In this article, Janette Griffin of the University of Technology in Sydney discusses a project designed to investigate the applicability of a School-Museum Learning Framework piloted in an earlier study. Implementation of the Framework involved 5th and 6th grade students bringing their own chosen questions or "areas of inquiry" to the museum and students having considerable control over their learning within parameters provided by the teacher.
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Janette Griffin
resourceprojectWebsites, Mobile Apps, and Online Media
SETAC is funded by the Lifelong Learning Programme of the European Union and emerges out of the need to undertake specific action for the improvement of science education. It regards science education as among the fundamental tools for developing active citizens in the knowledge society. SETAC draws on the cooperation between formal and informal learning institutions, aiming to enhance school science education and active citizenship looking further into the role of science education as a lifelong tool in the knowledge society. On the day of the project’s conclusion, 31 October 2010, after two years of work SETAC contributes the following products and results to the field: 1. “Quality Science Education: Where do we stand? Guidelines for practice from a European experience” This is the concluding manifesto that presents the results of the SETAC work in the form of recommendations for practitioners working in formal and informal science learning institutions; 2. “Teaching and Learning Scientific Literacy and Citizenship in Partnership with Schools and Science Museums” This paper constitutes the theoretical framework of the project and innovative ways of using museums for science education and develop new modes of linking formal and informal learning environments; 3. Tools for teaching and learning in science: misconceptions, authentic questions, motivation. Three specific studies, leading to three specific reports, have been conducted in the context of the project, looking in particular into notions with an important role in science teaching and learning. These are on: Children’s misconceptions; Authentic questions as tool when working in science education; Students’ attitudes and motivation as factors influencing their achievement and participation in science and science-related issues; 4. Activities with schools: SETAC developed a series of prototype education activities which were tested with schools in each country. Among the activities developed between the partners, two have been chosen and are available on-line for practitioners to use and to adapt in their own context. These are: The Energy role game, a role game on Energy invites students to act in different roles, those of the stakeholders of an imaginary community, called to debate and decide upon a certain common problem; MyTest www.museoscienza.org/myTest, which aims to encourage students to engage in researching, reflecting and communicating science-oriented topics; 5. European in-service training course for primary and secondary school teachers across Europe. The training course is designed in such a way as to engage participants in debate and exploration of issues related to science education and active citizenship. The course is open to school teachers, headteachers and teacher trainers from all EU-member and associate countries. Professionals interested can apply for a EU Comenius grant. All the products of the project as well as information about the training course are available at the project website, some of them in more than one languages: www.museoscienza.org/setac
Climate change science is becoming a more frequent and integral part of the middle school curriculum. This project, NASA Data in My Field Trip, proposes to leverage a regional network of Informal Science Institutions (ISIs) committed to climate change education, the Global Climate Change Consortium (GC3). This project will support climate change education in the formal curriculum by creating opportunities for inquiry-based exploration of NASA data and products in class and as part of already established field trip experiences to ISIs. The ISIs of the recently formed GC3 include a broad range of science-based institutions including Carnegie Museum of Natural History (CMNH), Carnegie Science Center (CSC), Phipps Conservatory and Botanical Gardens, National Aviary, and the Pittsburgh Zoo and PPG Aquarium. Partners, Pittsburgh Public Schools and Wilkinsburg School District have respectively 70 and 99% minority populations. NASA Data in My Field Trip will build innovative connections among NASA data and products, ISI resources and experiences, curriculum standards, and educators in formal and informal environments. It has three components: (1) joint professional development for formal and informal educators, (2) in-class pre-field trip data explorations, and (3) the integration of NASA resources into ISI field trip experiences. In the first phase of NASA Data in My Field Trip, CMNH and CSC will pilot NASA resources as central components of middle school climate change field trips as well as in pre-visit experiences. In the second phase, three other GC3 ISIs will tailor the pilot products to their climate change field trips. In both phases, formal and informal educators will participate in joint professional development. Alignment with the school districts' curriculum and formative evaluation is critical at all steps of this project and will guide and inform the implementation of the project through both phases. The success of the project will be measured in terms of (1) educators’ attitudes toward and ability to use NASA resources, (2) the effectiveness of in-class and field trip experiences for students, (3) the development of a community of practice among informal and formal educators, and (4) the adoption of NASA data and products into informal and formal programming outside of the project’s specified reach. Primary strengths of this project are that it brings NASA resources to underserved schools and includes ISIs that have a commitment to climate change education but have not previously connected with NASA or its resources. Techniques developed in this project will be tailored to a diversity of ISIs and can therefore serve as a replicable model for NASA products throughout the ISI field.
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Kerry HandronEllen McCallieJohn RadzilowiczPittsburgh Public SchoolsWilkinsburg School DistrictPittsburgh Zoo and PPG AquariumNational AviaryPhipps Conservatory and Botanical Gardens
This research study involves collaboration between researchers at the University of Maryland, College Park and Bowie State University, an HBCU, to examine a multi-component pre-service model for preparing minority students to teach upper elementary and middle level science. The treatment consists of (1) focused recruitment efforts by the collaborating universities; (2) a pre-service science content course emphasizing inquiry and the mathematics of data management; (3) an internship in an after school program serving minority students; (4) field placements in Prince Georges County minority-serving professional development schools; and (5) mentoring support during the induction year. The research agenda will examine each aspect of the intervention using quantitative and qualitative methods and a small number of case studies.
