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Brennan, Janie; Solomon, Erin D. – Chemical Engineering Education, 2019
A unit operations laboratory course was significantly modified to be an open-ended problem-based experience with an emphasis on teamwork and communication skills. Students were surveyed to assess gains in engineering self-efficacy as well as to indicate which course structure components were most beneficial to learning. Students showed significant…
Descriptors: Science Instruction, Science Laboratories, Self Efficacy, Chemistry
Lucke, Terry; Dunn, Peter K.; Christie, Michael – European Journal of Engineering Education, 2017
This case study trialled the introduction of a student-response system (Top Hat) in a third-year engineering Fluid Mechanics course (n = 44) to improve student engagement, motivation and cognition. It was recognised that for the potential benefits of student-response systems (SRSs) to be fully realised, more time must be allocated for student…
Descriptors: Blended Learning, Educational Technology, Homework, Technology Uses in Education
Golter, P. B.; Thiessen, D. B.; Van Wie, B. J.; Brown, G. R. – Journal of STEM Education: Innovations and Research, 2012
Promoting the adoption of an alternative pedagogy can be a difficult process. Many professors are not interested in significantly modifying how they teach their course. Those that are interested in pedagogical reform still have concerns that must be addressed before or during an implementation. This paper presents a case study following the…
Descriptors: Chemical Engineering, Educational Change, Engineering, Engineering Education
Randahl, Mira – International Journal of Mathematical Education in Science and Technology, 2016
This paper reports on a study about how the mathematics textbook was perceived and used by the teacher in the context of a calculus part of a basic mathematics course for first-year engineering students. The focus was on the teacher's choices and the use of definitions, examples and exercises in a sequence of lectures introducing the derivative…
Descriptors: Postsecondary Education, Mathematics, Mathematics Instruction, Mathematics Education
Gohardani, Omid; Gohardani, Amir S.; Dokter, Erin; Macario, Kyla – Journal of College Science Teaching, 2014
Teaching in the 21st century requires a modern teaching practice coherent with the evolutions of the Information Age. Interestingly, teaching practices have stretched beyond an art form and into the realm of science. Following these scientific trails, one can argue that one of the greatest challenges educators currently face is to maintain student…
Descriptors: Engineering, Engineering Education, Engineering Technology, Aerospace Education
Lawanto, O. – IEEE Transactions on Education, 2012
This study was conducted to evaluate students' (n=70) learning performance after their participation in lectures using enhanced guided notes (EGN) in an electric circuits course for non-electrical engineering students. Unlike traditional guided notes, EGN include questions that prompt students to evaluate their metacognitive knowledge. The results…
Descriptors: Notetaking, Metacognition, Program Effectiveness, Engineering
Cole, Jonathan S.; Spence, Stephen W. T. – European Journal of Engineering Education, 2012
The authors have developed a first-year fluids course for a class of around 230 aerospace, civil and mechanical engineering students. This paper aims to show how the teaching and assessment methodology was applied to the challenge of a large class. The lectures featured formal teaching interspersed with active learning elements. Smaller group…
Descriptors: Student Evaluation, Learner Engagement, Lifelong Learning, Engineering
Dalrymple, Odesma; Sears, David A.; Evangelou, Demetra – Advances in Engineering Education, 2013
Inherently a discovery-based pedagogy, Disassemble/Analyze/Assemble (DAA) activities start with the artefact--an instance of a typically well-engineered solution. Through systemized disassembly and the subsequent analysis of components, students engage in an iterative process of observation and follow-up probing. In-turn, this process helps…
Descriptors: Engineering Education, Engineering, Control Groups, Experimental Groups
Maceiras, Rocio; Cancela, Angeles; Urrejola, Santiago; Sanchez, Angel – European Journal of Engineering Education, 2011
The objective of this work is to share the authors' experience towards a different mode of teaching/learning method. Cooperative learning (Jigsaw) was employed on the University of Vigo's fourth-year engineering students. The results of the experience show that cooperative learning is quite a viable alternative to the classical way of lecturing at…
Descriptors: Cognitive Style, Cooperative Learning, Engineering, Teaching Methods
Cruickshank, Heather; Fenner, Richard – International Journal of Sustainability in Higher Education, 2012
Purpose: The purpose of the paper is to examine how a number of key themes are introduced in the Master's programme in Engineering for Sustainable Development, at Cambridge University, through student-centred activities. These themes include dealing with complexity, uncertainty, change, other disciplines, people, environmental limits, whole life…
Descriptors: Feedback (Response), Assignments, Class Activities, Student Attitudes
Bassetto, S.; Fiegenwald, V.; Cholez, C.; Mangione, F. – European Journal of Engineering Education, 2011
This paper presents a game of industrialisation, based on a paper airplane, that mimics real world production ramp-up and blends classical engineering courses together. It is based on a low cost product so that it can be mass produced. The game targets graduate students and practitioners in engineering fields. For students, it offers an experiment…
Descriptors: Graduate Students, Lifelong Learning, Engineering, Engineering Education
Mora, M. C.; Sancho-Bru, J. L.; Iserte, J. L.; Sanchez, F. T. – Computers & Education, 2012
The construction of the European Higher Education Area has been an adaptation challenge for Spanish universities. New methodologies require a more active role on the students' part and come into conflict with the previous educational model characterised by a high student/professor ratio, a lecture-based teaching methodology and a summative…
Descriptors: Formative Evaluation, Global Approach, Engineering, Evaluation Methods
Saleem, A.; Tutunji, T.; Al-Sharif, L. – European Journal of Engineering Education, 2011
Technology advancement and human needs have led to integration among many engineering disciplines. Mechatronics engineering is an integrated discipline that focuses on the design and analysis of complete engineering systems. These systems include mechanical, electrical, computer and control subsystems. In this paper, the importance of teaching…
Descriptors: Engineering Education, Engineering, Foreign Countries, Undergraduate Students
Lumkes, John H., Jr. – Journal of Educational Technology Systems, 2010
There has been a rapid increase in the use of technology in university classrooms. Many university classrooms and laboratories include an overhead projection unit, computer, and connections for laptops. More recently, tablet PCs have been investigated as another way to effectively engage students in a classroom environment. This study summarizes…
Descriptors: Higher Education, Teaching Methods, Engineering, Classroom Environment
Pierre, J. W.; Tuffner, F. K.; Anderson, J. R.; Whitman, D. L.; Ula, A. H. M. S.; Kubichek, R. F.; Wright, C. H. G.; Barrett, S. F.; Cupal, J. J.; Hamann, J. C. – IEEE Transactions on Education, 2009
This paper describes a one-credit laboratory course for freshmen majoring in electrical and computer engineering (ECE). The course is motivational in nature and exposes the students to a wide range of areas of electrical and computer engineering. The authors believe it is important to give freshmen a broad perspective of what ECE is all about, and…
Descriptors: Introductory Courses, Problem Based Learning, Computer Science, Engineering
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