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Rodriguez, Shelly; Allen, Kelli; Harron, Jason; Qadri, Syeda Ayesha – Science Teacher, 2019
Inquiry-based teaching aims to increase student engagement through the development of the hands-on, minds-on skills, such as critical thinking, collaboration, and communication, needed for the 21st century (The Partnership for 21st Century Skills 2015). This approach respects the complexities of the learning process, values the knowledge and…
Descriptors: Learner Engagement, Teaching Methods, Inquiry, Active Learning
Soltani, Asghar – Research in Science Education, 2020
Classroom environment, family, and peers are important factors in influencing students' science learning. The primary aim of this study was to examine the effects of three environmental factors related to science learning (motivating science class, family models, and peer models) on students' approaches to learning science (deep approach and…
Descriptors: Science Education, Science Instruction, Learning Motivation, Secondary School Science
Yoon, Susan A.; Goh, Sao-Ee; Yang, Zhitong – Complicity: An International Journal of Complexity and Education, 2019
Recent research on what students know about complex systems shows that they typically have challenges in understanding particular system ideas such as nonlinearity, complex causality, and decentralized control. Yet this research has yet to adopt a systematic approach to learning about complex systems in an ordered way in line with the Next…
Descriptors: Item Response Theory, Models, Middle School Students, High School Students
The Effect of TPS and PBL Learning Models to the Analytical Ability of Students in Biology Classroom
Ramdiah, Siti; Mayasari, Ria; Husamah; Fauzi, Ahmad – Asia-Pacific Forum on Science Learning and Teaching, 2018
Analytical thinking is the competency needed by students in order to compete and achieve success in the professional field for the 21st Century. Research that aims to examine the most optimal learning model in empowering students' analytical thinking needs to be done since many students have low ordered thinking skills. Through this…
Descriptors: Foreign Countries, Thinking Skills, Critical Thinking, Problem Solving
Abdusselam, Mustafa Serkan; Kilis, Selcan; Sahin Çakir, Çigdem; Abdusselam, Zennure – Science Activities: Classroom Projects and Curriculum Ideas, 2018
As a fundamental strategy for all science curriculum, inquiry is of prime importance. In order to facilitate inquiry during science education in middle school, 5E learning model was applied in this study. Following 5E learning model during a lesson, students can engage in a topic after being served to mitigate cognitive disequilibrium or familiar…
Descriptors: Science Education, Secondary School Science, Middle School Students, Learning Processes
Chen, Fu; Zhang, Shanshan; Guo, Yanfang; Xin, Tao – Research in Science Education, 2017
We used the Rule Space Model, a cognitive diagnostic model, to measure the learning progression for thermochemistry for senior high school students. We extracted five attributes and proposed their hierarchical relationships to model the construct of thermochemistry at four levels using a hypothesized learning progression. For this study, we…
Descriptors: Chemistry, High School Students, Secondary School Science, Correlation
Soylu, Firat; Holbert, Nathan; Brady, Corey; Wilensky, Uri – Journal of Interactive Learning Research, 2017
In this paper we present a learning design approach that leverages perspective-taking to help students learn about complex systems. We define perspective-taking as projecting one's identity onto external entities (both animate and inanimate) in an effort to predict and anticipate events based on ecological cues, to automatically sense the…
Descriptors: Perspective Taking, Instructional Design, Learning Processes, Systems Approach
Fortus, David; Shwartz, Yael; Rosenfeld, Sherman – Research in Science Education, 2016
Modeling is a core scientific practice. This study probed the meta-modeling knowledge (MMK) of high school students who study science but had not had any explicit prior exposure to modeling as part of their formal schooling. Our goals were to (A) evaluate the degree to which MMK is dependent on content knowledge and (B) assess whether the upper…
Descriptors: Foreign Countries, High School Students, Secondary School Science, Science Education
Duncan, Ravit Golan; Choi, Jinnie; Castro-Faix, Moraima; Cavera, Veronica L. – Science & Education, 2017
Learning progressions (LPs) are hypothetical models of how learning in a domain develops over time with appropriate instruction. In the domain of genetics, there are two independently developed alternative LPs. The main difference between the two progressions hinges on their assumptions regarding the accessibility of classical (Mendelian) versus…
Descriptors: Genetics, Learning Processes, Sequential Learning, Sequential Approach
Blikstein, Paulo; Fuhrmann, Tamar; Salehi, Shima – Journal of Science Education and Technology, 2016
In this paper, we investigate an approach to supporting students' learning in science through a combination of physical experimentation and virtual modeling. We present a study that utilizes a scientific inquiry framework, which we call "bifocal modeling," to link student-designed experiments and computer models in real time. In this…
Descriptors: High School Students, Secondary School Science, Science Education, Models
Wilkerson-Jerde, Michelle H.; Gravel, Brian E.; Macrander, Christopher A. – Journal of Science Education and Technology, 2015
Modeling and using technology are two practices of particular interest to K-12 science educators. These practices are inextricably linked among professionals, who engage in modeling activity with and across a variety of representational technologies. In this paper, we explore the practices of five sixth-grade girls as they generated models of…
Descriptors: Middle School Students, Secondary School Science, Grade 6, Computer Simulation
Ardasheva, Yuliya; Norton-Meier, Lori; Hand, Brian – Studies in Science Education, 2015
In this review, we explore the notion of teaching science to English language learners (ELLs) as a balancing act between simultaneously focusing on language and content development, on the one hand, and between structuring instruction and focusing on student learning processes, on the other hand. This exploration is conducted through the lens of a…
Descriptors: Science Instruction, English Language Learners, Teaching Methods, Heuristics
Scherr, Rachel E.; Robertson, Amy D. – Physical Review Special Topics - Physics Education Research, 2015
We observe teachers in professional development courses about energy constructing mechanistic accounts of energy transformations. We analyze a case in which teachers investigating adiabatic compression develop a model of the transformation of kinetic energy to thermal energy. Among their ideas is the idea that thermal energy is generated as a…
Descriptors: Science Instruction, Science Teachers, Faculty Development, Energy
Melo, Mário; Miranda, Guilhermina Lobato – Journal of Information Technology Education: Research, 2015
This study was designed to investigate the effects of two instructional approaches (4C-ID versus conventional) on learners' knowledge-acquisition and learning transfer of the electrical circuits content in Physics. Participants were 129 9th graders from a secondary school in Lisbon, M = 14.3 years, SD = 0.54. The participants were divided in two…
Descriptors: Equipment, Teaching Methods, Physics, Science Instruction
Scott, Phil; Mortimer, Eduardo; Ametller, Jaume – Studies in Science Education, 2011
This paper provides an introduction to the concept of pedagogical link-making in the context of teaching and learning scientific conceptual knowledge. Pedagogical link-making is concerned with the ways in which teachers and students make connections between ideas in the ongoing meaning-making interactions of classroom teaching and learning. First…
Descriptors: Concept Formation, Secondary School Science, Literature, Science Instruction