6081 Views (as of 05/2023)
  1. Catherine Haden
  2. https://www.luc.edu/childrensmemory/haden.shtml
  3. Professor
  4. Presenter’s NSFRESOURCECENTERS
  5. Loyola University Chicago
  1. Tsivia Cohen
  2. https://www.linkedin.com/in/tsivia-cohen-56555b15/
  3. AVP Play & Learning Initiatives
  4. Presenter’s NSFRESOURCECENTERS
  5. Chicago Children's Museum
  1. Perla Gamez
  2. https://gamezlab.weebly.com/
  3. Associate Professor
  4. Presenter’s NSFRESOURCECENTERS
  5. Loyola University Chicago
  1. Kim Koin
  2. Director of Art and Tinkering Lab Studios
  3. Presenter’s NSFRESOURCECENTERS
  4. Chicago Children's Museum
  1. Meriem Sadoun
  2. https://www.linkedin.com/in/meriem-sadoun-30431672/
  3. Project Coordinator
  4. Presenter’s NSFRESOURCECENTERS
  5. Northwestern University, Loyola University Chicago
  1. David Uttal
  2. http://groups.psych.northwestern.edu/uttal/
  3. Professor
  4. Presenter’s NSFRESOURCECENTERS
  5. Northwestern University

Collaborative Research: Advancing Early STEM Learning Opportunities Through T...

NSF Awards: 1516541

2019 (see original presentation & discussion)

Grades K-6

The video will showcase our NSF AISL Research in Service to Practice project on creating STEM learning opportunities through tinkering and reflection. One particularly powerful way to engage children in exploration and playful experimentation may be through learning experiences that call for tinkering with real objects and tools to make and remake things. Tinkering is an important target for research and educational practice for at least two reasons: (1) tinkering experiences are frequently social, involving children interacting with educators and family members who can support STEM-relevant tinkering in various ways and (2) tinkering is more open-ended than many other kinds of building experiences (e.g., puzzles, making a model airplane), because it is the participants' own unique questions and objectives that guide the activity. Thus, tinkering provides a highly accessible point of entry into early STEM learning for children and families from a variety of backgrounds, interests and levels of expertise. This Research-in-Service to Practice project is funded by the Advancing Informal STEM Learning (AISL) program which seeks to advance new approaches to, and evidence-based understanding of, the design and development of STEM learning in informal environments.

 

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Discussion from the 2019 STEM for All Video Showcase (10 posts)
  • Icon for: Catherine Haden

    Catherine Haden

    Lead Presenter
    Professor
    May 12, 2019 | 08:16 p.m.

    We appreciate you taking time to watch our video! Our research-practice team will be excited to hear your questions and feedback about these topics, as well as other connections that you make to our work:


    1) How can tinkering design challenges and facilitation strategies support STEM learning opportunities for young children?


    2) How to promote STEM-rich reflection on learning after museum experiences?


    3) How to collect video and audio data in museum settings that, in turn, informs practice?

     
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    Discussion is closed. Upvoting is no longer available

    Meriem Sadoun
  • Icon for: Kenneth Huff

    Kenneth Huff

    Facilitator
    Teacher of Science
    May 13, 2019 | 06:47 a.m.

    Students in the Tinkering Lab seemed engaged in their work. Are there plans to collaborate with other museums in the Chicago area (i.e. Adler Planetarium) to scale up the Tinkering Lab program? Can you please say more about what practices you are seeking to observe as you assess what happens in the Tinkering lab? Are these the same 8 practices of the NGSS? Thank you.

     
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    Discussion is closed. Upvoting is no longer available

    Meriem Sadoun
  • Icon for: Catherine Haden

    Catherine Haden

    Lead Presenter
    Professor
    May 13, 2019 | 05:22 p.m.

    Thanks for the great questions! We are interested in collaborating and scaling our work. There are great opportunities we have been exploring to do so in Chicago (as you point, out Adler also has a flexible workshop space for young learners), as well as other informal learning institutions elsewhere (e.g., libraries; museums serving families in rural and small towns). 

    We observe parent-child interactions during tinkering and score the video records using a system we have developed to capture engineering practices as outlined in NGSS and also described by others (e.g., Quinn & Bell in Design Make Play, Honey and Kanter, Eds.). Essentially, we adapt these to what we see with young children and their families in a tinkering exhibit. Our codes include: asking questions and defining problems, using and/or referring to models and/or creations made by staff and visitors to develop ideas, planning and seeing what materials are available, testing creations or parts of creations, math talk, and engaging in reflection, comparison, and evaluations/describing value of experience. Happy to share out our detailed coding system directly with you if you are interested. 

