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Chao, Jie; Xie, Charles; Nourian, Saeid; Chen, Guanhua; Bailey, Siobhan; Goldstein, Molly H.; Purzer, Senay; Adams, Robin S.; Tutwiler, M. Shane – Journal of Research in Science Teaching, 2017
Many pedagogical innovations aim to integrate engineering design and science learning. However, students frequently show little attempt or have difficulties in connecting their design projects with the underlying science. Drawing upon the Cultural-Historical Activity Theory, we argue that the design tools available in a learning environment…
Descriptors: Science Instruction, Engineering Education, Integrated Activities, Design
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Carr, Michael; Prendergast, Mark; Breen, Cormac; Faulkner, Fiona – Teaching Mathematics and Its Applications, 2017
In the Dublin Institute of Technology, high threshold core skills assessments are run in mathematics for third-year engineering students. Such tests require students to reach a threshold of 90% on a multiple choice test based on a randomized question bank. The material covered by the test consists of the more important aspects of undergraduate…
Descriptors: Engineering Education, Mathematics Instruction, Mathematics Skills, Computer Assisted Testing
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Günes, Gökhan; Bati, Kaan; Katranci, Mehmet – International Journal of Progressive Education, 2017
Epistemology is the branch of philosophy that investigates human knowledge, in particular its source, nature, limitations, system, and accuracy. The most critical issues in epistemology are considered to be belief in the nature of knowledge and belief in the nature of knowing. Since epistemology involves the structuring processes of knowledge, it…
Descriptors: Epistemology, Cognitive Style, Preservice Teachers, Statistical Analysis
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Brooks, Hannah – Science Teacher, 2017
In most STEM industries, teamwork is essential. Engineers, scientists, statisticians, and medical professionals, for example, must communicate with one another and work together. Someday, students may enter the STEM (science, technology, engineering, and math) workforce, where they also will need to collaborate effectively. This article describes…
Descriptors: Teamwork, Science Instruction, Molecular Biology, STEM Education
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Gweon, Gahgene; Jun, Soojin; Finger, Susan; Rosé, Carolyn Penstein – International Journal of Technology and Design Education, 2017
In project-based learning (PBL) courses, which are common in design and technology education, instructors regard both the process and the final product to be important. However, conducting an accurate assessment for process feedback is not an easy task because instructors of PBL courses often have to make judgments based on a limited view of group…
Descriptors: Active Learning, Student Projects, Engineering Education, Instructional Design
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Ramey, Kay E.; Uttal, David H. – Journal of the Learning Sciences, 2017
Spatial thinking is important for success in engineering. However, little is known about "how" students learn and apply spatial skills, particularly in kindergarten to Grade 12 engineering learning. The present study investigated the role of spatial thinking in engineering learning at a middle school summer camp. Participants were 26…
Descriptors: Summer Programs, Middle School Students, Spatial Ability, Engineering Education
Secules, Stephen – ProQuest LLC, 2017
In general, what we think of as "diversity work" in undergraduate engineering education focuses in the following ways: more on the overlooked assets of minority groups than on the acts of overlooking, more on the experiences of marginalized groups than on the mechanisms of marginalization by dominant groups, more on supporting and…
Descriptors: Engineering Education, Science Instruction, Disadvantaged, Cultural Pluralism
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Vaishnav, Shreya; Carberry, Adam Robert – AERA Online Paper Repository, 2017
Most higher education institutions employ a traditional, summative scoring system to report student grades at the end of each semester. This system is limited in that it offers a final grade based on individual assignments completed throughout the semester without testing whether students have sufficiently understood the learning objectives of the…
Descriptors: Student Attitudes, Academic Standards, Grading, Active Learning
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Mamaril, Natasha A.; Usher, Ellen L.; Li, Caihong R.; Economy, D. Ross; Kennedy, Marian S. – Journal of Engineering Education, 2016
Background: Self-efficacy has been shown to be positively related to undergraduate engineering students' achievement. Designing self-efficacy measures to assess the multifaceted skills required of engineers could improve the predictive relationship between efficacy beliefs and performance. Purpose: This study evaluates the factor structure,…
Descriptors: Undergraduate Students, Engineering Education, Self Efficacy, Academic Achievement
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Samuelson, Cate C.; Litzler, Elizabeth – Journal of Engineering Education, 2016
Background: Community cultural wealth, or the types of cultural capital that students of color employ, has been used to understand the persistence of students of color in engineering. The assets-based theory of community cultural wealth helps identify the cultural resources that these students develop in their families and communities and bring to…
Descriptors: Academic Persistence, Engineering Education, Undergraduate Students, Cultural Capital
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Bruxvoort, Crystal; Jadrich, James – Science Teacher, 2016
Science students should undertake engineering design projects and carry out scientific investigations, as recommended by the "Next Generation Science Standards" (NGSS Lead States 2013). However, studies show that students misconstrue the goals of science and engineering and are uncertain about their respective practices (Gilbert and Wade…
Descriptors: STEM Education, Science Instruction, Equipment, Engineering
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Science Teacher, 2016
Science teachers and mentors continue to be challenged to meet the high expectations of "A Framework for K-12 Science Education" and the "Next Generation Science Standards." Indeed the Framework urges teachers to help learners "[build] progressively more sophisticated explanations of natural phenomena..." while the…
Descriptors: Elementary Secondary Education, Molecular Structure, Ecology, Evolution
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Nienkamp, Paul – American Educational History Journal, 2016
Robert Henry Thurston is presented in this article. He provides one the most significant examples of professionalizing engineering through innovative education and promoting scientific education practices in the late nineteenth century. The son of a draftsmen and steam engine mechanic, Thurston spent his early years in Providence, Rhode Island.…
Descriptors: Professionalism, Engineering Education, Educational History, Educational Philosophy
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Schneider, Kimberley R.; VanBennekom, Neyda; Bahr, David; Burkett, Susan; Lusth, John C.; Pressley, Shelley – Journal of College Science Teaching, 2016
Three different course models devoted to preparing science and engineering students for successful research endeavors were offered at three research institutions. Goals of this work include (a) involving students early in their academic career so they can gain the most out of subsequent research experiences and (b) providing basic skills to make…
Descriptors: STEM Education, Student Research, Science Education, Engineering Education
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Musekamp, Frank; Pearce, Jacob – Assessment & Evaluation in Higher Education, 2016
The goal of this paper is to examine the relationship of student motivation and achievement in low-stakes assessment contexts. Using Pearson product-moment correlations and hierarchical linear regression modelling to analyse data on 794 tertiary students who undertook a low-stakes engineering mechanics assessment (along with the questionnaire of…
Descriptors: Student Motivation, Academic Achievement, College Students, Engineering Education
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