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Ritz, Hadas; Schneider-Bentley, Lisa – Advances in Engineering Education, 2018
Collaborative learning is well-established as a method to improve student learning and retention in engineering classrooms. One problem with collaborative learning is difficulty maximizing engagement of all students during group activities. We tested a change in implementation of collaborative problem solving sessions (Workshops) in a first-year…
Descriptors: Undergraduate Students, Cooperative Learning, Problem Solving, Calculus
Dahl, Bettina – European Journal of Engineering Education, 2018
Problem and Project-Based Learning (PBL) emphasise collaborate work on problems relevant to society and emphases the relation between theory and practice. PBL fits engineering students as preparation for their future professions but what about mathematics? Mathematics is not just applied mathematics, but it is also a body of abstract knowledge…
Descriptors: Problem Based Learning, Problem Solving, Teaching Methods, Mathematics Instruction
Adorno, Dominique Persano; Pizzolato, Nicola; Fazio, Claudio – Physical Review Physics Education Research, 2018
This paper investigates the efficacy of an open-inquiry approach to achieve a long term stability of physics instruction. This study represents the natural continuation of a research project started four years ago when a sample of thirty engineering undergraduates, having already attended traditional university physics instruction, were involved…
Descriptors: Outcomes of Education, Undergraduate Students, Inquiry, Science Instruction
Semushin, I. V.; Tsyganova, J. V.; Ugarov, V. V.; Afanasova, A. I. – European Journal of Engineering Education, 2018
Russian higher education institutions' tradition of teaching large-enrolled classes is impairing student striving for individual prominence, one-upmanship, and hopes for originality. Intending to converting these drawbacks into benefits, a Project-Centred Education Model (PCEM) has been introduced to deliver Computational Mathematics and…
Descriptors: Student Projects, Engineering Education, Active Learning, Teaching Methods
Keh, Lim Keng; Ismail, Zaleha; Yusof, Yudariah Mohammad – International Education Studies, 2017
This research aims to find out the creativity among the geomatical engineering students. 96 geomatical engineering students participated in the research. They were divided into 24 groups of 4 students. Each group were asked to solve a real world problem collaboratively with their creative thinking. Their works were collected and then analysed as…
Descriptors: Engineering Education, Creative Thinking, Thinking Skills, Problem Solving
Meyer, Helen – Education Sciences, 2018
In this paper, I share the results of a study of teachers' ideas about student decision-making at entry into a professional development program to integrate engineering into their instruction. The framework for the Engineering Design Process (EDP) was based on a Challenge-Based Learning (CBL) model. The EDP embedded within the CBL model suggests…
Descriptors: Teacher Attitudes, Decision Making, Decision Making Skills, Engineering Education
Roca-González, Cristina; Martin-Gutierrez, Jorge; García-Dominguez, Melchor; Carrodeguas, Mª del Carmen Mato – EURASIA Journal of Mathematics, Science & Technology Education, 2017
The present study assessed a short training experiment to improve spatial abilities using two tools based on virtual technologies: one focused on manipulation of specific geometric virtual pieces, and the other consisting of virtual orienteering game. The two tools can help improve spatial abilities required for many engineering problem-solving…
Descriptors: Engineering Education, Spatial Ability, Computer Uses in Education, Computer Simulation
Chyung, Seung Youn; Winiecki, Donald J.; Hunt, Gary; Sevier, Carol M. – American Journal of Engineering Education, 2017
Team projects are increasingly used in engineering courses. Students may develop attitudes toward team projects from prior experience, and their attitudinal responses could influence their performance during team project-based learning in the future. Thus, instructors need to measure students' attitudes toward team projects during their learner…
Descriptors: Engineering Education, Student Attitudes, Teamwork, Student Projects
Villarreal-Treviño, Maria Guadalupe; Villarreal-Lozano, Ricardo Jesus; Morales-Martinez, Guadalupe Elizabeth; Lopez-Ramirez, Ernesto Octavio; Flores-Moreno, Norma Esthela – European Journal of Educational Research, 2017
This study explored in a sample of 560 high level education students their judgment formation to perceived self-efficacy to solve mathematical tasks. Students had to read 36 experimental vignettes describing educative scenarios to learn mathematics. Each scenario presented four manipulated pieces of information (learning modality, task difficulty,…
Descriptors: Engineering Education, Self Efficacy, Electronic Learning, Synchronous Communication
Steif, Paul S.; Fu, Luoting; Kara, Levent Burak – Interactive Learning Environments, 2016
Problems faced by engineering students involve multiple pathways to solution. Students rarely receive effective formative feedback on handwritten homework. This paper examines the potential for computer-based formative assessment of student solutions to multipath engineering problems. In particular, an intelligent tutor approach is adopted and…
Descriptors: Formative Evaluation, Engineering Education, Problem Solving, Intelligent Tutoring Systems
Peteranetz, Markeya S.; Flanigan, Abraham E.; Shell, Duane F.; Soh, Leen-Kiat – IEEE Transactions on Education, 2017
Computational thinking and creative thinking are valuable tools both within and outside of computer science (CS). The goal of the project discussed here is to increase students' achievement in CS courses through a series of computational creativity exercises (CCEs). In this paper, the framework of CCEs is described, and the results of two separate…
Descriptors: Computer Science Education, Introductory Courses, Metacognition, Engineering Education
Özyurt, Özcan – EURASIA Journal of Mathematics, Science & Technology Education, 2015
Problem solving is an indispensable part of engineering. Improving critical thinking dispositions for solving engineering problems is one of the objectives of engineering education. In this sense, knowing critical thinking and problem solving skills of engineering students is of importance for engineering education. This study aims to determine…
Descriptors: Critical Thinking, Thinking Skills, Problem Solving, College Students
Zhu, Mengxiao; Zhang, Mo – ETS Research Report Series, 2017
In this paper, we examine the student group discussion processes in a scenario-based assessment of engineering professional skills called Engineering Professional Skills Assessment (EPSA). In the assessment, the students were evaluated through a discussion on a scenario related to an engineering problem with no clear-cut solution. We applied…
Descriptors: Network Analysis, Skill Analysis, Research Reports, Engineering Education
Neumann, Irene; Rösken-Winter, Bettina; Lehmann, Malte; Duchhardt, Christoph; Heinze, Aiso; Nickolaus, Reinhold – Peabody Journal of Education, 2015
This article reports about our efforts to determine engineering students' competence in mathematics. Our research is embedded in a larger project, KoM@ING--"Modeling and developing competence: Integrated IRT based and qualitative studies with a focus on mathematics and its usage in engineering studies", within the program "Modeling…
Descriptors: Engineering Education, Mathematics Skills, Competence, College Freshmen
Grohs, Jacob R.; Knight, David B.; Young, Glenda D.; Soledad, Michelle M. – International Journal of Education in Mathematics, Science and Technology, 2018
Situated in the second year of an engineering curriculum, undergraduate engineering mechanics courses represent a significant barrier to persistence in engineering. This study seeks to inform and improve these educational environments by examining academic performance paths over time in a course and explore how students in each path compare in the…
Descriptors: Academic Achievement, Learning Strategies, Engineering Education, Course Content