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Showing 1 to 15 of 18 results Save | Export
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Ingrid S. Carter; William R. Thornburgh; Thomas R. Tretter – Electronic Journal for Research in Science & Mathematics Education, 2024
This study explored K-12 teachers' understanding and implementation of the Next Generation Science Standards (NGSS) during and after participation in a professional development (PD) program that included the development of science teachers' conceptual understanding of science. We add to the literature with our focus on a multi-year PD program…
Descriptors: Academic Standards, Elementary Secondary Education, Science Instruction, Faculty Development
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Carpenter, Stacey L.; Hansen, Alexandria K.; Macias, Meghan; Stone, Elisa M.; Arevalo, Erik; Bianchini, Julie A. – Electronic Journal for Research in Science & Mathematics Education, 2023
Teacher education programs need to prepare their preservice teachers to both implement current science education reforms and teach in culturally and linguistically diverse classrooms. In this qualitative study, we used a framework of four instructional principles to investigate 31 preservice secondary science teachers' understanding of instruction…
Descriptors: Preservice Teachers, Science Instruction, Secondary Education, Knowledge Level
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Justo, Enrique; Delgado, Antonio; Llorente-Cejudo, Carmen; Aguilar, Rocio; Cabero-Almenara, Julio – Journal of Engineering Education, 2022
Background: Recent advances in technology and computer simulation have expanded the use of virtual manipulatives in engineering education. However, especially in disciplines in which tactile concepts (e.g., force) are included, it has been claimed that learning could be compromised by substituting physical materials with computer simulations.…
Descriptors: Manipulative Materials, Electronic Learning, Computer Simulation, Concept Formation
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Teixeira, Katiuscia Costa Barros – PRIMUS, 2023
In this study, we evaluate an innovative method to improve the teaching of linear algebra. The use of peer instruction in conjunction with a seminar strategy and supported by didactic engineering is proposed as a means to facilitate the mastery of abstract concepts, the undertaking of innovative research in problem solving, and the practical…
Descriptors: Algebra, Mathematics Instruction, Peer Teaching, Teaching Methods
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Peretz, Roee; Tal, Marina; Akiri, Effrat; Dori, Dov; Dori, Yehudit Judy – Instructional Science: An International Journal of the Learning Sciences, 2023
As science and technology create an ecosystem that is becoming increasingly more knowledge-intensive, complex, and interconnected, the next generation science standards include systems thinking and systems modeling among 21st skills that should be fostered. We examined the effect of an online cross-disciplinary learning process on the development…
Descriptors: Engineering Education, Science Education, Assignments, Interdisciplinary Approach
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Fabian Kieser; Peter Wulff; Jochen Kuhn; Stefan Küchemann – Physical Review Physics Education Research, 2023
Generative AI technologies such as large language models show novel potential to enhance educational research. For example, generative large language models were shown to be capable of solving quantitative reasoning tasks in physics and concept tests such as the Force Concept Inventory (FCI). Given the importance of such concept inventories for…
Descriptors: Physics, Science Instruction, Artificial Intelligence, Computer Software
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Reck, Rebecca M.; Sreenivas, R. S.; Loui, Michael C. – Advances in Engineering Education, 2019
Laboratory kits allow students to take home laboratory equipment to complete experiments on their own time. Because of the lower cost, laboratory kits expand access to hands-on experiences for online courses and to budget-strapped campuses. Although students like laboratory kits, no previous studies compared student learning objectives on…
Descriptors: Laboratory Experiments, Undergraduate Study, Program Effectiveness, Engineering Education
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Yang, Dazhi; Streveler, Ruth; Miller, Ronald L.; Senocak, Inanc; Slotta, Jim – Journal of Engineering Education, 2020
Background: Chi and colleagues have argued that some of the most challenging engineering concepts exhibit properties of emergent systems. However, students often lack a mental framework, or schema, for understanding emergence. Slotta and Chi posited that helping students develop a schema for emergent systems, referred to as schema training, would…
Descriptors: Heat, Thermodynamics, Scientific Concepts, Concept Formation
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Irwin, John L.; Mehendale, Sunil – Engineering Design Graphics Journal, 2018
This paper is intended to investigate the merits of adding manipulative devices and solid model simulations to accompany traditional lecture and demonstration materials to a Dynamics course. Based on the successes of Graphics courses using manipulative devices and simulation software to enhance spatial visualization skills in engineering students,…
Descriptors: Engineering Education, Computer Simulation, Manipulative Materials, Concept Formation
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Wallin, Patric; Adawi, Tom – European Journal of Engineering Education, 2018
An increasingly desired outcome of engineering education is the ability to engage in self-regulated learning (SRL). One promising method for the formative assessment of SRL is the reflective diary. There is, however, a paucity of research on the use of reflective diaries in engineering education. To mitigate this gap, we report on a case study…
Descriptors: Engineering Education, Case Studies, Feedback (Response), Learning Strategies
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Suarez, Alvaro; Kahan, Sandra; Zavala, Genaro; Marti, Arturo C. – Physical Review Physics Education Research, 2017
We describe a study on the conceptual difficulties faced by college students in understanding hydrodynamics of ideal fluids. This study was based on responses obtained in hundreds of written exams complemented with several oral interviews, which were held with first-year engineering and science university students. Their responses allowed us to…
Descriptors: Science Instruction, Scientific Concepts, Concept Formation, Science Tests
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Pejuan, Arcadi; Antonijuan, Josefina – Research in Post-Compulsory Education, 2019
In first-year engineering students, a common teacher-centred, passive learning and deficient secondary educational backgrounds are often observed. However, there is a problematic difference whether the individual background is vocational education and training (VAT) or baccalaureate. This implies an educational need to level up these backgrounds,…
Descriptors: Engineering Education, Student Centered Learning, Educational Background, Academic Education
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Haglund, Jesper; Andersson, Staffan; Elmgren, Maja – Chemistry Education Research and Practice, 2016
Entropy is a central concept in thermodynamics, but has been found to be challenging to students due to its abstract nature and the fact that it is not part of students' everyday language. Interviews with three pairs of engineering students (N = 6) were conducted and video recorded regarding their interpretation and use of the entropy concept, one…
Descriptors: Engineering Education, Scientific Concepts, Thermodynamics, Syntax
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Attorps, Iiris; Björk, Kjell; Radic, Mirko – International Journal of Mathematical Education in Science and Technology, 2016
In this paper, we report a teaching experiment regarding the theory of polynomial approximations at the university mathematics teaching in Sweden. The experiment was designed by applying Variation theory and by using the free dynamic mathematics software GeoGebra. The aim of this study was to investigate if the technology-assisted teaching of…
Descriptors: Foreign Countries, Educational Technology, Computer Software, Mathematics Instruction
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Mazumder, Quamrul H. – American Journal of Engineering Education, 2012
The use of technology such as laptop computers in the classroom has long been recognized as destructive behavior since it diverts a student's attention from course topics. However, it is conceivable that every student will be using some form of technology in the near future. Determining the effects of interactive software on students' learning…
Descriptors: Metacognition, Engineering Education, Active Learning, Computer Software
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