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Cian, Heidi; Marshall, Jeff; Cook, Michelle – Science Teacher, 2019
The "Framework" (NRC 2012) and "Next Generation Science Standards" (NGSS Lead States 2013) require science teachers to think differently. Specifically, NGSS's performance expectations now require that three domains (disciplinary core ideas (DCI), crosscutting concepts (CCC), and scientific and engineering practices (SEP)) be…
Descriptors: Science Instruction, Teaching Methods, Standards, Science Teachers
Vemury, Chandra Mouli; Heidrich, Oliver; Thorpe, Neil; Crosbie, Tracey – International Journal of Sustainability in Higher Education, 2018
Purpose: The purpose of this paper is to present pedagogical approaches developed and implemented to deliver sustainable design education (SDE) to second-year undergraduate students on civil engineering programmes in the (then) School of Civil Engineering and Geosciences at Newcastle University. In doing so, the work presented offers an example of…
Descriptors: Holistic Approach, Sustainability, Design, Engineering Education
Jaako, Juha – European Journal of Engineering Education, 2014
A case study was conducted during 1994-2013 on several groups of process engineering students to see what was needed to transform a single course from a teacher-centred to a student-centred learning environment (SCLE). Development work was done incrementally, using Herbart's didactic triangle as a theoretical framework. The effects of the…
Descriptors: Engineering, Engineering Education, Case Studies, Educational Change
Gómez Puente, Sonia M.; van Eijck, Michiel; Jochems, Wim – International Journal of Technology and Design Education, 2013
Design-based learning (DBL) is an educational approach grounded in the processes of inquiry and reasoning towards generating innovative artifacts, systems and solutions. The approach is well characterized in the context of learning natural sciences in secondary education. Less is known, however, of its characteristics in the context of higher…
Descriptors: Literature Reviews, Learning Strategies, Design, Natural Sciences
Koszalka, Tiffany A.; Wu, Yiyan – Quarterly Review of Distance Education, 2010
Changes in engineering practices have spawned changes in engineering education and prompted the use of distributed learning environments. A distributed collaborative engineering design (CED) course was designed to engage engineering students in learning about and solving engineering design problems. The CED incorporated an advanced interactive…
Descriptors: Engineering Education, Instructional Design, Design, Science Course Improvement Projects
Rossiter, Diane; Petrulis, Robert; Biggs, Catherine A. – Chemical Engineering Education, 2010
This paper describes the development of a first-year chemical engineering course over 5 years through action research based on evidence from student feedback. As a result of this research, the course has evolved into a blended approach which incorporates problem based learning (PBL) and online learning tools. Through the use of PBL, the students…
Descriptors: Electronic Learning, Feedback (Response), Action Research, Problem Based Learning
O'Moore, Liza; Baldock, Tom – European Journal of Engineering Education, 2007
This paper reports the development of innovative assessment sessions within two core technical courses in Civil Engineering at the University of Queensland. Peer Assessment Learning Sessions (PALS) facilitate a student's peer assessment of a colleague's problem-based learning assignment or tutorial within a "traditional" whole-class…
Descriptors: Feedback (Response), Engineering Education, Formative Evaluation, Problem Based Learning
Yeo, Roland – International Journal of Educational Management, 2005
Purpose: The paper aims to explore the challenges of problem-based learning (PBL) as an unconventional teaching methodology experienced by a higher learning institute in Singapore. Design/methodology/approach: The exploratory study was conducted using focus group discussions and semi-structured interviews. Four groups of people were invited to…
Descriptors: Engineering Education, Higher Education, Focus Groups, Educational Administration
Coppit, David – Computer Science Education, 2006
In software engineering education, large projects are widely recognized as a useful way of exposing students to the real-world difficulties of team software development. But large projects are difficult to put into practice. First, educators rarely have additional time to manage software projects. Second, classrooms have inherent limitations that…
Descriptors: Engineering Education, Teaching Methods, Organization Size (Groups), Critical Path Method

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