This is an evaluation study of a new installation of interpretive signage and eight interactives in the Jungle Trails exhibition area of the Cincinnati Zoo and Botanical Garden. The summative evaluation is framed by the overall evaluation question: Does the Jungle Trails area facilitate learning through family interactions? To address this question, four broad sub-questions were determined as indicators of success of the project: 1. Do families engage with the interactives? 2. Do families perceive a difference in the way they interact in Jungle Trails? 3. Does the ‘family approach’ to signage
This is an evaluation study of a new installation of seven interactives in the Jungle Trails exhibition area of the Cincinnati Zoo & Botanical Garden. The formative evaluation is framed by the overall evaluation question: Does the Jungle Trails area facilitate learning through family interactions? To address this question, three broad sub-questions will guide the study: (1) With what interactives did family groups choose to engage and why did they choose to engage? (2) In what ways do participants engage with the interactives and why? (3) What might enhance the interpretations in ways that
Research shows that the main motivation of people who come to zoos is to have quality time with their families. At the Cincinnati Zoo, we have placed a strategic focus on becoming more visitor-focused, with a commitment to better understanding their needs in a free-choice learning environment. This includes tailoring interpretive exhibits to engage families, our primary audience. Made possible with funding from a Museums for America grant from the Institute of Museum and Library Services, we underwent a two-year process of research, development and design, and evaluation to re-interpret the award-winning Jungle Trails exhibit with a focus on active family engagement. In Jungle Trails, guests journey along a path that winds through nearly two acres of jungle-type landscape, featuring African and Asian primates, including Sumatran orangutans, gibbons, and bonobos. The exhibit appeals to visitors' emotions and motivations through an innate connection we all have with our closest animal relatives. As they learn how primates survive in the jungle, new interpretive signage and family interactives encourage guests to wonder what it would be like if their family lived in the forest. Interactives present group challenges that our non-human primate relatives face every day. Together with their troop, guests use sticks to push a stone through a maze, test their memories to find fruit in a matching game, bang out a troop rhythm on a buttress root, and compete to see who is best at tying shoes without using their thumbs. They also try out more physical skills such as swinging across bars like a gibbon and balancing like a lemur on a mini-ropes course. Colorful and playful signage introduces guests to the animals from the first-person perspective of the animal and includes questions to prompt discussion of how the animal's life compares to their own. Interactive iPad kiosks at the orangutan, gibbon and bonobo exhibits allow them to engage deeper. Guests may choose to watch videos on taking care of the animals, read about the individual animals' personalities, learn how they can help save the species or build a super primate of their own. By the time families reach the end of the trail, they have participated in activities together that have brought them closer to their primate relatives, human and non-human. Evaluation found that families engage with the interactives as intended. When asked how they would describe Jungle Trails to a friend, the word most commonly used by guests was "fun", followed by those that indicate it was "interactive" and "educational". Once overlooked and often missed by guests, Jungle Trails is now a destination exhibit as summed up by a regular Zoo guest who noted: "I got bored with Jungle Trails. Now looking forward to coming again!" Jungle Trails received an Excellence in Exhibition Special Distinction, Exemplary Model of Creating Experiences for Social Engagement, from the American Association of Museums in 2014.
In the Communities of Learning for Urban Environments and Science (CLUES) project, the four museums of the Philadelphia-Camden Informal Science Education Collaborative worked to build informal science education (ISE) capacity in historically underserved communities. The program offered comprehensive professional development (PD) to Apprentices from 8-11 community-based organizations (CBO), enabling them to develop and deliver hands-on family science workshops. Apprentices, in turn, trained Presenters from the CBOs to assist in delivering the workshops. Families attended CLUES events both at the museums and in their own communities. The events focused on environmental topics that are especially relevant to urban communities, including broad topics such as climate change and the energy cycle to more specific topics such as animals and habitats in urban neighborhoods.