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James McginnisSpencer BensonScott Dantley
The National Partnerships for Afterschool Science (NPASS) Project was led by The Center for Science Education (CSE) at Education Development Center, Inc. (EDC) in Newton, MA in partnership with the Lawrence Hall of Science (LHS) in Berkeley, CA, with funding from the National Science Foundation (NSF). The NPASS project approach relied on a professional development training and mentorship model to build the capacity of community-based organizations (CBOs) to lead high-quality, hands-on science and engineering activities in their afterschool programming. An overarching project research question
This model science teacher retention and mentoring project will involve more than 300 elementary teachers in "Lesson Study" of inquiry science around school gardens. Drawing on the rich resources of the University of California Botanical Garden and the science educators at the Lawrence Hall of Science this project will develop Teacher Leaders and provide science content professional development to colleagues in four urban school districts. Using the rich and authentic contexts of gardens to engage students and teachers in scientific inquiry opens the opportunity to invite parents to become actively involved with their children in the learning process. As teachers improve their classroom practices of teaching science through inquiry with the help of school-based mentoring they are able to connect the teaching of science to mathematics and literacy and will be able to apply the lesson study approach in their teaching of other innovative projects. Teacher leaders and mentors will have on-going learning opportunities as well as engage participating teachers in lesson study and reflection aimed toward improving science content understanding and the quality of science learning in summer garden learning experiences and having context rich science inquiry experiences throughout the school year.
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Katharine BarrettJennifer White
resourceprojectProfessional Development, Conferences, and Networks
This pilot project establishes and implements a professional development model with teachers of Native American students by creating a culturally relevant science, technology, engineering and mathematics (STEM) teacher in-service model for 30 grade 4-6 teachers from schools from two nations in Utah. The in-service program relies on community advisory panels, current standards and best practices in science, mathematics and technology education, by implementing engineering and technology education activities as a means of teaching science and mathematics. The goal is to improve teacher preparation in science and mathematics for Native Americans by creating culturally relevant curriculum materials with the help of community advisory panels and providing each teacher participant with at least 100 hours of structured professional development. The long-range goal is to develop an in-service model that can be transported to other Native American nations and schools. STEM and education faculty, community teachers, parents and leaders, as well as, tribal elders are to work together to assure the professional development model and materials are developed in a culturally inclusive manner. The evidence-based outcome of this project is that Native American students effectively learn mathematics and science with the longer-term influence being improvement in student achievement.
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Kurt BeckerJames BartaRebecca Monhardt
In October 2009, the Tennessee Aquarium began an ambitious program, Connecting Tennessee to the World Ocean (CTWO), funded by a grant from the National Oceanic and Atmospheric Administration. CTWO consists of several individual projects, all intended to increase the ocean literacy of Aquarium audiences and to promote their adoption of an ocean stewardship ethic. This evaluation report summarizes the extent to which the Aquarium accomplished these goals over the 3-year project period. The five project components and their key associated evaluation findings follow. 1. Classroom-based activities
In spring 2009, the Denver Museum of Nature & Science (Museum) contracted with JVA Consulting, LLC (JVA) to conduct a comprehensive process and outcome evaluation of the Passport to Health (P2H) program. The Museum designed P2H, originally a three-year program funded by the Colorado Health Foundation (the Foundation), to improve health outcomes for fifth-grade students as well as their families and teachers throughout the Denver metro area. Passport to Health has seven components, designed to complement each other and help the Museum achieve its stated program goals. The seven components
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JVA Consulting, LLCDenver Museum of Nature & Science
In 2001, The Franklin Institute Science Museum (TFI) received funding from the National Science Foundation to develop and implement Parent Partners in School Science (PPSS). A year project, PPSS was designed to demonstrate how a science museum can facilitate K-4 children's science learning in and out of school, working with teachers and parents from 3 urban elementary schools in Philadelphia. More specifically, three goals have informed the implementation of PPSS: 1) Promote science teaching at the elementary level; 2) Cultivate home-school collaboration in support of students' science
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Jessica LukeFranklin Institute Science MuseumMartha Washington Academics PlusOlney Elementary SchoolR.B. Pollock Elementary SchoolSusan Foutz
The Peabody Museum of Natural History's program on Biodiversity and Vector-Borne Disease was successful in meeting all of its goals. The following is a summary of the program in terms of these goals. Goal 1: To build teacher capacity for bringing research in biodiversity and disease ecology to grades 5-11 in an engaging, inquiry-based style. A total of 64 teachers from Connecticut and 4 teacher-trainers from California, Texas, and Wisconsin participated in training institutes to learn about vector-borne diseases. All participating teachers successfully implemented most or all of the curriculum
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Minda BorunPeabody Museum of Natural History
Impact of GLC On Teachers Over the four years of the project, GLC worked with 171 teachers and 7schools. The program had a dramatically positive impact on the teachers involved. The GLC staff did an excellent job of establishing relationships with participating teachers, teaching them to use Lesson Study techniques and how to use the school garden as a resource for learning and creativity. As a result, teachers' overall attitudes towards teaching improved. Lessons became more flexible and useful across the curriculum. The teachers involved were seen by GLC staff to have made observable
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Minda BorunUniversity of California Botanical Garden