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Gomez Puente, S. M.; Van Eijck, M.; Jochems, W. – European Journal of Engineering Education, 2011
Design-based learning is a teaching approach akin to problem-based learning but one to which the design of artefacts, systems and solutions in project-based settings is central. Although design-based learning has been employed in the practice of higher engineering education, it has hardly been theorised at this educational level. The aim of this…
Descriptors: Expertise, Engineering Education, Problem Based Learning, Engineering
Morais, Adolfo; Barragués, José Ignacio; Guisasola, Jenaro – Journal of Computers in Mathematics and Science Teaching, 2015
This work describes the design and evaluation of a proposal to use Classroom Response Systems (CRS), intended to promote participative classes of Mathematics at University. The proposal is based on Problem Based Learnig (PBL) and uses Robert's six hypotheses for mathematical teaching-learning. The results show that PBL is a relevant strategy to…
Descriptors: Audience Response Systems, Handheld Devices, Educational Technology, Technology Uses in Education
Hockicko, Peter; Krišták, Luboš; Nemec, Miroslav – European Journal of Engineering Education, 2015
Video analysis, using the program Tracker (Open Source Physics), in the educational process introduces a new creative method of teaching physics and makes natural sciences more interesting for students. This way of exploring the laws of nature can amaze students because this illustrative and interactive educational software inspires them to think…
Descriptors: Video Technology, Teaching Methods, Science Instruction, Physics
Riek, L. D. – IEEE Transactions on Education, 2013
This paper describes a newly designed upper-level undergraduate and graduate course, Autonomous Mobile Robots. The course employs active, cooperative, problem-based learning and is grounded in the fundamental computational problems in mobile robotics defined by Dudek and Jenkin. Students receive a broad survey of robotics through lectures, weekly…
Descriptors: Robotics, Active Learning, Cooperative Learning, Problem Based Learning
Bledsoe, Karen E.; Flick, Lawrence – Journal of Science Education and Technology, 2012
This phenomenographic study documented changes in student-held electrical concepts the development of meaningful learning among students with both low and high prior knowledge within a problem-based learning (PBL) undergraduate electrical engineering course. This paper reports on four subjects: two with high prior knowledge and two with low prior…
Descriptors: Concept Mapping, Problem Based Learning, Prior Learning, Problem Solving
McCulloch, Allison W.; Ernst, Jeremy V. – Technology and Engineering Teacher, 2012
STEM-based understandings and experiences that prepare learners beyond the classroom are of imminent need, as today's STEM education students are tomorrow's leaders in science, technology, engineering, mathematics, and education (Prabhu, 2009). Integrative STEM education signifies the intentional integration of science and mathematics with the…
Descriptors: STEM Education, Engineering Education, Technology Education, Integrated Curriculum
Podges, J. M.; Kommers, P. A. M.; Winnips, K.; van Joolingen, W. R. – American Journal of Engineering Education, 2014
This study, undertaken at the Walter Sisulu University of Technology (WSU) in South Africa, describes how problem-based learning (PBL) affects the first year 'analog electronics course', when PBL and the lecturing mode is compared. Problems were designed to match real-life situations. Data between the experimental group and the control group that…
Descriptors: Foreign Countries, Engineering, Engineering Education, Problem Based Learning
Khalaf, Kinda; Balawi, Shadi; Hitt, George Wesley; Radaideh, Ahmad – Advances in Engineering Education, 2013
This paper presents an innovative, interdisciplinary, design-and-build course created to improve placement, content, and pedagogy for introductory engineering design education. Infused at the freshman level, the course aims to promote expert design thinking by using problem-based learning (PBL) as the mode of delivery. The course is structured to…
Descriptors: Foreign Countries, Engineering, Engineering Education, Design
Wang, Jennifer; Werner-Avidon, Maia; Newton, Lisa; Randol, Scott; Smith, Brooke; Walker, Gretchen – Journal of Pre-College Engineering Education Research, 2013
The Lawrence Hall of Science, a science center, seeks to replicate real-world engineering at the "Ingenuity in Action" exhibit, which consists of three open-ended challenges. These problems encourage children to engage in engineering design processes and problem-solving techniques through tinkering. We observed and interviewed 112…
Descriptors: Engineering Technology, Engineering Education, Design, Exhibits
Kelley, Todd R. – Journal of Technology Studies, 2012
The current emphasis in K-12 education on science, technology, engineering, and mathematics (STEM) (Douglas, Iversen, & Kalyandurg, 2004; Sanders, 2009) creates many ways to partner engineering education with these fields. Therefore, it is appropriate to examine the commonalities these fields have with engineering education. Though much of the…
Descriptors: Elementary Secondary Education, STEM Education, Engineering Education, Technology Education
Hernandez, Paul R.; Bodin, Ralph; Elliott, Jonathan W.; Ibrahim, Badaruddin; Rambo-Hernandez, Karen E.; Chen, Thomas W.; de Miranda, Michael A. – International Journal of Technology and Design Education, 2014
Recent publications have elevated the priority of increasing the integration of Science, Technology, Engineering, and Mathematics (STEM) content for K-12 education. The STEM education community must invest in the development of valid and reliable to scales to measure STEM content, knowledge fusion, and perceptions of the nature of STEM. This brief…
Descriptors: STEM Education, Engineering Education, Design, Integrated Curriculum
Davis, Freddie J.; Lockwood-Cooke, Pamela; Hunt, Emily M. – American Journal of Engineering Education, 2011
Over the last few years, WTAMU Mathematics, Engineering and Science faculty has used interdisciplinary projects as the basis for implementation of a linked-class approach to Problem-Based Learning (PBL). A project that has significant relevance to engineering statics, fluid mechanics, and calculus is the Hydrostatic Pressure Project. This project…
Descriptors: Engineering Education, Undergraduate Students, Problem Based Learning, Interdisciplinary Approach
Goel, Sanjay – Online Submission, 2011
This paper describes some ideas and experiences with training student engineers in creativity and critical thinking. In our survey, a large majority (82%) of respondents felt that as compared to all other kind of academic engagements, their projects had contributed most to develop their creativity. About 50% had also felt that their projects were…
Descriptors: Foreign Countries, Engineering, Technical Occupations, Creativity
Becerra-Labra, Carlos; Gras-Marti, Albert; Torregrosa, Joaquin Martinez – International Journal of Science Education, 2012
A model of teaching/learning is proposed based on a "problem-based structure" of the contents of the course, in combination with a training in paper and pencil problem solving that emphasizes discussion and quantitative analysis, rather than formulae plug-in. The aim is to reverse the high failure and attrition rate among engineering…
Descriptors: Physics, Teaching Methods, Problem Based Learning, Scientific Concepts
Hall, Wayne; Palmer, Stuart; Bennett, Mitchell – European Journal of Engineering Education, 2012
Project-based learning (PBL) is a well-known student-centred methodology for engineering design education. The methodology claims to offer a number of educational benefits. This paper evaluates the student perceptions of the initial and second offering of a first-year design unit at Griffith University in Australia. It builds on an earlier…
Descriptors: Student Projects, Investigations, Student Attitudes, Educational Benefits

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