The University of Montana spectrUM Discovery Area will implement “Making Across Montana” —a project to engage K–12 students and teachers in rural and tribal communities with making and tinkering. In collaboration with K–12 education partners in the rural Bitterroot Valley and on the Flathead Indian Reservation, the museum will develop a mobile making and tinkering exhibition and education program. The exhibition will be able to travel to K–12 schools statewide. The project team will develop a K–12 teacher professional development workshop, along with accompanying curriculum resources and supplies. The traveling program and related materials will build schools’ capacity to incorporate making and tinkering—and informal STEM experiences more broadly—into their teaching.
DuPage Children's Museum will enhance visitor engagement by incorporating current research on infant and toddler development to redesign two exhibits and develop an educational program for low-income caregivers. The museum will partner with two community-based organizations, Teen Parent Connection and Family Focus DuPage, to collaborate in the project and refer clients to participate in the educational programs. The museum will present twelve onsite sessions that will enable parents and caregivers to nurture an understanding of STEM fundamentals at the museum and at home for their young children. Participants will be given educational videos and take-home kits that correspond with the educational sessions. Project activities will also include training to help museum staff use the exhibits to further a visitor's learning experience. The museum will disseminate project results to other children's museums and early childhood educators and professionals.
Science fairs offer potential opportunities for students to learn first-hand about the practices of science. Over the past six years we have been carrying out voluntary and anonymous surveys with regional and national groups of high school and post high school students to learn about their high school science fair experiences regarding help received, obstacles encountered, and opinions about the value and impact of science fair. Understanding what students think about science fairs will help educators make science fairs more effective learning opportunities. In this paper, we focus on the
The goal of our project is to develop strategies that effectively engage autistic adolescents in informal STEM learning opportunities that promote the self-efficacy and interest in STEM careers that will empower them to seek out career opportunities in STEM fields.
The research aims are to:
1. Identify evidence-based strategies to engage autistic youth in informal STEM learning opportunities that are well matched to their attentional profiles:
Hypothesis 1: Pedagogical strategies vary in how engaging they are for people with diverse attentional profiles; people with more focused
This poster was presented at the 2021 NSF AISL Awardee Meeting.
The project scales up an award-winning coaching model:
Informal educators come together in small groups to share videos of their own interactions with youth
A coach helps them share feedback based on their use of key skills (e.g. how to ask youth purposeful questions).
This poster was presented at the 2021 NSF AISL Awardee Meeting.
What do you think?
How do you connect with youth audiences?
What assumptions do you have about how identity relates to exhibit engagement?
How do factors that shape your identity impact your life? Has this shifted over time?
Two critical challenges in science education are how to engage students in the practices of science and how to develop and sustain interest. The goal of this study was to examine the extent to which high school youth, the majority of whom are members of racial and ethnic groups historically underrepresented in STEM, learn the skills and practices of science and in turn develop interest in conducting scientific research as part of their career pursuits. To accomplish this goal, we applied Hidi and Renninger’s well-tested theoretical framework for studying interest development in the context of
This poster was presented at the 2021 NSF AISL Awardee Meeting.
This project is a retrospective study to explore the long-term impact of STEM programming. The study follows up with participants to ask questions like "Where are they now? What mattered? What difference did it make? and What’s next?"
This poster was presented at the 2021 NSF AISL Awardee Meeting.
Today’s young people have a personal stake in their ability to function with data. Future job prospects might hinge on their ability to participate in the new data economy. But equally, young people are themselves the subjects of data. The datafication of young people’s lives leads to profound questions about childhood, technology, and the equity of access to STEM learning around data, one of which is this: How might young people be empowered in a data-centric world?
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TEAM MEMBERS:
Leanne BowlerMark RosinIrene Lopatovska
This poster was presented at the 2021 NSF AISL Awardee Meeting.
Collaborative robots – cobots – are designed to work with humans, not replace them. What learning affordances are created in educational games when learners program robots to assist them in a game instead of being the game? What game designs work best?
Background: Authentic research experiences and mentoring have positive impacts on fostering STEM engagement among youth from backgrounds underrepresented in STEM. Programs applying an experiential learning approach often incorporate one or both of these elements, however, there is little research on how these factors impact youth’s STEM engagement during the high school to college transition. Purpose: Using a longitudinal design, this study explored the impact of a hands-on field research experience and mentoring as unique factors impacting STEM-related outcomes among underrepresented youth