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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
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Emily M. Stump; Mark Hughes; Gina Passante; N. G. Holmes – Physical Review Physics Education Research, 2023
[This paper is part of the Focused Collection on Instructional labs: Improving traditions and new directions.] Uncertainty is an important concept in physics laboratory instruction. However, little work has examined how students reason about uncertainty beyond the introductory (intro) level. In this work we aimed to compare intro and beyond-intro…
Descriptors: Student Attitudes, Scientific Attitudes, Physics, Introductory Courses
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Ngu, Bing Hiong; Phan, Huy P. – International Journal of Mathematical Education in Science and Technology, 2022
Capitalizing on cognitive load theory and learning by analogy, we propose two instructional methods to learn a complex linear equation (e.g. two-step equation) by building on prior knowledge of a simpler linear equation (e.g. one-step equation). We will examine the proposal theoretically in this paper. In line with the design principles of…
Descriptors: Short Term Memory, Schemata (Cognition), Prior Learning, Cognitive Ability
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Nitesh Kumar Jha; Plaban Kumar Bhowmik; Kaushal Kumar Bhagat – Educational Technology Research and Development, 2024
A majority of research in Computational Thinking (CT) mainly focuses on teaching coding to school students. However, CT involves more than just coding and includes other skills like algorithmic thinking. The current study developed an Online Inquiry-based Learning Platform for Computational Thinking (CT-ONLINQ) that follows Inquiry-Based Learning…
Descriptors: Thinking Skills, Computer Science Education, Comparative Analysis, Problem Solving
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Ezeamuzie, Ndudi O. – Journal of Educational Computing Research, 2023
Most studies suggest that students develop computational thinking (CT) through learning programming. However, when the target of CT is decoupled from programming, emerging evidence challenges the assertion of CT transferability from programming. In this study, CT was operationalized in everyday problem-solving contexts in a learning experiment (n…
Descriptors: Programming, Computer Science Education, Problem Solving, Thinking Skills
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Geller, Benjamin D.; Rubien, Jack; Hiebert, Sara M.; Crouch, Catherine H. – Physical Review Physics Education Research, 2022
A goal of introductory physics for life sciences (IPLS) curricula is to prepare students to effectively use physical models and quantitative reasoning in biological and medical settings. To assess whether this goal is being met, we conducted a longitudinal study of the impact of IPLS on student work in later biology and chemistry courses. We…
Descriptors: Physics, Biology, Science Instruction, Capstone Experiences
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Liu, Shiyu; Lawrenz, Frances – International Journal of Science Education, 2018
This research aimed to investigate the nature of cognitive processes when college students reason about evidence on global climate change (GCC). Twenty-six undergraduate students participated in this qualitative study, where they were interviewed to evaluate competing arguments on key issues related to GCC and discuss their own perspectives.…
Descriptors: Student Attitudes, Undergraduate Students, Climate, Cognitive Processes
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Ng, Oi-Lam; Shi, Lian; Ting, Fridolin – International Journal of STEM Education, 2020
Background: This paper compares the effects of two classroom-based technology-enhanced teaching interventions, conducted in two schools in sixth (age 11-12) grade. In one school, the intervention involves the use of a class set of 3D Printing Pens, and in another school the use of dynamic geometry environments, for inquiry-based learning of the…
Descriptors: Geometry, Mathematics Instruction, Pretests Posttests, Teaching Methods
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Shilo, Gila; Ragonis, Noa – Journal of Further and Higher Education, 2019
A central issue in the design of curricula for all school levels is the development of the learners' high-order thinking skills and metacognitive skills. Among such required skills is the ability to solve problems. The literature dealing with the development of problem-solving skills is vast and primarily addresses the scientific disciplines, even…
Descriptors: Thinking Skills, Metacognition, Problem Solving, Linguistics
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Mayhew, Matthew J.; Pascarella, Ernest T.; Trolian, Teniell; Selznick, Benjamin – Research in Higher Education, 2015
The purpose of this paper was to examine differences between undergraduate students who had multiple exposures to an assessment of moral reasoning development (DIT-2) and students of the same cohort who had fewer exposures to the same assessment. Controlling for a host of individual covariates, the analysis determined that students who took the…
Descriptors: Undergraduate Students, Moral Values, Moral Development, Scores
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Aminah, Mimih; Kusumah, Yaya Sukjaya; Suryadi, Didi; Sumarmo, Utari – International Journal of Instruction, 2018
This paper reports the findings of a quasi-experiment that aims to investigate the role of metacognitive teaching-learning (MTL) and mathematical prior knowledge (MPK) on students' mathematical logical thinking ability (MLTA) and self-regulated learning (SRL). The subject of the study was 70 tenth-grade students inSumedang, Indonesia. One…
Descriptors: Metacognition, Mathematical Logic, Mathematics Instruction, Teaching Methods
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Ylizarde, Natalie Harr; Kiorpes, Lolita Cariaso – Science Teacher, 2018
Climate change is complex, requiring critical thinking on both local and global scales. Its effects vary dramatically around the world and require new strategies to help students grasp its complexity, scale, and interrelatedness. This article describes a project to help biology students think critically about climate change from a global…
Descriptors: Climate, Change, Environmental Education, Science Instruction
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Richmond, Aaron S.; Bacca, Anastasia M.; Becknell, Jared S.; Coyle, Ryan P. – Teaching of Psychology, 2017
We investigated the effects of using experiential learning and direct instruction to teach metacognitive theory and to determine whether instructional type differentially affected higher vs. lower level learning. We randomly assigned 87 introductory psychology students to either experiential learning or direct instruction conditions. We pretested…
Descriptors: Undergraduate Students, Psychology, Introductory Courses, Metacognition
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Novick, Laura R.; Catley, Kefyn M. – Science Education, 2014
Science is an important domain for investigating students' responses to information that contradicts their prior knowledge. In previous studies of this topic, this information was communicated verbally. The present research used diagrams, specifically trees (cladograms) depicting evolutionary relationships among taxa. Effects of college…
Descriptors: Visual Aids, Evolution, Taxonomy, College Students
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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
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