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Anna F. DeJarnette; Stephanie M. Rollmann; Dieter F. Vanderelst; John E. Layne; Anna Hutchinson – Journal of College Science Teaching, 2024
Transdisciplinary learning--where students develop and apply knowledge from multiple disciplines to solve open-ended problems--is necessary to prepare students for the most pressing real-world problems. Because transdisciplinary education often requires reimagining the content and design of undergraduate science courses, it can be a challenge for…
Descriptors: Animals, Robotics, Cooperation, Interdisciplinary Approach
Giuseppe Prete; Federica Chiappetta; Piefrancesco Riccardi; Rosanna Tucci; Antonio Bruzzese; Claudio Meringolo – International Society for Technology, Education, and Science, 2023
Recent research emphasizes the need for a more sustained interaction of schools with universities and research institutions. For example, informal after-school programs integrated into the school curriculum can provide opportunities for meaningful interaction with researchers in active learning settings. At the physics department of University of…
Descriptors: Foreign Countries, College School Cooperation, Active Learning, Physics
Wood, John – School Science Review, 2020
This article looks at how the nature of truth in science is not absolute and in accepting the idea that certain 'laws' are sufficiently true we can unlock the rigidity of discipline-based scientific thinking to make the possibility of tackling many of the grand challenges facing society a reality. The nature of Open Science is focused on the fact…
Descriptors: Ethics, Science Education, Scientific Research, Scientific Principles
Rios-Gutierrez, Fernando; Alba-Flores, Rocio – American Journal of Engineering Education, 2017
This work describes the educational experiences gained teaching the Senior Design I & II courses, a senior level, two-semester sequence in the Electrical Engineering (EE) program at Georgia Southern University (GSU). In particular, the authors present their experiences in using robotics as the main area to develop the capstone senior design,…
Descriptors: Robotics, Design, Educational Experience, Engineering Education
Caccavale, Frank – Technology and Engineering Teacher, 2016
Any parent, teacher, or coach who works with students today will admit there is a lot of competition for a student's time and attention. After school dismisses, video games, homework, sports, extracurricular activities, and more occupy students' time. It is equally as challenging to compete for their attention during the school day. New electives…
Descriptors: STEM Education, Technology Education, Engineering Education, Learner Engagement
Sababha, Belal H.; Alqudah, Yazan A.; Abualbasal, Abdelraheem; AlQaralleh, Esam A. – EURASIA Journal of Mathematics, Science & Technology Education, 2016
Exposing engineering students during their education to real-world problems and giving them the chance to apply what they learn in the classroom is a vital element of engineering education. The Embedded Systems course at Princess Sumaya University for Technology (PSUT) is one of the main courses that bridge the gap between theoretical electrical…
Descriptors: Active Learning, Student Projects, Engineering Education, Foreign Countries
Pickett, Steve; Bianchi, Lynne – Primary Science, 2018
A conversation between the Director of the University of Manchester's Science & Engineering Education Research and Innovation Hub and the Education Director of England's Halle Orchestra explores the relationship unfolding between science and music. The interview focuses on synergies between music and science and how the two subjects can…
Descriptors: Interdisciplinary Approach, Teaching Methods, Science Education, Music Education
Grubbs, Michael – Technology and Engineering Teacher, 2013
As science, technology, engineering and mathematics (STEM) education demands greater integration across all subject areas, technology teachers can showcase many of the cross-curricular projects already occurring inside their classrooms that intrigue students and build their STEM skills. Robotics, just one of those projects, has become an excellent…
Descriptors: Engineering, Robotics, Technology Education, Middle School Students
Silva, E.; Almeida, J.; Martins, A.; Baptista, J. P.; Campos Neves, B. – IEEE Transactions on Education, 2013
Robotics research in Portugal is increasing every year, but few students embrace it as one of their first choices for study. Until recently, job offers for engineers were plentiful, and those looking for a degree in science and technology would avoid areas considered to be demanding, like robotics. At the undergraduate level, robotics programs are…
Descriptors: Foreign Countries, Robotics, Engineering Education, Masters Programs
Suescun-Florez, Eduardo; Iskander, Magued; Kapila, Vikram; Cain, Ryan – European Journal of Engineering Education, 2013
This paper reports on the results of several geotechnical engineering-related science activities conducted with elementary-school students. Activities presented include soil permeability, contact stress, soil stratigraphy, shallow and deep foundations, and erosion in rivers. The permeability activity employed the LEGO NXT platform for data…
Descriptors: Science Education, Engineering Education, Science Activities, Elementary School Science
Busch, Carsten; Claßnitz, Sabine; Selmanagic,, André; Steinicke, Martin – Electronic Journal of e-Learning, 2015
In 2010 1.1 million pupils took private lessons in Germany, with 25% of all German children by the age of 17 having attended paid private lessons at some point in their school career (Klemm & Klemm, 2010). The high demand for support for learning curricular content led us to consider an integrated solution that speeds up both the design of…
Descriptors: Foreign Countries, Educational Games, Educational Technology, Telecommunications
Worker, Steven M.; Smith, Martin H. – Afterschool Matters, 2014
A wide variety of out-of-school time (OST) programs across the U.S. offer science education opportunities that cover many scientific disciplines and use diverse pedagogical practices (National Research Council [NRC], 2009). However, to improve youth's scientific literacy, OST educators need to "have the disposition and repertoire of practices…
Descriptors: After School Programs, Science Education, Science Process Skills, Skill Development
Gura, Mark – Learning & Leading with Technology, 2012
Lego robotics is engaging, hands-on, and encompasses every one of the NETS for Students. It also inspires a love of science, technology, engineering, and mathematics (STEM) and provides the experience students need to use digital age skills in the real world. In this article, the author discusses how schools get involved with Lego Robotics and…
Descriptors: Student Participation, Robotics, Educational Technology, Learning Motivation
Caron, Darrell – Tech Directions, 2010
This article features Advanced Competitive Science (ACS), a two-year course introduced by a science teacher, Joe Pouliot, in 2004 at Trinity High School in Manchester, New Hampshire. More than a traditional STEM (science, technology, engineering, and math) course, ACS harnesses the excitement of robotics competitions to promote student…
Descriptors: Majors (Students), Student Projects, Physics, Active Learning
Johnson, Richard T.; Londt, Susan E. – Tech Directions, 2010
Competitive robotics as an interactive experience can increase the level of student participation in technology education, inspire students to consider careers in technical fields, and enhance the visibility of technology education programs. Implemented correctly, a competitive robotics program can provide a stimulating learning environment for…
Descriptors: Student Participation, Robotics, Technology Education, Program Implementation