This project entails the creation of a coordinated colony of robotic bees, RoboBees. Research topics are split between the body, brain, and colony. Each of these research areas is drawn together by the challenges of recreating various functionalities of natural bees. One such example is pollination: Bees coordinate to interact with complex natural systems by using a diversity of sensors, a hierarchy of task delegation, unique communication, and an effective flapping-wing propulsion system. Pollination and other agricultural tasks will serve as challenge thrusts throughout the life of this project. Such tasks require expertise across a broad spectrum of scientific topics. The research team includes experts in biology, computer science, electrical and mechanical engineering, and materials science, assembled to address fundamental challenges in developing RoboBees. An integral part of this program is the development of a museum exhibit, in partnership with the Museum of Science, Boston, which will explore the life of a bee and the technologies required to create RoboBees.
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TEAM MEMBERS:
Robert WoodRadhika NagpalJ. Gregory MorrisettGu-Yeon WeiJoseph Ayers
This design case explores the affordances of gigapixel image technology for science communication and learning in museum settings through the iterative development of an explorable image viewer to engage visitors in an archaeological exhibit. We reflect on the series of user studies, prototype iterations, and design decisions taken to optimize navigation, annotation and exploration in this zoomable user interface. We highlight a set of design precedents, interaction frameworks, and content structuring approaches, while detailing the development of a media rich digital annotation strategy to
The National Science Foundation (NSF) awarded funding to the Oregon Museum of Science and Industry (OMSI) and Portland State University (PSU) in Portland, Oregon to support a “Connecting Researchers and Public Audiences” (CRPA) project titled ResearchLink: Spotlight on Solar Technologies. The primary goals of CRPA projects are to communicate to the public about specific NSF research projects. This ResearchLink project promoted public awareness of two NSF-funded projects led by Dr. Carl Wamser at PSU, Integrating Green Roofs and Photovoltaic Arrays for Energy Management and Optimization of
President Obama announced in April 2013 that the Corporation for National and Community Service (CNCS) would launch a STEM AmeriCorps initiative to build student interest in STEM. A RFA is currently being prepared to be released in the late fall of 2013. This project will engage in quick response research to identify an evaluation and research agenda that can begin to inform the program launch. Thus, the timeframe for informing the initial stages of STEM AmeriCorps is relatively short, and the creation of an evaluation and research agenda is very timely. The products from the RAPID proposal are: (1) a review of the evaluation and research literature on the use of volunteers and/or mentors to build students' interest in STEM; (2) to convene a workshop to identify evaluation and research priorities to guide the initiative; and (3) a summary evaluation agenda that identifies promising directions along with the strength of evidence around key issues.
Research in experimental and developmental psychology, cognitive science, and neuroscience, suggests that tool fluency depends on the merging of perceptual and motor aspects of its use, an achievement we call perceptuomotor integration. We investigate the development of perceptuomotor integration and its role in mathematical thinking and learning. Just as expertise in playing a piano relies on the interanimation of finger movements and perceived sounds, we argue that mathematical expertise involves the systematic interpenetration of perceptual and motor aspects of playing mathematical
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Ricardo NemirovskyMolly KeltonBohdan Rhodehamel
This research follows on a previous study that investigated how digitally augmented devices and knowledge building could enhance learning in a science museum. In this study, we were interested in understanding which combination of scaffolds could be used in conjunction with the unique characteristics of informal participation to increase conceptual and cognitive outcomes. Three hundred seven students from nine middle schools participated in the study. Six scaffolds were used in various combinations. The first was the digital augmentation. The next five were adaptations of knowledge-building
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TEAM MEMBERS:
Susan YoonKaren ElinichJoyce WangJaqueline SchooneveldEmma Anderson
For the purpose of clarity and consistency, the term e-learning is used throughout the paper to refer to technology-enhanced learning and information technology (IT) in teaching and learning. IT depicts computing and other IT resources. Research into e-learning has changed in focus and breadth over the last four decades as a consequence of changing technologies, and changes in educational policies and practices. Although increasing numbers of young people have access to a wide range of IT technologies during their leisure activities, little is known about this impact on their learning. Much of
In this article, we discuss the importance of recognizing students' technology-enhanced informal learning experiences and develop pedagogies to connect students' formal and informal learning experiences, in order to meet the demands of the knowledge society. The Mobile- Blended Collaborative Learning model is proposed as a framework to bridge the gap between formal and informal learning and blend them together to form a portable, flexible, collaborative and creative learning environment. Using this model, three categories of mobile application tools, namely tools for collaboration, tools for