  

These are not meant as a barrier to entry, but more to gauge the ability of the applicant to achieve the programme outcomes and to tailor the individual learning plan to meet their needs and those of the employer.   

The Professional Academy at USW will administer the application process and screen student for APL with assistance for Course Leaders where applicable. If applicants have higher qualifications or credit values for APL that meet threshold for entry to different year levels, then these applicants can gain direct entry onto those. 


Inclusive Curriculum Statement

The University of South Wales operates a policy of inclusive learning, teaching and assessment to ensure that all students have an equal opportunity to fulfil their educational potential. Course teams will have considered ways of designing out any potentially disadvantageous element of courses during the course design process. However some specific needs may remain, details about how to apply to have your needs assessed can be found at: http://unilife.southwales.ac.uk/pages/3040-disability-and-dyslexia-service/


Addendum for Delivery at a Partner Institution

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Methods Of Quality Standards

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Quality Of Standards Indicators

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