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resource research Afterschool Programs
Spatial ability is a well-known predictor of success in science, technology, engineering, and mathematics (STEM) fields. The purpose of this study was to investigate and understand the spatial strategies that were used by blind and low-vision (BLV) individuals as they solved problems on the tactile mental cutting test (TMCT), an instrument that was designed to measure the spatial ability of BLV audiences.
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TEAM MEMBERS: Theresa Green Wade Goodridge Daniel Kane Natalie Shaheen
resource research Conferences
This paper describes the development and preliminary validation of a new spatial ability instrument that is designed to be accessible non-visually. Although additional work is needed to finalize the test, preliminary analysis indicates that the test has high reliability and validity.
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TEAM MEMBERS: Sarah Lopez Wade Goodridge Isaac Gougler Daniel Kane Natalie Shaheen
resource research Conferences
This paper seeks to illustrate the first steps in a process of adapting an existing, valid, and reliable spatial ability instrument – the Mental Cutting Test (MCT) – to assess spatial ability among blind and low vision (BLV) populations. To adapt the instrument, the team is developing three-dimensional (3-D) models of existing MCT questions such that a BLV population may perceive the test tactilely with their hands.
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TEAM MEMBERS: Tyler Ashby Wade Goodridge BJ Call Sarah Lopez Natalie Shaheen
resource research Summer and Extended Camps
This paper discusses the development of the Tactile Mental Cutting Test (TMCT), a non-visually accessible spatial ability instrument, developed and used with a blind and low vision (BLV) population. Data was acquired from individuals participating in National Federation of the Blind (NFB) Conventions across the United States as well as NFB sponsored summer engineering programs. The paper reports on a National Science Foundation funded effort to garner initial research findings on the application of the TMCT. It reports on initial findings of the instrument’s validity and reliability, as well
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TEAM MEMBERS: Natalie Shaheen Ann Hunt Daniel Kane Wade Goodridge
resource research Exhibitions
In collaboration with TERC and informal learning organizations across the United States, COSI’s Center for Research and Evaluation (CRE) is part of an NSF-funded project, Research to Understand and Inform the Impacts of Ambient and Designed Sound on Informal STEM Learning.
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TEAM MEMBERS: Gary Timko Joe E. Heimlich Laura Weiss Justin Reeves Meyer Donnelley (Dolly) Hayde
resource research K-12 Programs
We used a youth focused wild berry monitoring program that spanned urban and rural Alaska to test this method across diverse age levels and learning settings.
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TEAM MEMBERS: Katie Spellman Douglas Cost Christine Villano
resource research Citizen Science Programs
Plants with persistent fleshy fruits that last throughout fall and into winter and spring are an important source of nutrition for animals and people in boreal, subarctic, and arctic regions, but little information on fruit retention or loss is available for these regions. We evaluated fruit loss for four species across Alaska using data from our Winterberry community science network.
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TEAM MEMBERS: Christa Mulder Katie Spellman Jasmine Shaw
resource research Informal/Formal Connections
In this study, we examined how two different CCS models, a contributory design and a co-created design, influenced science self-efficacy and science interest among youth CCS participants.
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TEAM MEMBERS: Sarah Clement Katie Spellman Laura Oxtoby Kelly Kealy Karin Bodony Elena Sparrow Christopher Arp
resource research Museum and Science Center Exhibits
An adapted three-dimensional model of place attachment is proposed as a theoretical framework from which place-based citizen science experiences and outcomes might be empirically examined in depth.
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TEAM MEMBERS: Julia Parrish Yurong He Benjamin Haywood
resource research Media and Technology
KQED, a San Francisco based public media organization, is interested in broadening participation and attracting and engaging a younger and more diverse audience, especially millennials, for their science media. The KQED science team is one of the largest reporting teams in the West with a focus on science news and it’s YouTube series, Deep Look. This is a summary of Cracking the Code: Influencing Millennial Science Engagement, a three year media research project supported by NSF. The project brought together KQED science media professionals, academic science media researchers from Texas
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TEAM MEMBERS: Sue Ellen McCann Sevda Eris Asheley Landrum Sarah Mohamad Scott Burg
resource research Media and Technology
We started our three year National Science Foundation Cracking the Code: Influencing Millennial Science Engagement audience research in 2018 with a national survey of millennials’ media consumption habits. This survey was conducted by Jacobs Media Strategies and found, among other things, that millennials were the most science curious generation. This survey provided the groundwork for each of the studies that we have conducted over the past three years as part of our Cracking the Code: Influencing Millennial Science Engagement study. To wrap up our project, we conducted another large
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TEAM MEMBERS: Sue Ellen McCann Sevda Eris Asheley Landrum Sarah Mohamad
resource research Media and Technology
During the course of our ongoing collaboration with KQED, my fellow academic researchers and I have learned that science media professionals are especially interested in improving strategies for headline design, with the goal of increasing audience engagement. Their intuitions about the importance of headlines are supported by research findings. At least when browsing on social media platforms, media consumers often make decisions about whether to engage with stories based only off of the headline. Moreover, headlines influence the way people interpret the story and the impressions they form
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TEAM MEMBERS: Sue Ellen McCann Sevda Eris Asheley Landrum Sarah Mohamad