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Brett Criswell; Kadir Demir; Michelle Zoss – Science Education, 2025
This qualitative case study delved into students' understanding and positioning while they participated in solving an authentic, conceptually-based problem in a high-school chemistry class. Verbal and nonverbal cues, particularly gestures, offered broader awareness of students' engagement in sensemaking during the learning experience. The…
Descriptors: High School Students, Chemistry, Science Instruction, Student Attitudes
E. Michael Nussbaum; Michael S. Van Winkle; Lixian Tian; LeAnn G. Putney; Margarita Huerta; Harsha N. Perera; Ian J. Dove; Alicia N. Herrera; Kristoffer R. Carroll – Science Education, 2024
Critiquing arguments is important for K-12 science students to learn but not emphasized by the predominant claim-evidence-reasoning (CER) argumentation model. Drawing on the work of Yu and Zenker (2020), and Dove and Nussbaum (2018), we developed a tool for supplementing CER with critical questions (CQs) from philosophy that cover most, if not…
Descriptors: Science Instruction, Middle School Students, Elementary School Science, Criticism
Tang, Xiaowei; Shu, Gang; Wei, Bing; Levin, Daniel – Science Education, 2024
Students often learn about measurement uncertainty as an isolated topic, with a focus on generalizable strategies to manage uncertainty in scientific investigation. In this study, we report and analyze a case of emergent learning about measurement and uncertainty, in which students in a Chinese elementary school science class explored and…
Descriptors: Foreign Countries, Elementary School Students, Elementary School Science, Science Process Skills
Hee-Sun Lee; Gey-Hong Gweon; Aubree Webb; Dan Damelin; Chad Dorsey – Science Education, 2024
This study addresses the measurement of high school students' epistemic knowledge associated with scientific experimentation (EKSE) which concerns "how" scientific experimentation generates knowledge and "why" that knowledge is justified. Based on philosophical, educational standards, and literature analyses, an EKSE construct…
Descriptors: Knowledge Level, Science Experiments, High School Students, Thinking Skills
Alyssa S. Freeman; Tina B. Carter; Angela N. Google; Zhigang Jia; Anna S. Grinath – Science Education, 2025
Given the potential impact of introductory science laboratories on postsecondary students' science learning, careful thinking is needed about how to support teaching assistants (TAs) to create opportunities for their students to reason about science. Research suggests that teachers are best positioned to improve their teaching practices when they…
Descriptors: Postsecondary Education, Science Education, Science Instruction, Teaching Assistants
Loucas T. Louca; Zacharias C. Zacharia – Science Education, 2025
This study seeks to enrich our understanding of modeling-based learning (MbL) in kindergarten science education, investigating the influences of different modeling tools on kindergarten child-constructed models and their modeling reasoning. Therefore, this multi-case study aimed at providing in-depth descriptions of how MbL was enacted by 66…
Descriptors: Foreign Countries, Kindergarten, Young Children, Science Education
Watkins, Jessica; Manz, Eve – Science Education, 2022
Science education researchers have highlighted how uncertainty can foster meaningful scientific sense-making, supporting students to re-evaluate their understandings of scientific phenomena and pursue deeper causal accounts. However, facilitating whole-class conversations motivated by uncertainty is complex and challenging, calling for further…
Descriptors: Decision Making, Ambiguity (Context), Science Education, Classroom Communication
Osborne, Jonathan; Pimentel, Daniel – Science Education, 2023
In this paper, we argue that the current science curricula are failing to educate students to be competent outsiders to science. Historically, science education has rested on two premises. The first is that it is possible for students to acquire sufficient scientific knowledge from K-12 education to become intellectually independent. That is that…
Descriptors: Elementary Secondary Education, Science Education, Deception, Science Curriculum
Lesperance, Rosiane; Kuhn, Deanna – Science Education, 2023
The most important understanding science students should acquire is arguably an understanding of science as a way of knowing, one central to science but not specific to it. Students' own engagement in scientific inquiry and argument can support this developing understanding but does not guarantee it. We report the results of urban adolescents'…
Descriptors: Science Education, Inquiry, Persuasive Discourse, Urban Schools
Xiaowei Tang; David Hammer – Science Education, 2024
How anthropomorphic reasoning functions in scientific thinking has been a controversial topic. There is evidence it is problematic as well as evidence it can play productive roles, for scientists and for students. In science education, however, the prevailing view remains that it is an impediment. For this study, we have chosen examples of what we…
Descriptors: Science Instruction, Elementary School Students, Thinking Skills, Story Telling
Tamar Fuhrmann; Leah Rosenbaum; Aditi Wagh; Adelmo Eloy; Jacob Wolf; Paulo Blikstein; Michelle Wilkerson – Science Education, 2025
When learning about scientific phenomena, students are expected to "mechanistically" explain how underlying interactions produce the observable phenomenon and "conceptually" connect the observed phenomenon to canonical scientific knowledge. This paper investigates how the integration of the complementary processes of designing…
Descriptors: Mechanics (Physics), Thinking Skills, Scientific Concepts, Concept Formation
Tabak, Iris; Dubovi, Ilana – Science Education, 2023
Is public engagement with science deliberative and evidence-based? The public is often perceived as underprepared to use data and susceptible to partisan and emotional manipulation. Consequently, educational efforts focus on the ability to identify reliable information. We posit that effective engagement with science goes beyond this and hinges on…
Descriptors: Data Use, Trust (Psychology), Scientific Literacy, Information Literacy
Hand, Brian; Shelley, Mack C.; Laugerman, Marcia; Fostvedt, Luke; Therrien, William – Science Education, 2018
In a cluster-randomized study, we investigate the impact of an argument-based approach to teaching science in elementary school on science learning and critical thinking skills. Forty-eight schools participated in the study, with data on 9,963 students across the 2 years of the intervention. Annual standardized tests assessing science content…
Descriptors: Critical Thinking, Disadvantaged, Elementary School Students, Elementary School Science
Rachmatullah, Arif; Wiebe, Eric N. – Science Education, 2023
Computationally intensive science (CIS)-related disciplines and careers are predicted to be among the cutting-edge fields and high-demand jobs. Such disciplines and careers demand expertise in both traditional scientific knowledge and computer science (CS)-related understanding and skills. Preparing educational systems for developing interest and…
Descriptors: Foreign Countries, Middle School Students, Career Choice, STEM Careers
Levrini, Olivia; Tasquier, Giulia; Barelli, Eleonora; Laherto, Antti; Palmgren, Elina; Branchetti, Laura; Wilson, Caitlin – Science Education, 2021
This article takes its point of departure from the younger generation's problematic relationship with time and the future. A general sense of changeability and directionlessness in society compromises young people's confidence in themselves to make a difference as individuals in important global issues affecting their futures, such as climate…
Descriptors: Learning Modules, Environmental Education, Science Education, Educational Objectives