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Shakhnoza Kayumova; Akira Harper; Rachel Moniz-Stronach – Journal of Research in Science Teaching, 2025
Multilingual youth, from nondominant communities, are often denied critical opportunities for engagement in robust sensemaking due to deficit-based perspectives and linguistic hierarchies. To advance equity, it is important to recognize all youth as epistemic agents and facilitate opportunities to take on intellectual positions. Drawing on…
Descriptors: Monolingualism, Science Instruction, Multilingualism, Equal Education
Khoza, Hlologelo Climant – Journal of Pedagogical Research, 2023
Teachers' responses to student contributions in science classroom influence the resulting classroom interaction. To establish a heightened interaction, teachers need to use specific discursive moves. Using the notion of noticing as a lens, in this qualitative case study, I report on how the notion of noticing and responding with a suitable…
Descriptors: Science Instruction, Teacher Student Relationship, Preservice Teacher Education, Case Studies
Sara E. D. Wilmes; Christina Siry – Research in Science & Technological Education, 2024
Background: Children's interactions are inherently multimodal. Accordingly, when children engage in science in classroom communities, their interactions are grounded in material and embodied aspects of interactions with teachers and their peers. Purpose: This study explores the nature of children's science interactions in a classroom community…
Descriptors: Science Instruction, Scientific Research, Interaction Process Analysis, Peer Relationship
Knain, Erik; Fredlund, Tobias; Furberg, Anniken – Research in Science Education, 2021
The meaning-making practices of science are multimodal and include representational forms such as spoken and written language, diagrams, graphs, equations, and images. Science learning proceeds through an ever-increasing grasp of such resources. This study aims at providing insight into how a combination of Interaction Analysis (IA) and social…
Descriptors: Video Technology, Freehand Drawing, Science Instruction, Teaching Methods
Saleh, Asmalina; Phillips, Tanner M.; Hmelo-Silver, Cindy E.; Glazewski, Krista D.; Mott, Bradford W.; Lester, James C. – British Journal of Educational Technology, 2022
This exploratory paper highlights how problem-based learning (PBL) provided the pedagogical framework used to design and interpret learning analytics from "Crystal Island: EcoJourneys," a collaborative game-based learning environment centred on supporting science inquiry. In "Crystal Island: EcoJourneys," students work in teams…
Descriptors: Cooperative Learning, Learning Analytics, Pretests Posttests, Problem Based Learning
Hsu, Pei-Ling; Roth, Wolff-Michael – Cultural Studies of Science Education, 2014
Learning science interpreted in existing theoretical frameworks often means that students are assimilated, accommodated or enculturated from the entity of the vernacular world to the entity of the scientific world. However, there are some unsolved questions as to how students can best learn purely a new language or new knowledge of science. The…
Descriptors: Persuasive Discourse, Discourse Analysis, Science Instruction, Teaching Methods
Wiig, Camilla; Silseth, Kenneth; Erstad, Ola – Language and Education, 2018
This article explores how opportunities and limitations in creating intercontextualtiy between everyday and scientific ideas emerge in teacher-student interactions, with a particular focus on the teacher's role. The article draws on data from an empirical, longitudinal, study in a lower secondary school in Norway to analyze student-teacher…
Descriptors: Teacher Student Relationship, Secondary School Students, Secondary School Teachers, Classroom Communication
MacQuarrie, Sarah; Howe, Christine; Boyle, James – Cambridge Journal of Education, 2012
Studies of primary education within the UK have shown that small groups can feature within classrooms; however, equivalent research within secondary education remains scarce. Research has established effective group work approaches, yet secondary teachers may encounter difficulties employing approaches tied to parameters embedded within primary…
Descriptors: Teaching Methods, Foreign Countries, Observation, Classroom Environment
Altman, Harold – Classroom Interaction Newsletter, 1970
Major differences found were that inner-city teachers talked more about procedural activities, while advantaged teachers talked more about cognitive activities, and that advantaged students had twice as much student-initiated talk as disadvantaged. (RT)
Descriptors: Advantaged, Classroom Observation Techniques, Disadvantaged, Elementary School Science
Tisher, R. P. – Classroom Interaction Newsletter, 1971
Descriptors: Academic Achievement, Cognitive Processes, Educational Experiments, Interaction Process Analysis
Krange, Ingeborg; Ludvigsen, Sten – International Journal of Computer-Supported Collaborative Learning, 2008
This article discusses the relationship between procedural and conceptual problem solving in a computer-supported collaborative learning (CSCL) environment designed within the field of science education. The contribution of this article, and our understanding of this phenomenon, is anchored in our socio-cultural interpretation, and that implies…
Descriptors: Interaction Process Analysis, Cooperative Learning, Problem Solving, Interaction
Gallagher, James J. – 1966
As a result of the Biological Sciences Curriculum Study (BSCS), instructional content and style were studied in six teachers teaching the concept of photosynthesis. The same BSCS curriculum program was used by all six teachers; all six had some previous BSCS training. The students in the six classes had been selected on the basis of high ability…
Descriptors: Biological Sciences, Biology, Concept Teaching, Curriculum
Turcotte, Sandrine; Laferrière, Thérèse – Canadian Journal of Learning and Technology, 2004
This research paper describes the use of computer mediated conferencing (CMC) to support the teaching of biology to undergraduates. The use of this pedagogical innovation was a first-time experience for both the instructor and his students. The objectives of this project were to increase students' active participation, to facilitate collaborative…
Descriptors: Biology, Science Instruction, Problem Solving, Cooperative Learning