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Mariana Hamer; Micaela Hamer; Miguel J. Vago; M. Florencia Leal Denis – Journal of Chemical Education, 2024
In analytical chemistry, discussing different method sand techniques of analysis is essential to promote critical thinking and reasoning. Analytical courses in the chemist, pharmacist, and biochemist curricula represent the opportunity to study concepts such as experimental design, sampling, development, and optimization of protocols, data…
Descriptors: Chemistry, Science Education, Hands on Science, Thinking Skills
Ayça K. Fackler; Daniel K. Capps – International Journal of Science Education, 2024
The literature on scientific modelling practices in science education has provided a fruitful discussion on how learners tend to view models vs. how and what they should think about them. One approach is to teach students that models are abstractions so that they do not view them as a copy of phenomena they represent. Although teaching students…
Descriptors: Science Education, Scientific Concepts, Models, Science Instruction
Rayendra Wahyu Bachtiar; Ralph F. G. Meulenbroeks; Wouter R. Joolingen – Journal of Research in Science Teaching, 2024
Previous studies have documented the promising results from student-constructed representations, including stop-motion animation (SMA), in supporting mechanistic reasoning (MR), which is considered an essential thinking skill in science education. Our current study presents theoretically and empirically how student-constructed SMA contributes to…
Descriptors: Animation, Thinking Skills, Science Education, Skill Development
Anne Morris Byford – ProQuest LLC, 2024
Students entering high school often bring misconceptions about the nature of science and experimentation with them from middle school. Many also bring a belief that they are not a "science kid" and, therefore, cannot be a strong student in Biology. This belief can lead to a lack of self-efficacy and of student agency in the classroom.…
Descriptors: Science Process Skills, Biology, Self Efficacy, High School Students
Bradley J. Morris; Jacob Cason; Katie Asaro; Yin Zhang; Michelle Rivers; Whitney Owens; John Dunlosky – International Journal of Science Education, 2025
Understanding experimental design (e.g. control of variable strategy or CVS) is foundational for scientific reasoning. Previous research has demonstrated that demonstrations with cognitive conflict (e.g. asking students to evaluate and explain different experimental designs) are effective in promoting children's scientific reasoning, however, the…
Descriptors: Science Education, Informal Education, Intervention, Foods Instruction
Marie-Jetta den Otter; Alma Kuijpers; Michiel Dam; Ludo Juurlink; Fred Janssen – Research in Science Education, 2024
Chemical reasoning, and in particular structure--property reasoning, is an important goal of chemistry education. Johnstone's triangle (1982, 1991) is often used to explicate this type of reasoning. This triangle describes the multilevel thought chemical reasoning requires and shows why students find chemistry so difficult. However, this model…
Descriptors: Scientific Literacy, Thinking Skills, Scientists, Chemistry
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
G. Puttick; M. Cassidy; E. Tucker-Raymond; G. M. Troiano; C. Harteveld – Journal of Research in Science Teaching, 2024
Much research attention has been focused on learning through game playing. However, very little has been focused on student learning through game making, especially in science. Moreover, none of the studies on learning through making games has presented an account of how students engage in the process of game design in real time. The present study…
Descriptors: Design, Computer Games, Peer Teaching, Science Education
Meng Wang; Jingwen He; Wei Lei; Qianfu Luo; Wenjun Wu; Wei-Hong Zhu – Journal of Chemical Education, 2024
The essence of university courses lies in their scientific rigor, while the enjoyment of learning serves as a motivation. In this regard, we have developed a comprehensive experiment project by incorporating dithienylethene-based photochromic units into sensitizers for renewable energy, specifically dye-sensitized solar cells, through organic…
Descriptors: Undergraduate Study, Student Research, College Science, Scientific Concepts
Chunmei Huang; Shumei Cao; Xing Liu; Jian Zhou – Journal of Chemical Education, 2023
Crystal materials are an important pillar of advanced technology. Among them, the preparation of large-sized single crystal materials is of great importance for their practical application. Herein, we select the well-known nonlinear optical crystal KH[subscript 2]PO[subscript 4] and impressive deep-blue colored crystal CuSO[subscript…
Descriptors: Chemistry, Undergraduate Students, Physical Sciences, Scientific Concepts
Alisha R. Szozda; Zahra Lalani; Samira Behroozi; Peter G. Mahaffy; Alison B. Flynn – Journal of Chemical Education, 2024
Researchers and educators have been exploring systems thinking (ST) in chemistry education to better equip citizens for 21st century challenges; however, little is known about students' perspectives and experiences. In this study, we investigated students' perspectives of ST and their experiences with ST activities. We designed and implemented a…
Descriptors: Systems Approach, Thinking Skills, Chemistry, Science Education
Muhammad Zulfadhli Kamarudin; Mohd Syafiq Aiman Mat Noor; Romarzila Omar – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2024
The use of digital technologies as teaching and learning materials supports and enhances science learning, encouraging students to develop valuable inquiry skills and knowledge. In response, this paper seeks to explore digital inquiry-based learning as a useful aid for teaching the elementary school science curriculum on plants in Malaysia. There…
Descriptors: Foreign Countries, Plants (Botany), Science Education, Electronic Learning
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
Hayuni Retno Widarti; Deni Ainur Rokhim; Afis Baghiz Syafruddin; Ilviana – Pegem Journal of Education and Instruction, 2024
The aim of this study was to see the effect of using the Instagram media-integrated inquiry learning model in increasing learning motivation and students' critical thinking skills in the matter of reaction rates. This research is a Quasi Experimental Design type. Population consist of class XI MIPA students of SMAN 1 Turen. Sampling used the…
Descriptors: Social Media, Inquiry, Critical Thinking, Thinking Skills
Wiets Botes – European Journal of STEM Education, 2024
Preservice teachers who are specialising in the teaching of the subject natural science at a primary school level, ought to demonstrate the ability to present lessons that provoke a joyful yet meaningful educational experience amongst learners. One such approach that was taken, was when natural science preservice teachers were tasked with…
Descriptors: Pedagogical Content Knowledge, Educational Games, Science Education, Game Based Learning