Despite the many hours students spend studying science, only a few relate to these subjects in such a manner that it becomes a part of their essential worldview and advances their education in a larger sense - one in which they make a connection to the subject matter so that it becomes a source of inspiration and occupies a formative position in their life. Using the hermeneutic/phenomenological sense of lifeworld as our being in the world, we explore questions of identity in the teaching and learning of science. We suggest that by taking the notion of identity in science to include students'
Who We Are: A network of informal educators, climate scientists, learning scientists and local partners across four cities, dedicated to improving local understanding of and engagement with climate change science. Mission: CUSP aims to foster a network of climate-focused organizations to implement targeted, coordinated, and concentrated educational strategies that explore local climate impacts and community-level responses. What We Do: Unite local organizations committed to addressing the impacts of climate change into collaborative network Use latest climate science and learning science research to inform program development Connect urban residents’ personal interests to larger city systems impacted by climate change, and provide residents opportunities to explore city-wide responses Deliver programs that are targeted (aimed at specific audiences), coordinated (presenting consistent and clear information about the science of climate change), and concentrated (delivered many times, through many programs) Test the hypothesis that when people encounter the same science content in multiple settings, from multiple points of view, they are more likely to understand and remember important concepts What We Offer: A Community of Practice for local organizations, including training on best practices of climate communication and education Provide local organizations with current climate science impacting their city, and latest learning science research Opportunities for city residents to explore local impacts of climate change in every day settings, at neighborhood centers, at schools, online, and at city festivals. Opportunities for city residents to engage with local organizations in community-level responses to climate change
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The Franklin InstituteRaluca EllisFrederic BertleySteven SnyderRadley HortonKevin Crowley
The Jackprot is a didactic slot machine simulation that illustrates how mutation rate coupled with natural selection can interact to generate highly specialized proteins. Conceptualized by Guillermo Paz-y-Miño C., Avelina Espinosa, and Chunyan Y. Bai (New England Center for the Public Understanding of Science, Roger Williams University and the University of Massachusetts, Dartmouth), the Jackprot uses simplified slot-machine probability principles to demonstrate how mutation rate coupled with natural selection suffice to explain the origin and evolution of highly specialized proteins. The
Research suggests that parents are effective at scaffolding their children's learning to help them become self-regulated problem solvers. Yet little is known about parents' effectiveness at assisting their children with problems that parents find unfamiliar and, thus, do not have at hand either the solution or strategies that a novice child could profitably implement. In this study, 20 dyads of parents and their preadolescent children spent 45 min solving a scientific reasoning problem that entailed generating and interpreting a series of experimental trials to understand the causal structure
Several instruments have been developed to assess student images of scientists, but most require children to respond in writing. Since not all children can respond appropriately to written instruments. Chambers (1983) developed the Draw-A-Scientist Test (DAST) in which children's drawings are rated according to particular characteristics present or absent in the drawings, allowing researchers to determine the images of scientists children hold. In order to improve the objectivity and interrater reliability of this means of assessment, the authors built upon Chambers' study to develop a
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Kevin FinsonJohn BeaverBonnie Cramond
Informal participation in science is being recognized as an important way of developing science learning both for children and adults. Mobile learning has particular properties that have potential in informal science settings, particularly outside traditional educational settings. Mobile technologies provide new opportunities for learners to engage with science on the move. This paper reviews the impact of participation in informal science settings on some members of the public using the experiences of the iSpot project as a case study. iSpot aims to create and inspire a new generation of
Classroom tasks should develop a spirit of inquiry and a sense of delight in discovery that will become part of the individual's learning style. Yet in the traditional elementary classroom, the use of worksheets, lectures and basal reading tasks to the exclusion of hands-on, participatory opportunities fails to encourage a child's construction of knowledge. By setting up a problem to be solved, demanding interaction, producing effects from direct actions and allowing variations of approach, cognitive development in children is enhanced. Hands-On Children's Museums encourage contextually
This article deals with a pioneering project currently being developed, namely, the Exhibition on Testing and Measurement. This interactive traveling exhibition will be presented in science museums in Israel, the United States, and other countries. It has been conceived as an innovative means of familiarizing the public with educational measurement concepts and scientific principles. The exhibition will initiate and encourage a dialogue regarding the social aspects of testing. Science centers and museums can play a vital role in helping to forge a more authentic relationship between science
In 2012, with funding from the National Science Foundation’s Advancing in Informal STEM Learning (AISL) division, a one-year study was conducted to focus specifically on evaluating participant learning outcomes and impacts from the beached bird data module. COASSTNET: Scaling Up COASSTal Citizen Science (NSF-DRL – 2224734) is an initial exploration of the effectiveness of the COASST beached bird module to sustain outcomes at individual, research and community levels, with a specific focus on the degree to which participants understand various scales of data, from the individual bird
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University of Washington College of the EnvironmentCynthia CharJulia ParrishJulie FriesnerJane Dolliver
Despite the potential of augmented reality (AR) in enabling students to construct new understanding, little is known about how the processes and interactions with the multimedia lead to increased learning. This study seeks to explore the affordances of an AR tool on learning that is focused on the science concept of magnets and magnetic fields. Seventy students in grades 5 through 7 participated in the study in a non- AR or AR condition. Findings showed that students in the AR condition interacted with the magnets significantly longer and demonstrated higher amounts of teamwork. In interviews
The Coalition for Science After School (CSAS) was established in 2004 in response to the growing need for more STEM (science, technology, engineering, and mathematics) learning opportunities in out-of-school time. CSAS sought to build this field by uniting STEM education goals with out-of-school time opportunities and a focus on youth development. Over a decade of work, CSAS Steering Committee members, staff and partners advocated for STEM in out-of-school-time settings, convened leaders, and created resources to support this work. CSAS leadership decided to conclude CSAS operations in 2014, as the STEM in out-of-school time movement had experienced tremendous growth of programming and attention to science-related out-of-school time opportunities on a national level. In its ten-year strategic plan, CSAS took as its vision the full integration of the STEM education and out-of-school time communities to ensure that quality out-of-school time STEM opportunities became prevalent and available to learners nationwide. Key CSAS activities included: (1) Setting and advancing a collective agenda by working with members to identify gaps in the field, organizing others to create solutions that meet the needs, identifying policy needs in the field and supporting advocates to advance them; (2) Developing and linking committed communities by providing opportunities for focused networking and learning through conferences, webinars, and other outreach activities; and (3) Identifying, collecting, capturing, and sharing information and available research and resources in the field. The leadership of the Coalition for Science After School is deeply grateful to the funders, partners, supporters, and constituents that worked together to advance STEM in out-of-school time during the last decade, and that make up today's rich and varied STEM in out-of-school time landscape. We have much to be proud of, but as a movement there is much more work to be done. As this work continues to expand and deepen, it is appropriate for the Coalition for Science After School to step down as the many other organizations that have emerged over the last decade take on leadership for the critical work that remains to be done. A timeline and summary of CSAS activities, products, and accomplishments is available for download on this page. All resources noted in the narrative are also available for download below.