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Abdelhadi, Abdelhakim; Ibrahim, Yasser; Nurunnabi, Mohammad – Education Sciences, 2019
This study aims to use group technology to classify students at the classroom level into clusters according to their learning style preferences. Group technology is used, due to the realization that many problems are similar, and that by grouping similar problems, single solutions can be found for a set of problems. The Felder and Silverman style,…
Descriptors: Cognitive Style, Engineering Education, Teaching Styles, Student Interests
Zhang, Cheng; Chen, Bing – Higher Education Studies, 2019
It is important for students in the built environment related disciplines to acquire subject-based knowledge and skills from reflecting on their experience. In return, the learning-by-doing approach has been widely adopted in the academic cluster of built environment. To further strengthen this, this paper proposes a Virtual Reality (VR) based…
Descriptors: Engineering Education, Building Design, Cooperative Learning, Physical Environment
Van Dyken, Jennifer; Benson, Lisa – International Journal of Research in Education and Science, 2019
Few college students wanting to major in an engineering discipline who begin in precalculus actually complete an undergraduate engineering degree program. One reason for this is students struggle through calculus I and II, known barrier courses for engineering majors. This research utilizes frameworks of future time perspective (FTP) and…
Descriptors: Calculus, Engineering Education, Majors (Students), Student Experience
Goncher, Andrea M.; Boles, Wageeh – European Journal of Engineering Education, 2019
Concept inventories (CIs) are assessment instruments designed to measure students' conceptual understanding of fundamental concepts in particular fields. CIs utilise multiple-choice questions (MCQs), and specifically designed response selections, to help identify misconceptions. One shortcoming of this assessment instrument is that it fails to…
Descriptors: Engineering Education, Misconceptions, Concept Formation, Evaluation Methods
Shen, He; Warter-Perez, Nancy; Dong, Jianyu; Li, Ni – Grantee Submission, 2019
Lower division engineering courses are important yet hard to teach as many students find these highly abstracted material hard to comprehend. Recent studies have suggested that flipped classroom teaching has potential to improve the teaching and learning of lower division engineering courses. While some educators are optimistic about the potential…
Descriptors: Flipped Classroom, Teaching Methods, Engineering Education, Undergraduate Students
Kuehn, Daniel; Hecker, Ian; Simon, Alphonse – Urban Institute, 2019
Workers with training in science, technology, engineering, and mathematics (STEM) are in high demand in the United States and are essential to innovation and economic growth. Apprenticeship is a proven strategy for training workers, but it is underutilized in STEM occupations. This report explores employers' experiences with STEM apprenticeship.…
Descriptors: Apprenticeships, STEM Education, Occupations, Job Skills
Ross, Lydia – ProQuest LLC, 2019
Affirmative action is an education policy adopted by higher education institutions in the 1960s, where an applicant's race is taken into account to some degree when being evaluated for admission to a college or university. The practice of affirmative action, or race conscious-admissions, has been repeatedly challenged in the legal system and…
Descriptors: Undergraduate Students, Engineering Education, Student Attitudes, Beliefs
McKoy, Tonya L. – ProQuest LLC, 2019
Since 2004, women have earned between 18% to 20% of undergraduate degrees in engineering, however, only 1% of those awarded were obtained by African American females (NSF, 2017). Limited research studies exist regarding the interconnections of "identity" and "sense of belonging" to African Americans' persistence in engineering…
Descriptors: African American Students, Females, Engineering Education, Self Concept
Falconer, John L.; Nicodemus, Garret D. – Chemical Engineering Education, 2014
Interactive Mathematica simulations with graphical displays of system behavior are an excellent addition to chemical engineering courses. The Manipulate command in Mathematica creates on-screen controls that allow users to change system variables and see the graphical output almost instantaneously. They can be used both in and outside class. More…
Descriptors: Computer Simulation, Mathematics, Engineering Education, Chemical Engineering
Watkins, Jessica; Spencer, Kathleen; Hammer, David – Journal of Pre-College Engineering Education Research, 2014
Problem scoping--determining the nature and boundaries of a problem--is an essential aspect of the engineering design process. Some studies from engineering education suggest that beginning students tend to skip problem scoping or oversimplify a problem. However, the ways these studies often characterize students' problem scoping often do not…
Descriptors: Engineering, Engineering Education, Design, Elementary School Students
Denson, Cameron D.; Buelin, Jennifer K.; Lammi, Matthew D.; D'Amico, Susan – Journal of Technology Education, 2015
A perceived inability to assess creative attributes of students' work has often precluded creativity instruction in the classroom. The Consensual Assessment Technique (CAT) has shown promise in a variety of domains for its potential as a valid and reliable means of creativity assessment. Relying upon an operational definition of creativity and a…
Descriptors: Creativity, Engineering Education, Engineering, Creative Thinking
Li, Jing; Zhang, Yu; Tsang, Mun; Li, Manli – International Journal of Higher Education, 2015
With the increasing attention to STEM (Science, Technology, Engineering, and Math), hands-on Curriculum Practical Training (CPT) has been expanding rapidly worldwide as a requirement of the undergraduate engineering education. In China, a typical CPT for undergraduate engineering students requires several weeks of hands-on training in the…
Descriptors: Foreign Countries, Engineering, Technical Occupations, Experiential Learning
Pantoya, Michelle L.; Aguirre-Munoz, Zenaida; Hunt, Emily M. – American Journal of Engineering Education, 2015
This project describes a strategy to introduce young children to engineering in a way that develops their engineering identity. The targeted age group is 3-7 year old students because they rarely experience purposeful engineering instruction. The curriculum was designed around an engineering storybook and included interactive academic discussions…
Descriptors: Engineering, Engineering Education, Self Concept, Curriculum
West, Andrew B.; Sickel, Aaron J.; Cribbs, Jennifer D. – Science Activities: Classroom Projects and Curriculum Ideas, 2015
The Next Generation Science Standards call for the integration of science and engineering. Often, the introduction of engineering activities occurs after instruction in the science content. That is, engineering is used as a way for students to elaborate on science ideas that have already been explored. However, using only this sequence of…
Descriptors: Science Instruction, Engineering, Learning Activities, Interdisciplinary Approach
Baker, Dale R.; Wood, Lorelei; Corkins, James; Krause, Stephen – Community College Journal of Research and Practice, 2015
Self-efficacy in engineering is important because individuals with low self-efficacy have lower levels of achievement and persistence in engineering majors. To examine self-efficacy among community college engineering students, an instrument to specifically measure two important aspects of engineering, tinkering and technical self-efficacy, was…
Descriptors: Community Colleges, Engineering, Engineering Education, Self Efficacy

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