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Showing 1 to 15 of 17 results Save | Export
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Panchami Patel; Prachi Thareja – Journal of Chemical Education, 2024
This article describes two sets of experiments designed to enhance the understanding of colloidal systems. These experiments were designed as a part of the theme "Colloids: Where Science Meets Engineering" taught in the Department of Chemical Engineering and additionally offered to physics, chemistry, and materials science departments as…
Descriptors: Hands on Science, Science Education, Engineering Education, Science Experiments
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Thornburgh, William; McFadden, Justin; Robinson, Brian – Science and Children, 2020
The "Next Generation Science Standards" ("NGSS") have placed an emphasis on the incorporation of engineering practices into K-12 science instruction. This article details a sequence of physical science lessons that would be part of teaching matter in the second-grade classroom. The goals of these lessons are: (1) to be hands-on…
Descriptors: Standards, Science Education, Engineering Education, Grade 2
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Wong, Wing-Kwong; Chen, Kai-Ping; Chang, Hong-Ming – Journal of Baltic Science Education, 2020
This research aimed to explore the effects of a virtual lab (VL) and a Microcomputer-based Lab (MBL) on students' performance in scientific modeling. A web-based virtual lab and a low-cost MBL were proposed to help first-year engineering students build scientific models. Empirical research was done in a slope motion experiment. The participants…
Descriptors: Foreign Countries, Science Laboratories, Computer Simulation, Educational Technology
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Kye, Hannah – Science and Children, 2019
In this article, second graders learn the basics of engineering through an exploration of magnetic levitation (maglev) technology. The author designed and taught the lessons to a class of 26 students enrolled in a month-long summer science program. The maglev lessons took place over three mornings (15 minutes for the first lesson and 40 minutes…
Descriptors: Grade 2, Engineering Education, Magnets, Summer Science Programs
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Bustamante, Andres S.; Greenfield, Daryl B.; Nayfeld, Irena – Education Sciences, 2018
Early childhood science and engineering education offer a prime context to foster approaches-to-learning (ATL) and executive functioning (EF) by eliciting children's natural curiosity about the world, providing a unique opportunity to engage children in hands-on learning experiences that promote critical thinking, problem solving, collaboration,…
Descriptors: Science Education, Critical Thinking, Persistence, Engineering Education
Bustamante, Andres S.; Greenfield, Daryl B.; Nayfeld, Irena – Grantee Submission, 2018
Early childhood science and engineering education offer a prime context to foster approaches-to-learning (ATL) and executive functioning (EF) by eliciting children's natural curiosity about the world, providing a unique opportunity to engage children in hands-on learning experiences that promote critical thinking, problem solving, collaboration,…
Descriptors: Science Education, Critical Thinking, Persistence, Engineering Education
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Albéri, Matteo; Baldoncini, Marica; Bottardi, Carlo; Chiarelli, Enrico; Landsberger, Sheldon; Raptis, Kassandra Giulia Cristina; Serafini, Andrea; Strati, Virginia; Mantovani, Fabio – Education Sciences, 2019
Although environmental radioactivity is all around us, the collective public imagination often associates a negative feeling to this natural phenomenon. To increase the familiarity with this phenomenon we have designed, implemented, and tested an interdisciplinary educational activity for pre-collegiate students in which nuclear engineering and…
Descriptors: Engineering Education, Radiation, Learning Activities, Interdisciplinary Approach
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DeBoer, Jennifer; Haney, Casey; Atiq, S. Zahra; Smith, Casey; Cox, David – European Journal of Engineering Education, 2019
A shortcoming of Massive Open Online Courses (MOOCs) is the lack of substantive integration of hands-on activities into online classrooms. We conducted a randomised control trial (RCT) in a MOOC where we sent the treatment group at-home lab kits with which they could perform experiments in their own homes. In our intervention research, we found…
Descriptors: Experimental Groups, Control Groups, Hands on Science, Electronic Learning
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Li, Xuesong; Van Wie, Bernard J. – Journal of STEM Education: Innovations and Research, 2016
The difficulty in covering chemical engineering concepts using traditional lectures and whiteboard teaching approaches means today's students' learning demands are unfulfilled, so alternate methods are needed. Desktop learning modules (DLMs) are designed to show industrial fluid flow and heat transfer concepts in a standard classroom so students…
Descriptors: Heat, Mechanics (Physics), Chemical Engineering, Experimental Groups
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Orr, Taylor; Flowers, Jim – Technology and Engineering Teacher, 2014
The goal of formal education is student learning. By emphasizing experimentation in the classroom or lab, students learn about the results of a particular inquiry. But more importantly, they learn to refine their approach to learning by creating new knowledge rather than merely remembering what they have been told. An inquiry approach where…
Descriptors: Active Learning, Inquiry, Science Experiments, Scientific Methodology
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Henkel, Marius; Zwick, Michaela; Beuker, Janina; Willenbacher, Judit; Baumann, Sandra; Oswald, Florian; Neumann, Anke; Siemann-Herzberg, Martin; Syldatk, Christoph; Hausmann, Rudolf – Biochemistry and Molecular Biology Education, 2015
Bioprocess engineering is a highly interdisciplinary field of study which is strongly benefited by practical courses where students can actively experience the interconnection between biology, engineering, and physical sciences. This work describes a lab course developed for 2nd year undergraduate students of bioprocess engineering and related…
Descriptors: Undergraduate Students, College Science, Biology, Engineering Education
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Raman, Raghu; Achuthan, Krishnashree; Nedungadi, Prema; Diwakar, Shyam; Bose, Ranjan – IEEE Transactions on Education, 2014
Virtual Labs (VLAB) is a multi-institutional Open Educational Resources (OER) initiative, exclusively focused on lab experiments for engineering education. This project envisages building a large OER repository, containing over 1650 virtual experiments mapped to the engineering curriculum. The introduction of VLAB is a paradigm shift in an…
Descriptors: Laboratory Experiments, Engineering Education, Educational Technology, Educational Innovation
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Yang, Yonggao; Li, Lin – American Journal of Engineering Education, 2013
Renewable energy is the most rapidly growing discipline in today's business world and is commonly viewed as the main arena for research and development in various fields. This article summarizes the work and efforts of an educational project conducted at Prairie View A&M University (PVAMU). A major goal of the project was to design renewable…
Descriptors: Engineering Education, Energy, Energy Education, Hands on Science
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Keeley, Page – Science and Children, 2015
After completing a science unit on transfer of energy, including how chemical energy from a battery is converted to electrical energy; electrical circuits; and transformation of energy into sound, light, or heat; the students in Mrs. Finlay's fourth-grade science class were challenged to use what they learned to solve a problem. The students…
Descriptors: Scientific Concepts, Engineering Education, Formative Evaluation, Energy
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Bianco, Andrew S. – Technology and Engineering Teacher, 2014
All technology educators have favorite lessons and projects that they most desire to teach. Many teachers might ask why teach robotics when there are many other concepts to cover with the students? The answer to this question is to engage students in science, technology, engineering, and math (commonly referred to as STEM) concepts. In order for…
Descriptors: Robotics, Class Activities, Classroom Techniques, Technology Education
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