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Gargalakos, Michail; Sotiriou, Sofoklis – Science Education International, 2020
Technology enhanced learning applications are used more and more in terms of curriculum in primary and secondary education as it has been shown that they have a positive impact to the learning outcome of youngsters. However, for tertiary education this is not the case, since more traditional methods of teaching are still dominant. Despite this…
Descriptors: Inquiry, Active Learning, Electronics, Science Instruction
Rönkkö, Marja-Leena; Yliverronen, Virpi; Kangas, Kaiju – Design and Technology Education, 2021
The present study explored pre-primary students' investigative activity during a longitudinal, integrative technology education project: the Power Creatures project. Investigative activity refers to the way young children act in a learning context that combines inquiry-based activities with creative hands-on activities, such as designing and…
Descriptors: Preschool Children, Technology Education, Preschool Education, Investigations
Roll, Ido; Butler, Deborah; Yee, Nikki; Welsh, Ashley; Perez, Sarah; Briseno, Adriana; Perkins, Katherine; Bonn, Doug – Instructional Science: An International Journal of the Learning Sciences, 2018
Guiding inquiry learning has been shown to increase knowledge gains. Yet, little is known about the effect of guidance on attitudes and behaviours, its interaction with student attributes, and transfer of impact once guidance is removed. We address these gaps in the context of an interactive Physics simulation on electric circuits…
Descriptors: Inquiry, Active Learning, Discovery Learning, Physics
Kewalramani, Sarika; Palaiologou, Ioanna; Dardanou, Maria – EURASIA Journal of Mathematics, Science and Technology Education, 2020
This paper presents findings from an on-going international study of Early Childhood (EC) teachers' and children's use of Internet of Toys (IoToys) to understand possibilities for developing children's cognitive capacities (e.g., creativity, inquiry, engineering design thinking). The study employed a Design Based Research (DBR) method, where…
Descriptors: Engineering, Design, Robotics, Electronics
Kock, Zeger-Jan; Taconis, Ruurd; Bolhuis, Sanneke; Gravemeijer, Koeno – Research in Science Education, 2013
Many students in secondary schools consider the sciences difficult and unattractive. This applies to physics in particular, a subject in which students attempt to learn and understand numerous theoretical concepts, often without much success. A case in point is the understanding of the concepts current, voltage and resistance in simple electric…
Descriptors: Inquiry, Active Learning, Secondary School Science, Physics
Becker, James P.; Plumb, Carolyn; Revia, Richard A. – IEEE Transactions on Education, 2014
The use of project circuits (a photoplethysmograph circuit and a simple audio amplifier), introduced in a sophomore-level electric circuits course utilizing active learning and inquiry-based methods, is described. The development of the project circuits was initiated to promote enhanced engagement and deeper understanding of course content among…
Descriptors: Electronics, Student Projects, Active Learning, Inquiry
Vreman-de Olde, Cornelise; de Jong, Ton; Gijlers, Hannie – Educational Technology & Society, 2013
This study compares learning from designing instruction in the context of simulation-based inquiry learning with learning from expository teaching. The domain of instruction was the electricity domain of high-pass and
low-pass filters. Participants were students from a technical vocational school. In the experimental condition ("N" =…
Descriptors: Inquiry, Active Learning, Instructional Design, Computer Simulation
Perrin, Michele – Journal of STEM Education: Innovations and Research, 2004
This paper uses inquiry-based learning to introduce primary students to the concepts and terminology found in four introductory engineering courses: Differential Equations, Circuit Analysis, Thermodynamics, and Dynamics. Simple electronic sensors coupled with everyday objects, such as a troll doll, demonstrate and reinforce the physical principles…
Descriptors: Inquiry, Active Learning, Engineering Education, Elementary Education

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