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Pozzi, Rossella; Noè, Carlo; Rossi, Tommaso – European Journal of Engineering Education, 2015
According to the literature, in recent years, developing experiential learning has fulfilled the requirement of a deep understanding of lean philosophy by engineering students, demonstrating the advantages and disadvantages of some of the key principles of lean manufacturing. On the other hand, the literature evidences how some kinds of game-based…
Descriptors: Experiential Learning, Engineering Education, Manufacturing, Engineering Technology
Marasco, Emily; Behjat, Laleh; Kelly, Robert; Maguire, Shannon – Papers on Postsecondary Learning and Teaching, 2019
The significant global challenges faced in the world today require innovative solutions and creative thinking. In traditional postsecondary education, technical programs such as engineering often focus on technical competencies as opposed to creative thinking. However, as industry demands for creative technical employees continue to increase,…
Descriptors: Engineering Education, Art Education, Interdisciplinary Approach, Postsecondary Education
Ikonen, Kirsi; Leinonen, Risto; Hirvonen, Pekka E.; Asikainen, Mervi A. – EURASIA Journal of Mathematics, Science and Technology Education, 2019
In this study, Finnish ninth graders' and their school guidance counselors' views concerning ninth graders' perceptions of gender-appropriateness of occupations were examined. Special interest was placed on evaluating if ninth graders bring out any gender stereotypical perceptions regarding science, technology, engineering or mathematics (STEM)…
Descriptors: Foreign Countries, Grade 9, Student Attitudes, Sex Stereotypes
Catarino, Paula; Nascimento, Maria M.; Morais, Eva; Campos, Helena; Vasco, Paulo – European Journal of Engineering Education, 2019
In higher education, engineering students have to be prepared for their future jobs, with knowledge but also with several soft skills, among them creativity. In this paper, we present a study carried on with 128 engineering undergraduate students on their understanding of mathematical creativity. The students were in the first year of different…
Descriptors: Creativity, Engineering Education, Undergraduate Students, Foreign Countries
Monteiro, Fátima; Leite, Carlinda; Rocha, Cristina – European Journal of Engineering Education, 2019
Recognising the broader role and impact of engineering in contemporary society makes it necessary to rethink engineering education to strengthen its purpose of service to humanity and to the common good. From this perspective, future engineers need a more comprehensive education that is not only bound to the technical area but also incorporates…
Descriptors: Engineering Education, Role of Education, Ethics, Reflection
Braun, Martin – Research in Education, 2019
The summative assessment approach of all level three Business and Technology Education Council (BTEC) qualifications is changing away from a purely teacher-based, criterion-referencing internal assessment approach to a mixture of internal and external assessments including exams for core units. As this is a shift away from what teachers may be…
Descriptors: College Faculty, Engineering Education, Readiness, Evaluation Methods
Robertson, Laura; Dunlap, Eric; Nivens, Ryan; Barnett, Kelli – Science and Children, 2019
This 5E (Engage, Explore, Explain, Elaborate, and Evaluate) learning cycle integrating science and mathematics challenges and engages second-grade students in designing sail cars to solve an engineering problem. Students create and use line plots to organize their data to evaluate the strengths and weakness of their design solutions. Three…
Descriptors: Science Instruction, Mathematics Instruction, Interdisciplinary Approach, Elementary School Students
Vaara, Riikka-Liisa; Gomes Sasaki, Daniel Guilherme – LUMAT: International Journal on Math, Science and Technology Education, 2019
This work address the preconceptions of first year engineering students about the kinematic graphs and the outcomes of a pedagogical strategy that relies on Predict -- Observe -- Explain learning method mediated by a video analysis software. The whole learning procedure was accompanied by a written material as students' worksheets which enabled a…
Descriptors: Graphs, Undergraduate Students, College Freshmen, Engineering Education
Morales-Martinez, Guadalupe Elizabeth; Lopez-Ramirez, Ernesto Octavio; Mezquita-Hoyos, Yanko Norberto; Lopez-Perez, Rafael; Resendiz, Ana Yolanda Lara – European Journal of Educational Research, 2019
A sample of 327 engineering bachelor students from a public university in Mexico took part in an information integration study to explore systematic thinking underlying propensity for cheating during a course exam. All study participants were provided with written descriptions of 12 scenarios pertaining to the academic evaluation criteria and were…
Descriptors: Undergraduate Students, Engineering Education, Cheating, Computer Assisted Testing
Gómez-Espina, Roberto; Rodriguez-Oroz, Delia; Chávez, Manuel; Saavedra, Cristian; Bravo, María Jesús – Higher Learning Research Communications, 2019
This manuscript collects and analyzes students' academic results related to the change in teaching methodologies used in different subjects of different science and engineering university courses between 2013 and 2016 from traditional to active methodologies. Socrative, a platform that has been designed for the educational field, was introduced,…
Descriptors: STEM Education, Student Improvement, College Students, College Instruction
Alphonse, Althea; Orellana, Anymir; Kanzki-Veloso, Elda – Quarterly Review of Distance Education, 2019
A descriptive case study with multiple data collection methods was carried out to understand how online graduate students identify the characteristics of their physical learning environment. Equivalency theory and the science of ergonomics framed the study. Participants were 10 online graduate students, all working adults (60% female, most between…
Descriptors: Graduate Students, Student Attitudes, Electronic Learning, Physical Environment
Roudaut, Anne – Higher Education Pedagogies, 2019
Higher education systems need to rethink the way teaching content is delivered to face the evolution of education and breakthroughs in educational online services. One way in which systems can innovate is by allowing students to apply their knowledge to real research problems. The benefits are dual: the students work on highly innovative topics…
Descriptors: College Instruction, Engineering Education, Instructional Innovation, Units of Study
DeMara, Ronald F.; Salehi, Soheil; Hartshorne, Richard; Chen, Baiyun; Saqr, Eman – Journal of Interactive Learning Research, 2019
The Group Learning At Significant Scale (GLASS) approach was developed to increase the scalability and efficacy of student design teams during large class sessions. GLASS utilizes freely available technology-mediated collaboration tools to facilitate instructional delivery, autograded assessment, and review of teams, alongside an innovative…
Descriptors: Cooperative Learning, Group Activities, Design, Engineering Education
Hsiao, Hsien-Sheng; Chen, Jyun-Chen; Lin, Chien-Yu; Zhuo, Pei-Wen; Lin, Kuen-Yi – Journal of Computer Assisted Learning, 2019
This study combined 3D printing technology with experiential learning strategies (ELS) to design a hands-on curriculum for preengineering students. The participants learned interdisciplinary knowledge and abstract scientific concepts through the curriculum. The study implemented a quasi-experimental design to examine whether the students who…
Descriptors: Computer Peripherals, Visual Aids, Experiential Learning, Computer Uses in Education
Blank, Rolf K.; Moulding, Brett – Learning Professional, 2019
Since 2013, a majority of states have been working to implement new standards for K-12 science education that are based on the National Research Council's framework for science education and the Next Generation Science Standards. The new science standards emphasize deeper understanding of content in relation to practices and a three-dimensional…
Descriptors: State Standards, Elementary Secondary Education, Science Instruction, Teaching Methods

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