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Sadhana Puntambekar; Dana Gnesdilow; Sinan Yavuz – International Journal of Computer-Supported Collaborative Learning, 2023
We investigated how the level of variance in students' prior knowledge may have influenced their collaborative interactions and science learning in small groups. We examined learning outcomes from 102 groups from seven science teachers' classes and discourse from two contrasting groups: Homogeneous versus heterogeneous. We examined individual and…
Descriptors: Prior Learning, Science Instruction, Cooperative Learning, Interaction
Naparat Nilada; Wisarut Payougkiattikun; Tawan Thongsuk – International Journal on Social and Education Sciences, 2024
This research aims to investigate the scientific creativity of 9th grade students following the implementation of a project-based learning (PjBL) approach. The study involved a sample of 21 students from a high school in a Roi Et province during the first semester of the academic year 2023. Participants were randomly selected using classrooms as…
Descriptors: Creativity, Student Projects, Active Learning, Student Attitudes
Werth, Alexandra; Oliver, Kristin; West, Colin G.; Lewandowski, H. J. – Physical Review Physics Education Research, 2022
[This paper is part of the Focused Collection on Instructional labs: Improving traditions and new directions.] Over the last decade, course-based undergraduate research experiences (CUREs) have been recognized as a way to improve undergraduate science, technology, engineering, and mathematics education by engaging students in authentic research…
Descriptors: Undergraduate Students, Student Research, Teamwork, Science Instruction
Short, Mary E. – Smithsonian Science Education Center, 2021
Students enter classrooms equipped with a rich foundation of skills and knowledge from their everyday experiences. High-quality science education builds on students' wealth of experience in making sense of the world. In science classrooms, "sensemaking" is a collaborative practice that includes students sharing initial ideas with peers…
Descriptors: Teaching Methods, Science Education, Student Characteristics, Cooperative Learning
Chang, Tzyh-Lee; Hsin, Huai-Tzu – Research in Science & Technological Education, 2021
Background: Being able to think independently is a must for students to construct new knowledge in their minds. Self-explaining is a constructive learning strategy that encourages students to think for themselves and to make inferences that go beyond the given information. The Self-explain--Discuss--Re-explain (SDR) strategy adapted from…
Descriptors: Learning Strategies, Instructional Effectiveness, Science Instruction, Science Achievement
Magaji, Adewale – International Journal of Instruction, 2021
This research was informed by a constructivist approach to learning, with a focus on answering the research question: what skills can science teachers promote and encourage among students through designing and implementing problem-based learning in their classrooms? The research was carried out in a co-education secondary school in England and…
Descriptors: Secondary School Science, Secondary School Students, Science Instruction, Problem Solving
Salleh, Muhamad Furkan Mat; Rauf, Rose Amnah Abd. Rauf; Saat, Rohaida Mohd; Ismail, Mohamad Hisyam – Asian Journal of University Education, 2022
This qualitative study sought to explore Malaysian novice chemistry teachers' experiences in teaching mixed-ability students during their teaching practicum, focusing on their instructional strategies for dealing with those learners in the class. The researchers employed purposive sampling to select 12 trainee teachers to be involved in…
Descriptors: Foreign Countries, Chemistry, Science Instruction, Science Teachers
Kulgemeyer, Christoph – International Journal of Science and Mathematics Education, 2018
The "expert blind spot" (EBS) hypothesis implies that even some experts with a high content knowledge might have problems in science communication because they are using the structure of the content rather than their addressee's prerequisites as an orientation. But is that also true for students? Explaining science to peers is a crucial…
Descriptors: Secondary School Students, Grade 10, Communicative Competence (Languages), Knowledge Level
Hsiao, Hsien-Sheng; Chen, Jyun-Chen; Hong, Jon-Chao; Chen, Po-Hsi; Lu, Chow-Chin; Chen, Sherry Y. – EURASIA Journal of Mathematics, Science & Technology Education, 2017
A five-stage prediction-observation-explanation inquiry-based learning (FPOEIL) model was developed to improve students' scientific learning performance. In order to intensify the science learning effect, the repertory grid technology-assisted learning (RGTL) approach and the collaborative learning (CL) approach were utilized. A quasi-experimental…
Descriptors: Active Learning, Inquiry, Science Instruction, Models
Evans, Hedeel Guy; Heyl, Deborah L.; Liggit, Peggy – Journal of Chemical Education, 2016
This biochemistry laboratory course was designed to provide significant learning experiences to expose students to different ways of succeeding as scientists in academia and foster development and improvement of their potential and competency as the next generation of investigators. To meet these goals, the laboratory course employs three…
Descriptors: Biochemistry, Science Instruction, Course Evaluation, College Faculty
Mahanal, Susriyati; Zubaidah, Siti; Bahri, Arsad; Syahadatud Dinnurriya, Maratusy – Asia-Pacific Forum on Science Learning and Teaching, 2016
Previous studies in Malang, Indonesia, showed that there were the failure biology learning caused by not only the low students' prior knowledge, but also biology learning model has not improved the students' critical thinking skills yet, which affected the low of cognitive learning outcomes. The learning model is required to improve students'…
Descriptors: Critical Thinking, Skill Development, Thinking Skills, Biology
Fraknoi, Andrew – Astronomy Education Review, 2011
This essay is addressed to astronomers and astronomy students who will go into a school, college, or other educational setting and want to think more deeply about what happens in the learning process. These are seven key ideas for improving our teaching that those of us working in science education at all levels have found especially useful. These…
Descriptors: Astronomy, Science Instruction, Teacher Effectiveness, Learner Engagement
Koul, Anjni – Asia-Pacific Forum on Science Learning and Teaching, 2014
The National Curriculum Framework-2005 (NCF-2005) recommends that learning of children has to shift away from methods encouraging rote memory. This is possible only if children get an opportunity to explore the surroundings themselves. In this paper the researcher shares her experiences in the use of various innovative approaches in…
Descriptors: Middle School Students, Science Instruction, Instructional Innovation, Instructional Effectiveness
Touchman, Stephanie – ProQuest LLC, 2012
Collaborative learning is a common teaching strategy in classrooms across age groups and content areas. It is important to measure and understand the cognitive process involved during collaboration to improve teaching methods involving interactive activities. This research attempted to answer the question: why do students learn more in…
Descriptors: Cooperative Learning, Biology, Science Instruction, Two Year College Students
Nariman, Nahid; Chrispeels, Janet – Interdisciplinary Journal of Problem-based Learning, 2016
We explore teachers' efforts to implement problem-based learning (PBL) in an elementary school serving predominantly English learners. Teachers had an opportunity to implement the Next Generation Science Standards (NGSS) using PBL in a summer school setting with no test-pressures. To understand the challenges and benefits of PBL implementation, a…
Descriptors: Problem Based Learning, Elementary School Students, Prior Learning, Cooperative Learning
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