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Kartini Herlina; Abdurrahman Abdurrahman; Ahmad Naufal Umam; Ayu Nurjanah; Ghani Fadhil Rabbani; Ficha Aulia Indah Pratiwi – Journal of Technology and Science Education, 2025
Nowadays, physics learning in the classroom should no longer only focus on achieving academics. It must prepare students to face challenges in the future. One of the abilities that are important for learners is problem solving, and the problem-solving ability that is becoming increasingly important in today's digital era is computational thinking…
Descriptors: Computation, Thinking Skills, Skill Development, Worksheets
Paul J. Emigh; Corinne A. Manogue – Physical Review Physics Education Research, 2024
Physics experts and students commonly use a variety of representations when working with partial derivatives, including symbols, graphs, and words. One especially powerful representation is the contour graph. In open-ended problem-solving interviews with nine upper-division physics students, we asked students to determine derivatives from contour…
Descriptors: Physics, Scientific Concepts, Concept Formation, Geometric Concepts
Gregory J. Crowther; Victoria L. VanHeel; Sasha D. Gradwell; Casey J. Self; Krista L. Rompolski – Advances in Physiology Education, 2024
The field of anatomy is often seen by nonanatomists as concerned primarily with the tasks of locating, naming, and describing structures; these tasks, in turn, are often assumed to require only lower-order cognitive skills (LOCSs), i.e., the Knowledge or Comprehension levels of Bloom's taxonomy. Many nonanatomists may thus believe that studying…
Descriptors: Human Body, Anatomy, Science Process Skills, Educational Objectives
Daniel A. Martens Yaverbaum – ProQuest LLC, 2024
This study investigated evidence of how students' mental models of fundamental kinematic relations evolved (i.e., developed cognitively over time) as observed during an introductory course in calculus-based classical mechanics. The core of the curriculum is based on a claim known as Galileo's principle of relativity. The course material comprised…
Descriptors: Schemata (Cognition), Motion, Physics, Science Education
Lilya Vany Wisma Widiana; Baskoro Adi Prayitno; Bowo Sugiharto – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2024
Development of scientific explanation abilities in students is an important aspect in science education. However, traditional learning methods such as textbooks and PowerPoint presentations are often less effective in improving skills due to lack of student interactivity and involvement in the learning process. This study aimed to analyze the…
Descriptors: Problem Solving, Science Process Skills, Science Education, Science Instruction
Michael E. Robbins; Gabriel J. DiQuattro; Eric W. Burkholder – Physical Review Physics Education Research, 2025
[This paper is part of the Focused Collection in Investigating and Improving Quantum Education through Research.] One of the greatest weaknesses of physics education research is the paucity of research on graduate education. While there are a growing number of investigations of graduate student degree progress and admissions, there are very few…
Descriptors: Science Education, College Science, Science Instruction, Teaching Methods
Mirjam Ndaimehafo Asilevi; Sirpa Kärkkäinen; Kari Sormunen; Sari Havu-Nuutinen – International Journal of Education in Mathematics, Science and Technology, 2024
This paper describes and compares primary school students' perceptions of science learning skills in a teacher-centered approach (TCA) and in inquiry-based science fieldwork (IBSF). This comparison was prompted by primary school students' perceptions of science learning skills, which has recently gained momentum, and the Namibian primary schools'…
Descriptors: Foreign Countries, Science Education, Elementary School Students, Science Process Skills
Peiyao Tian; Yanhua Fan; Daner Sun; Ye Li – International Journal of Science Education, 2024
In upper-secondary chemistry education, the concept of 'Amount of Substance' occupies a central position within the computation framework. However, comprehending this concept often poses a challenge for students. To address this issue, our study aimed to design and implement a computation skills test to assess the varying levels of students'…
Descriptors: Secondary School Science, Secondary School Students, Student Evaluation, Computation
Sternberg, Robert J.; Ehsan, Hoda; Ghahremani, Mehdi – Roeper Review, 2022
In this article, we present a hierarchical model for teaching scientific thinking to gifted students. This article follows up on an article published 40 years ago in this journal. The problem now, as 40 years ago, is that gifted students often are taught science courses at a more intensive level, but without their truly learning how to think…
Descriptors: Academically Gifted, Gifted Education, Science Education, Knowledge Level
Pingping Zhao; Chun-Yen Chang; Yueyang Shao; Zhi Liu; Hao Zhou; Jian Liu – Journal of Baltic Science Education, 2023
Students' problem-solving strategies and the differences among strategy groups were explored by analyzing the process data collected during student interactions with computer-based science items. Data were gathered from 1516 eleventh-grade students from 4 schools in China. Analyses of the sequences of students' response actions revealed that the…
Descriptors: Foreign Countries, Problem Solving, Learning Strategies, Science Instruction
Levesley, Mark – Primary Science, 2021
The COVID-19 pandemic has been one of the greatest challenges faced for a very long time. However, it has also presented educators with novel opportunities for teaching, none more so than in science. There are the obvious links between COVID-19 and the body of scientific knowledge that curriculum designers think educators should help students to…
Descriptors: COVID-19, Pandemics, Science Education, Science Process Skills
Fadly, Dewiyanti; Rahayu, Sri; Dasna, I. Wayan – International Journal of Instruction, 2022
Scientific/chemical literacy is currently the goal of science education in many countries. Students' chemical literacy can be developed through an innovative learning strategy that explicitly direct student learning to aspects of chemical literacy. This research aimed to examine the effectiveness of SOIE (Strengthening, Orientation, Investigation,…
Descriptors: Learning Strategies, Science and Society, Science Education, Scientific Literacy
Safrizal, Safrizal; Sudarmono; Yulia, Resti – Journal of Turkish Science Education, 2022
This research aimed to describe the development of scientific literacy of students in Indonesia at the Adiwiyata school. The design of this research was qualitative. The data were gathered through observation, an interview and documentation. The subjects were selected through snowball sampling. Data analysis was carried out by referring to the…
Descriptors: Foreign Countries, Scientific Literacy, Science Education, Teaching Methods
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
M. Anwar H. Khan; Timothy G. Harrison; Magdalena Wajrak; Michele Grimshaw; Kathy G. Schofield; Alison J. Trew; Kulvinder Johal; Jeannette Morgan; Karen. L. Shallcross; Joyce D. Sewry; Michael T. Davies-Coleman; Dudley E. Shallcross – Journal of Chemical Education, 2023
All learners have a contribution to make to the development of the Chemical Sciences, be that in novel ways to teach, and their perspectives and contexts, but also in research, both in chemical education and the wider Chemical Sciences. Through four case studies, this paper explores interactions with diverse groups and how this has altered…
Descriptors: Equal Education, Science Education, Chemistry, Diversity