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What Distinguishes Students’ Engineering Design Performance: Design Behaviors, Design Iterations, and Application of Science Concepts
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Engineering design that requires mathematical analysis, scientific understanding, and technology is critical for preparing students for solving engineering problems. In simulated design environments, students are expected…
Exploring Resources and Reasoning Practices in Socioscientific System Modeling for Justice-Centered Science Education
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Integrating science education with social justice is vital for preparing students to critically address significant societal issues like climate change and pandemics. This study examines the effectiveness of…
Facilitating Student Argumentation Around Socioscientific Issues Through Productive Discourse and Negotiation Toward Consensus
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Controversial topics that arise in science classrooms, especially those of social relevance (e.g., the climate crisis), provide opportunities to help students learn about and discuss contradictory ideas they may encounter…
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In response to the growing emphasis on addressing global socio-scientific issues like climate change and viral pandemics in K-12 education, we designed three socio-scientific units for middle school science. We call this…
“Adapting for a Local Space Can be Tricky”: Designing Units for Teachers to Localize Through Phenomenon Adaptation
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Learning science in the context of local phenomena and problems can be powerful for young people. Yet, designing place-based instructional materials is resource intensive, limiting broad access. This study investigates how…
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A teacher’s working context is an important factor in how they make sense of and enact curriculum. Understanding how external factors (e.g. state and/or district policies, school cultural norms) interplay with teachers’…
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Science and engineering offer ways to maintain the thermal comfort of our homes while minimizing impacts on the environment. This article introduces the Energy-Plus House Design Project, an NGSS-aligned curriculum unit…
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Grand Challenges (GCs) are complex, global, and multifaceted science and societal problems such as climate change, viral pandemics, loss of biodiversity, and quests for new energy sources. In this article, we advance a…
Textbooks as a Resource for Teaching Mathematics Through Problem Posing: Catalyzing Instructional Change
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Research has shown that teaching mathematics through problem posing, or problem-posing based learning (P-PBL), is a student-centered instructional approach that can improve students’ cognitive and affective aspects of…
Co-designing Citizen Science Projects for Elementary Schools in New Hampshire Through Teacher and Community-based Extension Science Volunteer Partnerships
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In the United States, reforms put forth by Next Generation Science Standards have increased the demand for K-12 teacher professional development in science instruction. This study investigates a new professional…
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There is a need for research on effective classroom strategies available for teachers that promote equitable school-family collaborations. Such effective strategies are needed in general but also specifically in the area…
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We describe the development of a visual model to represent the implementation of an ambitious mathematics program, which serves as an example of a complex educational reform.
We describe the development…
Integrating Community Assets, Place-based Learning, and Career Development Through Project-based Learning in Rural Settings
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Our study investigates the first year of a two-year place-based education (PBE) professional development model that focuses on career development in rural middle schools through project-based learning (PBL) units. Rural…
Integrating Math and Science Through Engineering: Illustrative Examples from Curricula Implementation in Middle School Engineering Classrooms
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Engineering has emerged as a promising context for STEM integration in K-12 schools. In the previous decade, the field has seen an increase in curricular resources and pedagogical approaches that invite students to utilize…
Lesson Study with Caregivers as a Resource for a Culturally Sustaining Mathematics Pedagogy for Multilingual Learners
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Research has affirmed the importance of asset-based family partnerships, yet it does not often recognize the complementary roles of multilingual caregivers and teachers to enact culturally sustaining mathematics education…
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The Next Generation Science Standards (NGSS) provide guidance for climate education and scientific epistemology in secondary schools. This includes tools like climate models and observational data to help…
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Situated learning has been widely promoted in educational practice, where students are encouraged to learn by exploring real-world problems in authentic contexts. To expand the opportunities for situated learning,…
A Successful Professional Development Model for Preparing Teachers to use Reform-Based Curriculum Effectively (Sutherland, Krajcik)
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In this session, participants experience a PD model that successfully encourages teachers to adopt a curriculum’s underlying philosophy rather than simply to enact it as sequence of activities…
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Join the panelists from the plenary presentation to continue conversations about common standards in each of the STEM disciplines.