  • Icon for: Christine Cunningham

    Christine Cunningham

    Facilitator
    preK-12 Science and Engineering Educator
    May 13, 2019 | 01:48 p.m.

    I am interested in the social nature of learning that you mention and support. The tinkering lab seems like a great way to engage groups of peers or families in solving a problem. I’m wondering what sorts of roles you see adults and children take on during these activities, particularly with respect to science and engineering concepts or ideas. Also, the video mentions that the presence of a facilitator who provides tips supports design thinking. Have you seen evidence that the different groups working in the space interact or share knowledge or ideas with one another or do the groups tend to be fairly self-contained?

     
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    Tsivia Cohen
    Meriem Sadoun
  • Icon for: Tsivia Cohen

    Tsivia Cohen

    Co-Presenter
    AVP Play & Learning Initiatives
    May 13, 2019 | 04:38 p.m.

    Thanks for your terrific questions. We've been very interested in the social nature of learning as well. The Tinkering Lab is an example of multi-sided, multi-visitor design, concepts researched by Minda Borun  her seminal Curator articles continue to inspire).   Mostly we see visitors engaging within groups or families, but they also have the example of what other visitors are doing and how they are interacting.  Caregivers tend to promote engineering process by asking questions and encouraging children to test and modify, based on observations.  Facilitators will often model these prompts and questions. Adults seem to have the effect of helping children be more methodical and reflective as they tinker. We've been studying the effect of a number of programmatic changes on interactions within  families.   

  • Icon for: Catherine Haden

    Catherine Haden

    Lead Presenter
    Professor
    May 13, 2019 | 05:28 p.m.

    We do see families referring to others creations. Sometimes it is creations that have been left behind. Other times it is looking at what others are creating as it is happening, or how things work out for others when they conduct a test (e.g., whether something someone else has made rolls down the ramp). 

    Facilitators do offer prompts and questions, and we do see parents incorporate some of these into their own natural way of talking with their children. We see more engineering-related talk during tinkering when families have received an orientation from facilitation staff, but it isn't just echoing what the facilitator said, but more talk about the engineering process overall. Also, families are engaging in more engineering related talk when the design of the exhibit provides explicit opportunities for testing (e.g., a ramp, a wind tunnel) than when these testing features are not available in the space. 

  • Icon for: Sara Lacy

    Sara Lacy

    Facilitator
    Senior Scientist
    May 13, 2019 | 03:29 p.m.

    It looks like you have been doing some video analysis.  Could you describe  how you're doing that?  

     

     
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    Discussion is closed. Upvoting is no longer available

    Meriem Sadoun
  • Icon for: Catherine Haden

    Catherine Haden

    Lead Presenter
    Professor
    May 13, 2019 | 09:01 p.m.

    Yes! We have a terrific set up at Chicago Children's Museum. Families who consent to being part of our research activities are video recorded as they work in the Tinkering Lab. We have several hard wired cameras so we can capture what these families do as they work in the space (e.g., move from a work table to a wind tunnel across the room). The multiple cameras also help us to focus in only on the families we have consented. Families also wear wireless microphones that allow us to hear their conversations during tinkering. 


    We have developed several coding systems that guide what we are looking for in the video records. We review the records, for example, to determine the frequency with which families engaged in testing their design, and whether after the test they redesign/iterate their design, and who performs the test (parent, child). We find from these analyses, for example, that when the child initiates the test, they are more likely to then move to redesign/iterate their creation compared to when the adult initiates testing. Happy to talk more with you about specifics of video analysis!

  • Icon for: Barbara Rogoff

    Barbara Rogoff

    Researcher
    May 14, 2019 | 06:05 p.m.

    Hi there -- Congratulations!  Wondering-- Does the facilitator follow a particular approach?

  • Icon for: Kim Koin

    Kim Koin

    Co-Presenter
    Director of Art and Tinkering Lab Studios
    May 15, 2019 | 11:28 a.m.

    Hi Barbara! Thank you for you question! In Tinkering Lab, we are an open all the time, drop in space within Chicago Children's Museum.

    Visitors always get a quick introduction which includes introducing ourselves, the challenge and the space. At busier points of the year we've also invited visitors to have an orientation to the challenge, for example, "Make Something that Rolls." This orientation has included science content (for something to roll either the wheel or the wheels/axles need to spin), and modeling and practicing close observation and comparison of examples. "Why does this vehicle roll and this one does not?" "Which creation moves more, why?"

    As facilitators we do not follow a script, but we have a set of goals we are striving to reach during our interactions with visitors while being responsive to their needs and interests.

  • Further posting is closed as the event has ended.