This resource presents a list of categories of “imaginative ways of thinking” as well as word clouds illustrating the huge range of ways imagination is described in literature at the intersections of imagination and STEM. This resource reflects results from a comprehensive review of 137 pieces of literature addressing the intersections of imagination and STEM.
This project focuses on environmental health literacy and will explore the extent to which diverse rural and urban youth in an out-of-school STEM enrichment program exhibit gains in environmental health literacy while engaged in learning and teaching others about community resilience in the face of changing climates. Science centers and museums provide unique opportunities for youth to learn about resilience, because they bring community members together to examine the ways that current science influences local decisions. In this project, teams of participating youth will progress through four learning modules that explore the impacts of changing climates on local communities, the local vulnerabilities and risks associated with those changes, possible mitigation and adaptation strategies, and building capacities for communities to become climate resilient. After completion of these modules, participating youth will conduct a resilience-focused action project. Participants will be encouraged to engage peers, families, friends, and other community stakeholders in the design and implementation of their projects, and they will gain experience in accessing local climate and weather data, and in sharing their findings through relevant web portals. Participants will also use various sensors and web-based tools to collect their own data.
This study is guided by three research questions: 1) To what extent do youth develop knowledge, skills, and self- efficacy for developing community resilience (taken together, environmental health literacy in the context of resilience) through participation in museum-led, resilience-focused programming? 2) What program features and settings foster these science learning outcomes? And 3) How does environmental health literacy differ among rural and urban youth, and what do any differences imply for project replication? Over a two- year period, the project will proceed in six stages: a) Materials Development during the first year, b) Recruitment and selection of youth participants, c) Summer institute (six days), d) Workshops and field experiences during the school year following the summer institute, e) Locally relevant action projects, and f) End- of-program summit (one day). In pursuing answers to the research questions, a variety of data sources will be used, including transcripts from youth focus groups and educator interviews, brief researcher reflections of each focus group and interview, and a survey of resilience- related knowledge. Quantitative data sources will include a demographic survey and responses to a self-efficacy instrument for adolescents. The project will directly engage 32 youth, together with one parent or guardian per youth. The study will explore the experiences of rural and urban youth of high school age engaged in interactive, parallel programming to enable the project team to compare and contrast changes in environmental health literacy between rural and urban participants. It is anticipated that this research will advance knowledge of how engagement of diverse youth in informal learning environments influences understanding of resilience and development of environmental health literacy, and it will provide insights into the role of partnerships between research universities and informal science centers in focusing on community resilience.
The Springfield Science Museum will increase participation in informal science learning by making its educational programs and learning spaces more accessible and inclusive. Museum staff will undergo Disability Inclusion and Universal Design training to redesign and enhance a core multi-use learning space and principle STEM program that can remove physical, cognitive, and social barriers to learning. External evaluators will measure access needs and learning outcomes before and after project upgrades in order to track progress and develop a scalable model of inclusive practice for all the museum’s science programming. The result will be an improved educational experience for visitors of all ages, abilities, and backgrounds.
This by the project external evaluation partner presents findings from the first phase of the Co-Created Public Engagement with Science project (CC-PES). The CC-PES project has sought to bring together informal science education institutions, civic partners, and community partners to create forums that address socio-scientific issues that are important to audience being served. The project is designed to lead these collaborative teams through three key steps of public engagement with science: agenda setting (identifying the topic of interest and designing a forum to address it), decision
The Discovery Museums will develop and implement a continuous improvement process to improve the impact of its STEM programming by strengthening staff skills in using evaluation data. The project will begin with a series of training sessions for learning programs staff based on feedback from youth regarding the quality of the museum's program delivery and an assessment of staff competencies in positive youth development. Participating staff will benefit from a deeper understanding of data and the ability to build ongoing evaluation and positive youth development practices into their program presentations in a way that supports Social-Emotional Learning outcomes. The project will potentially result in a process and set of tools to quantify the impact of STEM programming that can be shared with other informal learning organizations.
The Science Museum of Virginia will launch a three-year initiative that empowers participants to effect change in their neighborhoods using citizen science as a tool. The museum will lead a team of residents, business owners, government officials, nonprofits, and health system partners in assessing air quality concerns at the neighborhood level and implementing evidence-based solutions. The museum will also introduce a new platform and interactive software system to display air quality data from this project as well as other visualizations reflecting citizen science data captured in other initiatives. An external evaluator will conduct front-end and formative evaluation to address challenges as they occur and assist the museum in disseminating learnings from the project to the field. The project is designed to build community consensus on strategies necessary to build resilience to climate change while strengthening the museum’s position as a catalyst for science-based decision-making.
Sciencenter will use a co-development process to strengthen rural engagement with hands-on and inquiry-based STEM for families and children. The museum will initiate the project in partnership with Moravia Central School District and Groton Public Library. The project team will also collaborate with advisors who have expertise in reaching rural audiences. Project activities will increase the museum's understanding of rural communities' needs around STEM. The museum will work with additional rural partners to develop activities and programs that meet identified needs. An external evaluator will track project progress and measure results. This evaluator will also train the museum's staff on data collection and recording methods. Data analysis throughout the project will support changes in programs and activities as needed.
This project aims to formally define what a sense of belonging means in the science & natural history museum context as a way to measure inclusivity efforts. We think that most of the experiences that make up a museum visit have a relatively neutral effect on visitor sense of belonging. However, visitors may experience moments that make them feel distinctly positive or negative, and these moments that matter may influence a visitor’s STEM engagement, interest, and/or identity.
This poster was presented at the 2021 NSF AISL Awardee Meeting.
From 2019 to 2021, Knology undertook a project called Addressing Societal Challenges through STEM, which investigated how informal learning institutions are advancing the use of STEM knowledge and scientific reasoning to enable individuals, families, and communities to understand what they can do, and apply their learning to solving critical societal challenges.
The literature reviewed (237 studies and articles) documented an emerging infrastructure to support the capacity of ISL institutions to address social issues. This infrastructure includes a body of empirical and peer-reviewed
NSF generously funded the Science Museum of Minnesota's exploration of whether or not the "theatrical gaming" technique could improve visitors' understanding of complex topics requiring conceptual shifts--topics like evolution. COVID disrupted our formal evaluation plans, but this report offers finding and guidance/best practices for other informal education institutions interested in developing this type of experience. Individual sections discuss our particular, three-phased project, theatrical gaming as a technique, storytelling, gaming, technology, and evaluation.
The Lineage project was a collaboration between Twin Cities Public Television and the Smithsonian’s National Museum of Natural History. The project included creation of a feature-length video program, a Virtual Reality game, and a set of hands-on activities designed for use by multigenerational audiences—all of which were incorporated as part of a series of seven Fossil Festival events at museums and other sites around the United States. This report presents findings from a set of external evaluation studies that examined impacts on families who participated in Fossil Festival events as well
This poster was presented at the 2021 NSF AISL Awardee Meeting.
Many informal learning institutions use STEAM approaches to engage diverse learners. Our project aims to support educators in libraries, museums, and after school programs through a STEAM professional development (PD) series. Our PD approach is centered around a set of core STEAM practices that prioritize STEAM mindset and identity work. Participants engage in exemplar activities and design new experiences for their specific teaching and learning contexts. The series involves in- person sessions, online training, and team