This report, from the "Tinkering EU: Building Science Capital for All" project, provides a theoretical rationale for understanding the relationship between Tinkering as a pedagogical approach, students’ individual science capital, and inclusive STEM teaching approaches. By exploring the relationship between these three areas, it invites professionals to reflect on the ways in which Tinkering can be used a teaching tool for building science capital.
“Tinkering EU: Building Science Capital for All” aims to develop activities and resources that support a learner-centred culture, improve science education and develop 21st century skills - all of which are fundamental for active citizenship, employability, and social inclusion. To do this, it adopts ‘Tinkering’, an innovative pedagogy developed in the USA, which is used by museums, and has proven able to create a lifelong engagement with science for everyone. Tinkering works particularly well for people who argue that “they are not good at science” or are disaffected from any formal teaching and learning process. It can be a powerful tool to tackle disadvantage. The project integrates Tinkering into the school curriculum to develop the science capital of disadvantaged youth through the use of museums. It addresses students from 8 to 14 years old (primary and junior high schools).
Coordinator: National Museum of Science and Technology Leonardo da Vinci
Partners:
University of Cambridge – UK
NEMO Science Museum – The Netherlands
Science Gallery Dublin – Ireland
CosmoCaixa – Spain
Science Center Network – Austria
NOESIS – Greece
Supported by the National Science Foundation, the Global Soundscapes! Big Data, Big Screens, Open Ears project employs a variety of informal learning experiences to present the physics of sound and the new science of soundscape ecology. The interdisciplinary science of soundscape ecology analyzes sounds over time in different ecosystems around the world. The major components of the Global Soundscapes project are an educator-led interactive giant-screen theater show, group activities, and websites. All components are designed with both sighted and visually impaired students in mind. Multimedia
This is a list of participants who attended the Support Systems for Scientists' Communication and Engagement Workshop IV: Science Engagement Facilitators. This workshop was held on May 2 and 3, 2018 at the Monterey Bay Aquarium in Monterey, CA.
This is a report from Workshop IV, part of the Support Systems for Scientists' Communication and Engagement workshop series. Workshop IV was held May 2-3, 2018 at the Monterey Bay Aquarium in Monterey, CA. In this study, researchers sought to explore and understand the mechanisms, motivations, and outcome metrics utilized by individuals and organizations that facilitate scientists’ communication with the public. To capture the full range of engagement methods, facilitators from a wide variety of organizations were contacted and interviewed. After contacting 30 leaders the realm of science
Background: Some STEM outreach programs connect students to real-world problems and challenge them to work towards solutions. Research shows one-third of children between ages 5-17 in the U.S. are overweight. Socioeconomic status, race, and parental educational attainment all influence this issue as well as living in a rural or urban area. A rural high school STEM outreach program used a social media curriculum focused on healthy lifestyles and measured impact on the health of adolescents from these backgrounds.
Methods: Health screenings and college mentors were provided to 134
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TEAM MEMBERS:
Ann ChesterSara HanksSummer KuhnFloyd JonesTravis WhiteMisty HarrisBethany Hornbeck Sherron McKendallMary McMillionCathy MortonMallory SlusserR. Kyle Saunders
resourceresearchProfessional Development, Conferences, and Networks
This poster was presented at the 2018 Campus Office of Undergraduate Research Initiatives (COURI) Symposium in El Paso, TX. It describes an ethnographic study into the use of storytelling in science teaching.
This poster was presented at the 2018 Campus Office of Undergraduate Research Initiatives (COURI) Symposium in El Paso, TX. It describes challenges and lessons learned regarding the use of cogenerative dialogues (cogens) in the context of a project-based learning environment.
This poster was presented at the 2018 Campus Office of Undergraduate Research Initiatives (COURI) Symposium in El Paso, TX. It describes an ethnographic study to investigate how an exemplary scientist engaged high school students with humor during a project-based learning science internship.
This poster was presented at the 2018 Campus Office of Undergraduate Research Initiatives (COURI) Symposium in El Paso, TX. It discusses the difficulty faced by high school students in generating project ideas, and seeks to identify different activities and methods that instructors use to facilitate the development of project ideas in a project-based learning internship environment.
This poster was presented at the annual meeting of the National Association for Research in Science Teaching (NARST) in Atlanta, GA. It discusses how cogenerative dialogues (cogens) might serve as a tool to dissolve emotional breakdowns in a project-based learning (PBL) science internship.
Data are the workhorses of the scientific endeavor and their use is rapidly evolving (Haendel, Vasilevsky, and Wirz 2012). Ask almost any scientist about their work, and the conversation will involve the data they collect and analyze. The use of data in science is often captured in science classrooms as an ill-defined link between math and science that may not reflect authentic data practices (Tanis Ozcelik and McDonald 2013). Students often find themselves collecting data to confirm obvious conclusions within highly structured labs, and data become a way for students to demonstrate the