Tag: science education

  • New teachers’ impact on equitable science learning

    New teachers’ impact on equitable science learning

    Key points:

    New elementary teachers who promote equity in science are proving highly effective at engaging students, no matter their background, a new University of Michigan study shows.

    U-M researchers found that new educators are pioneering paths in science education by offering opportunities for scientific conversations, innovative learning strategies and encouraging children to become active participants in scientific exploration. 

    “When teachers are equipped to foster a more equitable and just learning environment in science, it not only enhances children’s understanding of scientific concepts but also empowers them to see themselves as scientists and to use science to address real-world issues that matter in their communities,” said Elizabeth Davis, a professor at U-M’s Marsal Family School of Education.

    “Beginning teachers use a range of effective strategies to work toward more equitable science teaching. They vary in their emphasis on opportunity and access, representation and identification, expanding what counts as science and engaging children as change-makers using science to support a better world. This variation highlights the multiplicity of entry points into this challenging work and shows these teachers’ many strengths.”

    The study, published in the General Proceedings of the 5th Annual Meeting of the International Society for the Learning Sciences 2025, also identified areas for growth: These teachers were less consistently likely to work to broaden what counts as science and to link science to social justice. 

    Davis and co-authors Jessica Bautista and Victoria Pérez Nifoussi said the study helps understand how different approaches to equity in science education can work together, potentially influencing future teacher training for improved K-12 science learning. 

    They emphasized the clear need for teacher educators and curriculum developers to provide more concrete examples and resources to help future teachers navigate complex, justice-oriented approaches to science.

    “All children deserve to experience the joy and wonder of the natural world, yet science is taught far less often than language arts or math in elementary schools,” Davis said. “Furthermore, many students are marginalized in science, including girls, students of color, children with learning differences and queer or gender nonconforming children.”

    Funding challenges impact long-term research

    The study is part of the U-M ASSETS research, a four-year longitudinal project that began in September 2023. Although it was intended to run for four years, the project, funded by the National Science Foundation, was terminated in its 20th month, just shy of two years from its start.

    “The termination of these NSF projects–focused on STEM education, and in particular equity in STEM education–is going to adversely affect science education and science for generations to come,” Davis said. 

    “We are seeking additional funds for this work. Regardless, we will continue to support the teachers who participate in this project and we’ll continue to collect and analyze data to the extent we’re able to do so.”

    The team is now working on characterizing the participants’ first year of teaching to assess how their approaches to equitable and just elementary science teaching align with and differ from their approaches during teacher education.

    This news release originally appeared on U-M’s news site.

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  • Reaching peak engagement in K-12 science education

    Reaching peak engagement in K-12 science education

    Key points:

    More than half of science teachers believe the most important value of science education is how it contributes to students’ curiosity, critical thinking, and creativity, according to a new report from LEGO Education. But are today’s students truly engaging with science education?

    LEGO Education’s State of Classroom Engagement Report: Science Edition surveyed more than 6,000 global teachers, parents, students, and U.S. administrators to gather data that can offer insight to support educators as they strive to engage their students in science learning.

    Science learning builds life skills students will use even if they do not pursue the science in college or as a career. It also increases student engagement and well-being, but here’s the catch: Students have to feel connected to the material in order to build these skills.

    Just over half of global science teachers say their students are engaged in science, which points to a critical need to boost engagement in the subject, according to the report. Interestingly, students say they are more engaged in science than they are in school overall. Only one-third of teachers worldwide indicate that their students are engaged in the classroom. Schools could leverage students’ interest in science to build schoolwide engagement–a key factor tied to student well-being.

    When students aren’t engaged in science, what’s behind that lack of engagement? Often, they’re intimidated before they even learn the material, and they assume the topics are too challenging. Students lose confidence before they even try. Of students who say science is their least-favorite topic, 45 percent say science is too hard and 37 percent say they are bad at science. What’s more, 77 percent of global teachers say they believe students struggle because of complex concepts and curricula, and they’re searching for for impactful resources that support every student’s success.

    “If students think they’re not good at the subject or avoid it, we risk losing an entire generation of innovators and problem solvers,” said Victor Saeijs, president of LEGO Education, in the report.

    How can educators reach students who struggle to engage with science? Hands-on science learning is the key to piquing student curiosity, prompting them to engage with learning material and build confidence as they explore science concepts. Sixty-two percent of science teachers say hands-on activities drive student engagement in science. Seventy-five percent of science teachers who do incorporate hands-on activities believe this approach leads to higher test scores and grades.

    More students need access to hands-on science learning. Only 55 percent of students say they regularly get hands-on experiences–these experiences usually require extra time and resources to plan and execute. Eighty-two percent of science teachers say they need more ways to teach science with play and hands-on methods.

    Having access to hands-on science learning experiences increases students’ confidence, giving them the boost they often need to tackle increasingly tough-to-learn concepts:

    • 73 percent of students with access to hands-on learning opportunities report feeling confident in science
    • Just 52 percent of students who do not have access to hands-on learning report feeling confident in science

    Hands-on experiences in science drive:

    • Learning outcomes: 71 percent of science teachers who incorporate hands-on, playful learning believe the methodology supports higher test scores and grades
    • Engagement for all learners: 84 percent of U.S. teachers and 87 percent of administrators think that hands-on experiences help all types of learners engage with science concepts
    • Love of science: 63 percent of students who love science credit their passion to regular hands-on experiences
    • Confidence: 79 percent of students who have hands-on science experiences are confident in the subject

    Administrators and science teachers are short on time and need hands-on tools and resources to quickly engage students in learning:

    • 59 percent of U.S. administrators and 54 percent of science teachers say they need more tools to engage students in science
    • Nearly one-third of U.S. students do not get hands-on science experiences.
    Laura Ascione
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