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Perdigones, Alicia; Benedicto, Susana; Sánchez-Espinosa, Elvira; Gallego, Eutiquio; García, José L. – European Journal of Engineering Education, 2014
The aim of this work was to compare the curricula of three different agricultural engineering courses and to determine the competence of graduating students in three subject areas in order to identify possible shortfalls in the number of hours of instruction (HI) required for full competence to be attained. A total of 132 students sat a voluntary…
Descriptors: Foreign Countries, Engineering, Engineering Education, College Students
National Academies Press, 2014
"Surmounting the Barriers: Ethnic Diversity in Engineering Education" is the summary of a workshop held in September 2013 to take a fresh look at the impediments to greater diversification in engineering education. The workshop brought together educators in engineering from two- and four-year colleges and staff members from the three…
Descriptors: Engineering, Engineering Education, Barriers, College Faculty
Corona, Lilia Benítez; Rodríguez, Reyna del Carmen Martínez – Bulgarian Comparative Education Society, 2014
This paper presents part of the research results: "The development of resilient competencies through protective factors and risk in engineering students". Resilience is considered as a process, a becoming human that inscribes its development in an environment and writes its story in a culture (Jaramillo, 2004: 231). So Vanistendael…
Descriptors: Resilience (Psychology), Engineering Education, Competency Based Education, Personality Traits
Vemury, Chandra Mouli; Heidrich, Oliver; Thorpe, Neil; Crosbie, Tracey – International Journal of Sustainability in Higher Education, 2018
Purpose: The purpose of this paper is to present pedagogical approaches developed and implemented to deliver sustainable design education (SDE) to second-year undergraduate students on civil engineering programmes in the (then) School of Civil Engineering and Geosciences at Newcastle University. In doing so, the work presented offers an example of…
Descriptors: Holistic Approach, Sustainability, Design, Engineering Education
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
Dailey, Debbie; Jackson, Nykela; Cotabish, Alicia; Trumble, Jason – Roeper Review, 2018
Informal science opportunities provide authentic experiences to stimulate students' interests in science and engineering and foster their curiosity through problem-based investigations. STEMulate Engineering Academy was designed to provide children (Grades 3-5) engineering opportunities and offer teachers a unique professional development…
Descriptors: STEM Education, Engineering Education, Learner Engagement, Science Interests
Alamri, Khaled; Rogers, Vivienne – Language Learning Journal, 2018
The effectiveness of explicit instruction, within the context of strategy development in learners, has been widely accepted for several years. However, the methods used within explicit vocabulary instruction are varied and comparatively few studies have directly compared methods. This study investigates the type of instruction (in a visual or…
Descriptors: Teaching Methods, Instructional Effectiveness, English (Second Language), Second Language Learning
Harris, Milton G. – Online Submission, 2018
Science education in the US entered a period of reform in 2011 with the development and implementation of the Next Generation Science Standards (NGSS). The NGSS have subsequently been adopted in 18 states. School districts within these states are in the process of adjusting science curricula to align with the academic expectations described by the…
Descriptors: Middle School Teachers, Science Education, Teacher Attitudes, Inquiry
Baldwin, Blake; Koenig, Kathleen; Van der Bent, Andries – Science Teacher, 2016
Integrating engineering and science in the classroom can be challenging, and creating authentic experiences that address real-world problems is often even more difficult. "A Framework for K-12 Science Education" (NRC 2012), however, calls for high school graduates to be able to undertake more complex engineering design projects related…
Descriptors: Environmental Education, Engineering Education, Science Education, Design
Dahle, Reena; Rasel, Rafiul – IEEE Transactions on Education, 2016
This paper presents a series of course modules developed as a high-impact and cost-effective learning tool for modeling and simulating the microfabrication process and design of microelectromechanical systems (MEMS) devices using three-dimensional (3-D) printing. Microfabrication technology is an established fabrication technique for small and…
Descriptors: Educational Technology, Learning Modules, Electromechanical Technology, Printing
Kyle, Aaron M.; Jangraw, David C.; Bouchard, Matthew B.; Downs, Matthew E. – IEEE Transactions on Education, 2016
This paper presents the development, implementation, and assessment of a project-based Bioinstrumentation course. All course lectures and hands-on laboratory activities are related to a central project theme: a cardiac pacemaker. The students create a benchtop cardiac pacemaker by applying instrumentation knowledge acquired in the course to each…
Descriptors: Active Learning, Student Projects, Engineering Education, Biotechnology
Ruano, Ildefonso; Gamez, Javier; Dormido, Sebastian; Gomez, Juan – IEEE Transactions on Learning Technologies, 2016
Online laboratories are useful and valuable resources in high education, especially in engineering studies. This work presents a methodology to create effective laboratories for learning that interact with a Learning Management System (LMS) to achieve advanced integration. It is based on pedagogical aspects and considers not only the laboratory…
Descriptors: Management Systems, Laboratories, Teaching Methods, Computer Simulation
Foster, W. Tad; Shahhosseini, A. Mehran; Maughan, George – Journal of Technology Education, 2016
Facilitating student growth and development in diagnosing and solving technical problems remains a challenge for technology and engineering educators. With funding from the National Science Foundation, this team of researchers developed a self-guided, computer-based instructional program to experiment with conceptual mapping as a treatment to…
Descriptors: Technology Education, Engineering Education, Undergraduate Students, Problem Solving
Christian, Hamon; Joël, Lebeaume – Universal Journal of Educational Research, 2016
This paper describes the historical process of development of engineering sciences as a school discipline and as an academic subject. It aims to understand the evolution of contents and their structuration, mainly, of the industrial technology for men and of the home economics for women, from the Liberation to today. It contributes to analyze the…
Descriptors: Engineering Education, Foreign Countries, Home Economics, Industrial Education
Granata, S. N.; Dochy, F. – Studies in Higher Education, 2016
Activity theory is used to compare PhD undertaken at university, that is, academic PhD, with PhD performed in collaboration with industry, that is, semi-industrial PhD. The research is divided into a literature review and a case study. Semi-industrial and academic PhD are modelled as activity systems, and differences are highlighted in terms of…
Descriptors: Higher Education, Engineering Education, School Business Relationship, Work Environment

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