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Dierkes, Sunda V. – Performance Improvement, 2012
The current debate over whether to choose just one universal human performance technology (HPT) model, in particular Langdon's language of work (LOW) model, promises a shared understanding among HPT professionals, credibility for the HPT profession, and a return on investment of time and effort in developing performance models over more than 70…
Descriptors: Performance Technology, Models, Convergent Thinking, Problem Solving
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Wang, Hui-Hui; Billington, Barbara L.; Chen, Ying-Chih – Science and Children, 2014
It was a hot summer day. Naomi and her cousin walked into the community center. She said, "Miss Jones, our moms need to work. They told us to come here and stay for couple hours." This is a common occurrence in communities with low socioeconomic status during the summertime; parents need to go to work, but children are on summer break.…
Descriptors: Science Instruction, STEM Education, After School Programs, Females
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Razzouk, Rabieh; Dyehouse, Melissa; Santone, Adam; Carr, Ronald – Science Teacher, 2014
Teachers typically teach subjects separately, but integrated science, technology, engineering, and mathematics (STEM) curriculums that focus on real-world practices are gaining momentum (NAE and NRC 2009). Before release of the "Next Generation of Science Standards" ("NGSS") (NGSS Lead States 2013), 36 states already had a…
Descriptors: Plants (Botany), Pollution, Science Instruction, Standards
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Pizzolato, Nicola; Fazio, Claudio; Sperandeo Mineo, Rosa Maria; Persano Adorno, Dominique – Physical Review Special Topics - Physics Education Research, 2014
This paper addresses the efficacy of an open-inquiry approach that allows students to build on traditionally received knowledge. A sample of thirty engineering undergraduates, having already attended traditional university physics instruction, was selected for this study. The students were involved in a six-week long learning experience of…
Descriptors: Inquiry, Active Learning, Undergraduate Students, Engineering Education
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Berge, Maria; Weilenmann, Alexandra – European Journal of Engineering Education, 2014
In educational research, it is well-known that collaborative work on core conceptual issues in physics leads to significant improvements in students' conceptual understanding. In this paper, we explore collaborative learning in action, adding to previous research in engineering education with a specific focus on the students' use of free body…
Descriptors: Foreign Countries, Engineering Education, Group Dynamics, Cooperative Learning
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Starling, A. Leyf Peirce; Lo, Ya-Yu; Rivera, Christopher J. – Journal of the American Academy of Special Education Professionals, 2015
This study evaluated the differential effects of three different science teaching methods, namely engineering teaching kit (ETK), explicit instruction (EI), and a combination of the two methods (ETK+EI), in two sixth-grade science classrooms. Twelve students with learning disabilities (LD) and/or attention deficit hyperactivity disorder (ADHD)…
Descriptors: Science Education, Middle School Students, Problem Solving, Tests
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Hu, Dehui; Rebello, N. Sanjay – Physical Review Special Topics - Physics Education Research, 2013
This study focuses on students' use of the mathematical concept of differentials in physics problem solving. For instance, in electrostatics, students need to set up an integral to find the electric field due to a charged bar, an activity that involves the application of mathematical differentials (e.g., "dr," "dq"). In this…
Descriptors: Physics, Science Instruction, Mathematical Concepts, Problem Solving
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Norstrom, Per – International Journal of Technology and Design Education, 2013
Engineers commonly use rules, theories and models that lack scientific justification. Examples include rules of thumb based on experience, but also models based on obsolete science or folk theories. Centrifugal forces, heat and cold as substances, and sucking vacuum all belong to the latter group. These models contradict scientific knowledge, but…
Descriptors: Science Education, Teaching Methods, Technology Education, Intellectual Disciplines
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O'Connell, Robert M. – IEEE Transactions on Education, 2015
Team-based learning (TBL) is a form of student-centered active learning in which students independently study new conceptual material before it is treated in the classroom, and then subsequently spend considerable classroom time working in groups on increasingly challenging problems and applications based on that new material. TBL provides…
Descriptors: Teamwork, Teaching Methods, Engineering Education, Transfer of Training
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Muñoz-Merino, Pedro J.; Molina, Manuel Fernández; Muñoz-Organero, Mario; Kloos, Carlos Delgado – IEEE Transactions on Education, 2014
A lack of student motivation is a problem in many courses in electrical engineering. Introducing competition between students can enhance their motivation, but it can also generate negative emotions. This paper presents an empirical study of students in a telecommunications engineering degree; it measured their level of motivation, and their…
Descriptors: Student Motivation, Psychological Patterns, Competition, Engineering Education
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Navaresse, Daniel O.; Yauch, Charlene A.; Goff, Kathy; Fonseca, Daniel J. – Creativity Research Journal, 2014
This study used an experimental approach to investigate the conditions under which creative outcomes should be expected from the interplay of individual creativity, the innovation orientation of the organizational culture, and the rewards distribution rules. The results of this study suggest that the individual creativity of technically educated…
Descriptors: Creativity, Organizational Culture, Creative Thinking, Creativity Tests
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Zuza, Kristina; Almudí, José-Manuel; Leniz, Ane; Guisasola, Jenaro – Physical Review Special Topics - Physics Education Research, 2014
In traditional teaching, the fundamental concepts of electromagnetic induction are usually quickly analyzed, spending most of the time solving problems in a more or less rote manner. However, physics education research has shown that the fundamental concepts of the electromagnetic induction theory are barely understood by students. This article…
Descriptors: Science Instruction, Scientific Concepts, Teaching Methods, Problem Solving
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Marra, Rose M.; Jonassen, David H.; Palmer, Betsy; Luft, Steve – Journal on Excellence in College Teaching, 2014
Problem-based learning (PBL) is an instructional method where student learning occurs in the context of solving an authentic problem. PBL was initially developed out of an instructional need to help medical school students learn their basic sciences knowledge in a way that would be more lasting while helping to develop clinical skills…
Descriptors: Problem Based Learning, Teaching Methods, Problem Solving, Constructivism (Learning)
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Roshanaei, Mehrnaz – International Journal of Learning and Change, 2014
The research focused on three issues in college science students: whether there was empirical support for the two factor (knowledge of cognition and regulation of cognition) view of metacognition, whether the two factors were related to each other, and whether either of the factors was related to empirical measures of cognitive and metacognitive…
Descriptors: Premedical Students, Medical Students, Engineering Education, Biochemistry
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Apedoe, Xornam S.; Schunn, Christian D. – Instructional Science: An International Journal of the Learning Sciences, 2013
While the purposes of design and science are often different, they share some key practices and processes. Design-based science learning, which combines the processes of engineering design with scientific inquiry, is one attempt to engage students in scientific reasoning via solving practical problems. Although research suggests that engaging…
Descriptors: Success, Design, Learning, Problem Solving
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