Children spend 80% of their waking hours outside of school in the community. Deep inequities exist in access to high quality informal STEM learning opportunities (museums, zoos, safe and beautiful parks). Playful Learning Landscapes (PLL) infuses playful learning opportunities into everyday community spaces where families spend time. This project represents a strength-based model for designing play spaces deeply connected to communities’ cultural assets.
This poster was presented at the 2021 NSF AISL Awardee Meeting.
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TEAM MEMBERS:
Andres BustamanteVanessa BermudezJulie SalazarLeiny GarciaKreshnik BegolliKarlena OchoaJune AhnKathy Hirsh-PasekAnnelise PeschRigoberto RodriguezPaola Padilla
Using a design-based research approach, we studied ways to advance opportunities for children and families to engage in engineering design practices in an informal educational setting. 213 families with 5–11-year-old children were observed as they visited a tinkering exhibit at a children’s museum during one of three iterations of a program posing an engineering design challenge. Children’s narrative reflections about their experience were recorded immediately after tinkering. Across iterations of the program, changes to the exhibit design and facilitation provided by museum staff corresponded
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TEAM MEMBERS:
Maria MarcusDiana AcostaPirko TouguDavid UttalCatherine Haden
The Practitioners and Researchers Investigating Sensorimotor Movement (PRISM) Toolkit provides a suite of observation tools for identifying and categorizing gestures, movement, and speech for interactive museum exhibits (espeically those that involve full-body interactions). The tools can be used live in some settings when appropriate, but also can be used on video recordings of exhibit interactions.
This is the summative evaluation report from the Move2Learn Project, a collaboration between researchers and museum practitioners in the US and UK to study embodied learning in the context of early childhood informal learning. This summative report covers the effectiveness of the collaboration and documents best practices for large interdisicplinary teams.
Nature-based playgrounds—known as playscapes—offer numerous opportunities for young children to learn about nature. In the current study, we focus on teacher talk on playscapes, namely to capture the spontaneous utterances teachers offer when engaging with young children during playscape visits. Two different playscapes were contrasted, both of which featured loose parts, native plants, and running water. The difference in playscape was whether it featured ecosystems: While the rural playscape had a natural forest and a wetland, the urban playscape had a man-made stream and a garden. Ten
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TEAM MEMBERS:
Heidi KloosCatherine MaltbieRhonda BrownVictoria Carr
With funding from NIH SEPA, OMSI is creating a mid-sized travelling exhibition that will promote public understanding of neuroscience research and its relevance to healthy brain development in early childhood.
The purpose of this report is to support the project team by assessing the extent to which the prototype activities, content, and labels tested contributed to visitor engagement, understanding, confidence, and future use of one or more strategies outlined. It was important to the project team that the exhibition be developed in collaboration with the communities for whom it is
The data collection procedure and process is one of the most critical components in a research study that affects the findings. Problems in data collection may directly influence the findings, and consequently, may lead to questionable inferences. Despite the challenges in data collection, this study provides insights for STEM education researchers and practitioners on effective data collection, in order to ensure that the data is useful for answering questions posed by research. Our engineering education research study was a part of a three-year, NSF funded project implemented in the Midwest
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TEAM MEMBERS:
Ibrahim YeterAnastasia Marie RynearsonHoda EhsanAnnwesa DasguptaBarbara FagundesMuhsin MeneskeMonica Cardella
Integrating science, technology, engineering, and mathematics (STEM) subjects in pre-college settings is seen as critical in providing opportunities for children to develop knowledge, skills, and interests in these subjects and the associated critical thinking skills. More recently computational thinking (CT) has been called out as an equally important topic to emphasize among pre-college students. The authors of this paper began an integrated STEM+CT project three years ago to explore integrating these subjects through a science center exhibit and a curriculum for 5-8 year old students. We
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TEAM MEMBERS:
Morgan HynesMonica CardellaTamara MooreSean BrophySenay PurzerKristina TankMuhsin MeneskeIbrahim YeterHoda Ehsan
For the past two decades, researchers and educators have been interested in integrating engineering into K-12 learning experiences. More recently, computational thinking (CT) has gained increased attention in K-12 engineering education. Computational thinking is broader than programming and coding. Some describe computational thinking as crucial to engineering problem solving and critical to engineering habits of mind like systems thinking. However, few studies have explored how computational thinking is exhibited by children, and CT competencies for children have not been consistently defined