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Komp, Evan A.; Pelkie, Brenden; Janulaitis, Nida; Abel, Michael; Castillo, Ivan; Chiang, Leo H.; Peng, You; Beck, David C.; Valleau, Stéphanie – Chemical Engineering Education, 2023
We present a two-week active learning chemical engineering hackathon event specifically designed to teach undergraduate chemical engineering students of any skill level data science through Python and directly apply this knowledge to a real problem provided by industry. The event is free and optional to the students. We use self-evaluation surveys…
Descriptors: Data Science, Undergraduate Students, Learning Activities, Chemical Engineering
Calkins, Susanna C.; Rivnay, Jonathan – Journal of Effective Teaching in Higher Education, 2021
This article highlights an innovative take on the jigsaw format, an inclusive and cooperative active learning strategy, implemented in an upper-level engineering elective course. After students complete the usual two steps of the jigsaw method--first gaining mastery in "expert groups" and then collaboratively teaching their peers in…
Descriptors: Cooperative Learning, Active Learning, Engineering Education, Peer Teaching
Loh, A. P.; Law, Elliot; Putra, Andi Sudjana; Koh, Edwin; Zuea, Tang Kok; Tat, Khoo Eng – Advances in Engineering Education, 2021
A quick literature survey shows that Engineering education has been undergoing change since more than a hundred years ago, largely due to the needs of industry. The current drive for change is not very different and comes from the perception that Engineering graduates of today are not able to function effectively in the workplace. This is in part…
Descriptors: Foreign Countries, Innovation, Design, Engineering Education
Liston, Maeve – School Science Review, 2021
This article explores the concept of STEM education and characteristics of truly authentic STEM learning experiences and events. It examines the engineering design process and how engineering glues science, mathematics and technology together. Two engineering challenges, 'Design and build a bridge' and 'Design and make a catapult', carried out…
Descriptors: STEM Education, Engineering, Design, Learning Activities
Mehrabi Boshrabadi, Abbas; Hosseini, M. Reza – Assessment & Evaluation in Higher Education, 2021
This paper argues that development of students' evaluative judgement capability, which encapsulates a range of cognitive and social skills, should be considered as a primary objective of the collaborative problem-solving assessment practices in engineering. This is a response to call for preparing job-ready students. To meet the multiple demands…
Descriptors: Cooperative Learning, Problem Solving, Engineering Education, Test Construction
Siebert-Evenstone, Amanda L.; Irgens, Golnaz Arastoopour; Collier, Wesley; Swiecki, Zachari; Ruis, Andrew R.; Shaffer, David Williamson – Journal of Learning Analytics, 2017
Analyses of learning based on student discourse need to account not only for the content of the utterances but also for the ways in which students make connections across turns of talk. This requires segmentation of discourse data to define when connections are likely to be meaningful. In this paper, we present an approach to segmenting data for…
Descriptors: Semantics, Discourse Analysis, Models, Epistemology
Alyssa C. Taylor; Jamie L. Hernandez – Biomedical Engineering Education, 2022
As cornerstones of biomedical engineering and bioengineering undergraduate programs, hands-on laboratory experiences promote key skill development and student engagement. Lab courses often involve team-based activities and close communication with instructors, allowing students to build connection and community. Necessitated by the pandemic,…
Descriptors: Inclusion, Teamwork, Blended Learning, Biology
Rowe, Nicholas; Martin, Rose; Buck, Ralph; Mabingo, Alfdaniels – Higher Education Research and Development, 2021
This article draws on a multi-phase study of collaboration in tertiary education programmes. This commenced with a survey of 111 students in Engineering and Creative Arts, contrasting their experiences of the teaching of collaboration in different faculties. This led to an iterative action research cycle, in which the conceptual boundaries that…
Descriptors: Fundamental Concepts, Engineering Education, Art Education, Alignment (Education)
Christiaan H. L. Tempelman; Annemiek Rijgersberg; Michel van der Eijk – Journal of Chemical Education, 2023
The redesign of the first year basic chemistry course is described at the Rotterdam University of Applied Sciences Chemical Engineer educational course. This was done with the aim to reduce student drop-out during the first year of the educational program. On one hand, it was chosen to teach the basic chemistry course in the laboratory where…
Descriptors: Science Instruction, Chemistry, Science Laboratories, College Freshmen
Thuné, Michael; Eckerdal, Anna – European Journal of Engineering Education, 2019
Previous research shows that many students find it difficult to learn computer programming. To learn computer programming includes both gaining theoretical understanding and learning to develop programmes in practice. To this end, teachers commonly design programming exercises for the students in the computer laboratory. To be able to improve the…
Descriptors: Programming, Computer Science Education, Theory Practice Relationship, Science Laboratories
Kanika; Chakraverty, Shampa; Chakraborty, Pinaki – Journal of Educational Technology Systems, 2020
Courses on computer programming are included in the curricula of almost all engineering disciplines. We surveyed the research literature and identified the techniques that are commonly used by instructors for teaching these courses. We observed that visual programming and game-based learning can enhance computational thinking and problem-solving…
Descriptors: Teaching Methods, Programming, Computer Science Education, Robotics
Mitchell, John; Nyamapfene, Abel; Roach, Kate; Tilley, Emanuela – Higher Education Pedagogies, 2019
Accredited engineering degrees call upon students to develop a wide range of knowledge and skills. These range from technical, scientific and mathematical knowledge, through to transferable skills such as communications, teamwork, business acumen and critical analysis. Through a faculty-wide curriculum development programme we have sought to…
Descriptors: Educational Philosophy, Teaching Methods, Engineering Education, Student Motivation
Billingsley, William; Torbay, Rosemary; Fletcher, Peter R.; Thomas, Richard N.; Steel, Jim R. H.; Süß, Jörn Guy – ACM Transactions on Computing Education, 2019
One of the challenges of global software engineering courses is to bring the practices and experience of large geographically distributed teams into the local and time-limited environment of a classroom. Over the last 6 years, an on-campus studio course for software engineering has been developed at the University of Queensland (UQ) that places…
Descriptors: Computer Science Education, Universities, Undergraduate Students, Teaching Methods
McLoone, Seamus C.; Lawlor, Bob J.; Meehan, Andrew R. – Journal of Problem Based Learning in Higher Education, 2016
This paper describes how a circuits-based project-oriented problem-based learning educational model was integrated into the first year of a Bachelor of Engineering in Electronic Engineering programme at Maynooth University, Ireland. While many variations of problem based learning exist, the presented model is closely aligned with the model used in…
Descriptors: Engineering Education, Problem Based Learning, Foreign Countries, Teaching Methods
López Garcia, Diego A.; Mateo Sanguino, Tomás de J.; Cortés Ancos, Estefania; Fernández de Viana González, Iñaki – IEEE Transactions on Learning Technologies, 2016
Debates have been used to develop critical thinking within teaching environments. Many learning activities are configured as working groups, which use debates to make decisions. Nevertheless, in a classroom debate, only a few students can participate; large work groups are similarly limited. Whilst the use of web tools would appear to offer a…
Descriptors: Debate, Web 2.0 Technologies, Internet, Cooperative Learning