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Shaby, Neta; Vedder-Weiss, Dana – Science Education, 2021
Informal science learning environments, such as science museums, afford a variety of interactions, sense-making processes, participation modes, and roles. Accumulating research advances our understanding of the cognitive and affective dimensions of science learning in informal environments, including the development of scientific sense-making and…
Descriptors: Informal Education, Science Education, Science Teaching Centers, Museums
Horstman, Theresa; Tierney, Gavin; Tzou, Carrie – Information and Learning Sciences, 2020
Purpose: This paper aims to focus on two areas of digital badge design that impact learner experience: the value and meaning of badges outside of their original context and badge function and platform functionality that impact learner experience. Design/methodology/approach: This research uses a design-based research approach. For this paper,…
Descriptors: Educational Technology, Student Experience, Recognition (Achievement), Informal Education
Eren-Sisman, Ece N.; Koseoglu, Fitnat – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2019
The magic flask, which is a kind of black box activity, builds an environment for science teachers to discuss nature of science in a formal or/and informal learning environment in the context of the history of science through an explicit-reflective approach. In the activity, the nature of science (NOS) aspects are explicitly addressed and…
Descriptors: High School Students, Secondary School Science, Science Education, Science Activities
Schnittka, Christine G.; Evans, Michael A.; Won, Samantha G. L.; Drape, Tiffany A. – Research in Science Education, 2016
After-school settings provide youth with homework support, social outlets and fun activities, and help build self-confidence. They are safe places for forming relationships with caring adults. More after-school settings are starting to integrate Science, Technology, Engineering, and Mathematics (STEM) topics. What science skills and concepts might…
Descriptors: After School Education, Science Education, Engineering, Design
Zimmerman, Heather Toomey; Bell, Philip – International Journal of Science Education, Part B: Communication and Public Engagement, 2014
This project analyses the prevalence and social construction of science in the everyday activities of multicultural, multilingual children in one urban community. Using cross-setting ethnographic fieldwork (i.e. home, museum, school, community), we developed an ecologically grounded interview protocol and analytical scheme for gauging students'…
Descriptors: Science Education, Ethnography, Family Environment, Museums
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
Tabor-Morris, Anne; Briles, Timothy; Froriep, Kathleen; McGuire, Catherine – Physics Teacher, 2012
The purpose of Georgian Court University's "Discovery Garden" is to create an experience of the physical sciences for students, both science and non-science majors, in a place of serenity: an outdoor garden. Why a garden? Consider that the traditional laboratory experience for students is one of stark rooms ventilated with noisy hoods…
Descriptors: Physics, Gardening, Architecture, Outdoor Education
Ayar, Mehmet C. – Educational Sciences: Theory and Practice, 2015
The purpose of this study is to present students' experiences, interest in engineering, and personal narratives while participating in a robotics summer camp in a metropolitan city in Turkey. In this study, I used qualitative data collection methods such as interviews, field notes, and observations. I used the four principles of Engle and Conant…
Descriptors: Foreign Countries, Engineering Education, Design, Vocational Interests