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Cantero-Chinchilla, F. N.; Díaz-Martín, C.; García-Marín, A. P.; Estévez, J. – Technology, Knowledge and Learning, 2020
Performance of engineering degree students often becomes an important concern for lectures. Using classical teaching methodologies in practical lectures may be behind the problem. The present work develops a couple of innovative student-response-system based methodologies designed to be implemented during engineering practical lessons in higher…
Descriptors: Instructional Innovation, Audience Response Systems, Engineering Education, Civil Engineering
Mohan Honnagudi Gururaj; Nandish Malleshappa; Sankhya Nagesh Nayak; Devaraj Fakkirappa Vadenapur; Benak Patel Medugondanahalli Puradaswamy – Education and Information Technologies, 2024
A Study with undergraduate engineering students was conducted in order to evaluate whether cognitive and comprehending ability can be improved by incorporating the tool based learning. The simulator tools and virtual labs were used to represent tool based learning. The study was conducted on three different years of students. In the first stage…
Descriptors: Undergraduate Students, Engineering Education, Evaluation, Comprehension
Chang, Yu-Shan; Chen, Si-Yi; Yu, Kuang-Chao; Chu, Yih-Hsien; Chien, Yu-Hung – British Journal of Educational Technology, 2017
This study explored the effects of cloud-based m-learning on students' creative processes and products in engineering design. A nonequivalent pretest-posttest design was adopted, and 62 university students from Taipei City, Taiwan, were recruited as research participants in the study. The results showed that cloud-based m-learning had a positive…
Descriptors: Telecommunications, Handheld Devices, Foreign Countries, Computer Software
Chang, Yevvon Yi-Chi; Chiou, Wen-Bin – EURASIA Journal of Mathematics, Science & Technology Education, 2017
Self-efficacy toward science learning has been shown to play a crucial role in determining students' motivation and achievements. Social cognitive theory proposes that positive and negative task outcomes affect mastery experiences from which self-efficacy develops. The current research examined whether prior level of self-efficacy would serve as a…
Descriptors: Self Efficacy, Engineering Education, Foreign Countries, Equipment
Kumar, Amit; Mantri, Archana; Singh, Gurjinder; Kaur, Deepti Prit – Education and Information Technologies, 2022
Collaborative learning is the favored approach educators use to inculcate social skills and promote peer interactions in students. Embedded Systems is a compulsory Electronics and Communication Engineering and Electrical Engineering course, which solves real-time problems. The collaborative learning approach compliments the learning style needed…
Descriptors: Cooperative Learning, Artificial Intelligence, Learning Activities, Teaching Methods
Harsh, Matthew; Bernstein, Michael J.; Wetmore, Jameson; Cozzens, Susan; Woodson, Thomas; Castillo, Rafael – European Journal of Engineering Education, 2017
Despite calls to address global challenges through community engagement, engineers are not formally prepared to engage with communities. Little research has been done on means to address this "engagement gap" in engineering education. We examine the efficacy of an intensive, two-day Community Engagement Workshop for engineers, designed…
Descriptors: Engineering Education, Engineering, Community Involvement, Community Development
Long, Chua Yaw; Balakrishnan, Balamuralithara; Ying, Choong Pooi; Yan, Koh Yit – International Journal of Higher Education, 2020
This research paper presents the outcome of research conducted to improve and enhance the creativity level of engineering undergraduates at a private institution of higher learning in Malaysia. A Creative Thinking Module that features six proposed creative thinking tools was developed and administered to a group of 3rd Year Mechanical Engineering…
Descriptors: Engineering Education, Undergraduate Students, Creative Thinking, Creativity Tests
Huffman, Tanner J.; Mentzer, Nathan – International Journal of Technology and Design Education, 2021
Modeling allows students to become more effective designers. High school technology and engineering students engage in engineering design challenges as part of traditional instructional practices. Model-eliciting activities (MEA) present students with opportunities to elicit mathematical thinking that facilitates modeling. Students (n = 266) from…
Descriptors: Design, High School Students, Comparative Analysis, Scoring Rubrics
Nair, Priya; Ankeny, Casey J.; Ryan, Justin; Okcay, Murat; Frakes, David H. – Journal of STEM Education: Innovations and Research, 2016
We investigated the use of a new system, HemoFlow™, which utilizes state of the art technologies such as particle image velocimetry to test endovascular devices as part of an undergraduate biomedical engineering curriculum. Students deployed an endovascular stent into an anatomical model of a cerebral aneurysm and measured intra-aneurysmal flow…
Descriptors: Engineering Education, Biomedicine, Undergraduate Students, Pretests Posttests
Kelley, Todd; Sung, Euisuk – Journal of Technology Education, 2017
The introduction of engineering practices within the "Next Generation Science Standards" provides technology educators with opportunities to help STEM educators infuse engineering design within a core curriculum. The introduction of teaching engineering design in early elementary grades also provides opportunities to conduct research…
Descriptors: Elementary School Students, Transfer of Training, Engineering Education, Design
King, Andrew C.; Hidrovo, Carlos H. – Advances in Engineering Education, 2015
Laboratory-based instruction is a powerful educational tool that engages students in Science, Technology, Engineering and Mathematics (STEM) disciplines beyond textbook theory. This is true in mechanical engineering education and is often used to provide collegiate-level students a hands-on alternative to course theory. Module-based laboratory…
Descriptors: Engineering, Engineering Education, Mechanics (Physics), Laboratory Experiments
Missingham, Dorothy; Shah, Siddarth; Sabir, Fizza – Journal of University Teaching and Learning Practice, 2018
Problem solving and researching are connected activities in the engineering profession and across education. The empirical research presented in this paper considered the effectiveness for teaching and learning of a model that was based on this connection and derived from the parameters of the Research Skill Development framework. The model,…
Descriptors: Problem Solving, Research Skills, Engineering Education, Undergraduate Students
olde Scholtenhuis, Léon; Vahdatikhaki, Farid; Rouwenhorst, Chris – European Journal of Engineering Education, 2021
Multimedia in blended learning provides the ability to enhance students' performance and satisfaction. Microlectures are one type of multimedia that comprise of short modular videos that introduce basic theoretical concepts. Literature provides limited insight into how this specific format supports engineering classrooms. This study, therefore,…
Descriptors: Flipped Classroom, Blended Learning, Classroom Communication, Decision Making
Ruth, Alissa; Hackman, Joseph; Brewis, Alexandra; Spence, Tameka; Luchmun, Rachel; Velez, Jennifer; Ganesh, Tirupalavanam G. – Education Sciences, 2019
A major goal in Engineering training in the U.S. is to continue to both grow and diversify the field. Project- and service-based forms of experiential, problem-based learning are often implemented with this as a goal, and Engineering Projects in Community Service (EPICS) High is one of the more well-regarded and widely implemented. Yet, the…
Descriptors: High School Students, Student Projects, Service Learning, Engineering Education
Yu, Kuang-Chao; Lin, Kuen-Yi; Chang, Shu-Fen – EURASIA Journal of Mathematics, Science & Technology Education, 2017
The purpose of this study was to develop a mechanical critical thinking scale for high school students. A stratified random sampling method was used to establish the norms. After pre-tests and item analysis, the scale was determined to have five subtest sections (i.e., recognition of assumptions, induction, deduction, interpretation, and…
Descriptors: Critical Thinking, High School Students, Foreign Countries, Item Analysis