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Garrett, Lauretta; Huang, Li; Charleton, Maria Calhoun – Mathematics Educator, 2016
Authenticity is a term commonly used in reference to pedagogical and curricular qualities of mathematics teaching and learning, but its use lacks a coherent framework. The work of researchers in engineering education provides such a framework. Authentic qualities of mathematics teaching and learning are fit within a model described by Strobel,…
Descriptors: Mathematics Instruction, Statistics, Mathematical Models, Teaching Methods
Gropper, George L. – Educational Technology, 2015
Proliferation of prescriptive models in an "engineering" field is not a sign of its maturity. Quite the opposite. Materials engineering, for example, meets the criterion of parsimony. Sadly, the very large number of models in "instructional design," putatively an engineering field, raises questions about its status. Can the…
Descriptors: Instructional Design, Models, Engineering, Research Needs
Samuels, Kyle; Seymour, Richard – Technology and Engineering Teacher, 2015
Engineering programs have long thrived in U.S. universities. More recently, engineering content has been introduced in America's high schools, yet less so in elementary and middle schools across the nation. To meet the demand for engineers in the U.S., educators must play a more active role in inspiring young students to this career option.…
Descriptors: Middle School Students, Engineering Education, Career Planning, Creativity
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
Garduño-Aparicio, Mariano; Rodríguez-Reséndiz, Juvenal; Macias-Bobadilla, Gonzalo; Thenozhi, Suresh – IEEE Transactions on Education, 2018
This paper presents a robot prototype for an undergraduate laboratory program designed to fulfill the criteria laid out by ABET. The main objective of the program is for students to learn some basic concepts of embedded systems and robotics, and apply them in practice. For that purpose, various practical laboratory exercises were prepared to teach…
Descriptors: Interdisciplinary Approach, Robotics, Engineering Education, Computer Software
Olakanmi, E. O.; Doyoyo, M. – European Journal of Engineering Education, 2014
This paper explores the effectiveness of using "structured examples in concert with prompting reflective questions" to address misconceptions held by mechanical engineering students about thermodynamic principles by employing pre-test and post-test design, a structured questionnaire, lecture room observation, and participants'…
Descriptors: Foreign Countries, Engineering, Engineering Education, Misconceptions
Badraslioglu, Duruhan – Physics Teacher, 2016
One of the intermediate goals of STEM education has been turning our students into problem solvers and critical thinkers who are equipped with better scientific analysis skills. In light of this initiative, it is imperative that we, the educators, modify the way we teach classic introductory physics topics, and in the long run all sciences, and…
Descriptors: Introductory Courses, Physics, Engineering Education, STEM Education
Conklin, Kristen; St. Clair, Tyler – Science Teacher, 2019
Project-based learning (PBL) in the science classroom provides an opportunity for students to investigate socioscientific issues that are current, authentic, and relevant. In a typical PBL unit, the teacher designs a narrative plan and acts as a facilitator who helps gather and organize student ideas. The framework of the Next Generation Science…
Descriptors: Forestry, Foreign Countries, Student Projects, Active Learning
Ahern, Aoife; Dominguez, Caroline; McNally, Ciaran; O'Sullivan, John J.; Pedrosa, Daniela – Studies in Higher Education, 2019
Developing optimum solutions to engineering problems typically relies on structured and complex thought processes that require evaluation, interpretation and opinion. Well-developed critical thinking (CT) skills are essential for dealing with the multi-dimensional nature of these problems. CT in an engineering context is well reported in teaching…
Descriptors: Critical Thinking, Engineering Education, Problem Solving, Thinking Skills
Potts, Nichola; Nolan, Shane; O'Keeffe, Alan; Hill, Karen – Primary Science, 2017
Sometimes teachers just have to go for it. Breathe and expect the unexpected. A leap of faith can be quite liberating, especially for a new Headteacher of a "Requires Improvement" school. Watching staff and children work tirelessly to improve, the author realised that teachers had to be risk takers, problem-solvers and learners, just as…
Descriptors: Science Instruction, Engineering, Risk, Problem Solving
Peter, Mira; Khoo, Elaine; Cowie, Bronwen; Scott, Jonathan; Round, Howell – Teaching and Learning Research Initiative, 2017
Successful engineering graduates need to understand engineering principles and practices and be able to work in teams, to communicate well, and to work in contexts that can be risky and uncertain. Current trends in engineering education call for the development of students' technical and non-technical skills. Thus, it is crucial that tertiary…
Descriptors: Engineering Education, Homework, Video Technology, Technology Uses in Education
Carmona Morales, D.; Jimenez-Hornero, J. E.; Vazquez, F.; Morilla, F. – IEEE Transactions on Education, 2012
In this paper, an optimal tuning tool is presented for control structures based on multivariable proportional-integral-derivative (PID) control, using genetic algorithms as an alternative to traditional optimization algorithms. From an educational point of view, this tool provides students with the necessary means to consolidate their knowledge on…
Descriptors: Computer Interfaces, Interaction, Educational Strategies, Teaching Methods
Rodriguez-Andara, Alejandro; Río-Belver, Rosa María; Rodríguez-Salvador, Marisela; Lezama-Nicolás, René – International Journal of Sustainability in Higher Education, 2018
Purpose: The purpose of this paper is to deliver a roadmap that displays pathways to develop sustainability skills in the engineering curricula. Design/methodology/approach: The selected approach to enrich engineering students with sustainability skills was active learning methodologies. First, a survey was carried out on a sample of 189 students…
Descriptors: Sustainability, Engineering Education, Literacy, Active Learning
Kohaupt, Ludwig – Cogent Education, 2015
The discrete Fourier series is a valuable tool developed and used by mathematicians and engineers alike. One of the most prominent applications is signal processing. Usually, it is important that the signals be transmitted fast, for example, when transmitting images over large distances such as between the moon and the earth or when generating…
Descriptors: Engineering Education, Mathematics Education, Algebra, Teaching Methods
Hong, Yi-Chun; Choi, Ikseon – British Journal of Educational Technology, 2015
Reflection is a critical factor in solving design problems. Using good methods to observe designers' reflection is essential to inform the design of the learning environments that support the development of design problem-solving skills. In this study, we have developed and validated a novel self-reporting questionnaire as an efficient instrument…
Descriptors: Reflection, Problem Solving, Instructional Design, Questionnaires

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