Assessment
Curriculum
Equity…
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In this interactive talk, Wilson will ask each project to make explicit its assumptions about how teachers learn, the forces that matter the most, and how the logic and components of programs reflect those underlying…
Astrobiology in the Secondary Classroom Project: An Interdisciplinary Curriculum Developed by a Collaboration of Scientists and Educators from Three Different Minority Communities
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Curriculum
Science
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High
Leigh Arino de la Rubia
Todd Gary…
Change Thinking for Global Science: Fostering and Evaluating Inquiry Thinking About the Ecological Impacts of Climate Change
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Project Summary
During the lifetimes of our current middle and high school students, it is likely that our planet will undergo more anthropogenic change than it has during all of human history to date. The project is…
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In this session, the presenters discuss findings and experiences regarding technology-embedded assessment and how to support teachers in using it effectively.
Assessment…
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This book compiles and synthesizes existing research on teachers’ use of mathematics curriculum materials and the impact of curriculum materials on teaching and teachers, with a particular emphasis on – but not restricted…
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As part of the Data Games project, we are researching how students record and organize multivariate data. This research is informing the design of new software interfaces for Fathom and TinkerPlots that will allow students…
Situated assessment using virtual environments for science content and inquiry (Ketelhut, Nelson, Schifter)
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In this session, the presenters discuss findings and experiences regarding technology-embedded assessment and how to support teachers in using it effectively.
Curriculum…
SURGE: Connecting students' intuitive understandings about kinematics and Newtonian mechanics into explicit formalized frameworks (Clark)
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In this session, the presenters discuss findings and experiences regarding technology-embedded assessment and how to support teachers in using it effectively.
Assessment…
Understanding the Fidelity of Implementation and Scalability of Mathematics Professional Development Curricula (Moeller, Seago, Borko)
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Three DR-K12 projects investigating the implementation of mathematics professional
development programs by district-based facilitators discuss with participants their approaches to assessing fidelity and preliminary…
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Curriculum
Mathematics
Implementation
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Middle
Karen D. King…
Using Teaching Routines with Classroom Network Technology to Support Improved Classroom Assessment (Penuel, Schank)
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This interactive workshop introduces participants to teaching routines for use with a classroom network technology called Group Scribbles, which supports teachers’ invention of classroom assessment activities in Earth…
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This short text explains the reasoning for the sequencing of the content in Foundation Science: Biology. Specifically, it describes the content sequence for the full year curriculum, for the Genetics Unit, for a Learning…
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This short text provides a description of different ways in which the curriculum can be modified to meet the needs of teachers and students while still retaining the intentions of the developers. Examples of possible…
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In this short text, the power of formative assessment as a teaching tool is detailed, and examples of opportunities for formative assessment within Foundation Science Biology proposed, for Learning Experiences (LE) 2, 3…
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Learn more about the Plan, Teach and Reflect features of the electronic teacher guide.
Curriculum
Science
Technology
Presentation…
STEM Smart Brief: Improving STEM Curriculum and Instruction: Engaging Students and Raising Standards
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“For effective K–12 STEM instruction to become the norm, schools and districts must be transformed.” Read this brief to learn more about curriculum and instructional methods that engage students in the learning process…
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The Concord Consortium has developed 19 activities for teaching and learning algebra that are available online or as an app for iPad or Android tablet computers. These activities—which cover a variety of algebra topics,…
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Exploring students' problem solving within an integrated engineering and literacy activity
Problem scoping—determining the nature and boundaries of a problem—is an essential aspect of the engineering…
Design Practices of Preservice Elementary Teachers in an Integrated Engineering and Literature Experience
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Examining discourse of a team of pre-service teachers within an IEL engineering design challenge
The incorporation of engineering practices and core ideas into the Next Generation Science Standards at…
Examining the Enactment of Web GIS on Students' Geospatial Thinking and Reasoning and Tectonics Understandings
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Geospatially enabled learning technologies may enhance Earth science learning by placing emphasis on geographic space, visualization, scale, representation, and geospatial thinking and reasoning (GTR) skills. This study…
Turning Transfer Inside Out: The Affordances of Virtual Worlds and Mobile Devices in Real World Contexts for Teaching About Causality Across Time and Distance in Ecosystems
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Reasoning about ecosystems includes consideration of causality over temporal and spatial distances; yet learners typically focus on immediate time frames and local contexts. Teaching students to reason…
Exploring Ecosystems from the Inside: How Immersive Multi-user Virtual Environments Can Support Development of Epistemologically Grounded Modeling Practices in Ecosystem Science Instruction
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Recent reform efforts and the next generation science standards emphasize the importance of incorporating authentic scientific practices into science instruction. Modeling can be a particularly challenging practice to…
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This paper presents a set of authoring tool design principles such as leveraging UI workflows, collaboration, and automation.
The scarcity of efficient and user-friendly authoring tools has long been…