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Antonio García-Carmona – Science & Education, 2025
Scientific thinking and critical thinking are two intellectual processes that are considered keys in the basic and comprehensive education of citizens. For this reason, their development is also contemplated as among the main objectives of science education. However, in the literature about the two types of thinking in the context of science…
Descriptors: Thinking Skills, Critical Thinking, Science Education, Scientific Concepts
Valeria Edelsztein – International Journal of Science Education, 2024
This article outlines the results from an investigation on elementary school students designed to find out whether the coronavirus pandemic had an impact on their conceptualisation of microorganisms. We compared 9- to 11-year-old children's drawings and answers to questionnaires conducted before the pandemic (during 2017 and 2018, N = 137) with…
Descriptors: COVID-19, Pandemics, Change, Beliefs
Canan Nakiboglu; Sri Rahayu; Nuri Nakiboglu; David F. Treagust – Chemistry Education Research and Practice, 2024
This study focuses on examining senior high-school students' conceptual understanding and difficulties concerning electrochemistry and comparing patterns of thinking across Turkish and Indonesian contexts. The Electrochemistry Concept Questionnaire (ECQ) was applied to 516 Indonesian and 516 Turkish high school students right after the teaching of…
Descriptors: High School Seniors, Student Evaluation, Chemistry, Scientific Concepts
Taskin, Tugba; Karadag, Mustafa – Physics Education, 2022
The weight, one of the key concepts of physics education, still continues to be discussed among physics educators. Today, there are two main definitions as the 'gravitational' and 'operational', but there are differences even between them. It is important to know the different approaches found in textbooks in eliminating misconceptions and…
Descriptors: Physics, Scientific Concepts, Definitions, Science Education
Thompson, Andrew R.; Giffin, Bruce F. – Anatomical Sciences Education, 2021
Gross anatomy is considered by many the backbone of medical education. While learning anatomy has a reputation of requiring mainly rote memorization, modern day anatomy education often involves instruction and assessment at cognitive levels that foster higher-order thinking. In many instances, these higher-order anatomical concepts are taught to…
Descriptors: Anatomy, Undergraduate Students, Medical Students, Thinking Skills
Chung Man Lee; Eric Meyers; Marina Milner-Bolotin – Journal of College Science Teaching, 2024
Movies have long been used for teaching in undergraduate science courses. However, embedding movie references (EMR) in science videos is a new trend. This study explored how EMR in YouTube science videos might affect the nature of comments and the process of learning science. Using constructivist grounded theory, we compared comments on two…
Descriptors: Science Education, Video Technology, Web Sites, Computer Mediated Communication
Ted M. Clark; Ellie Anderson; Nicole M. Dickson-Karn; Comelia Soltanirad; Nicolas Tafini – Journal of Chemical Education, 2023
Student performance on open-response calculations involving acid and base solutions before and after instruction in general chemistry and analytical chemistry courses was compared with the output from the artificial intelligence chatbot ChatGPT. Applying a theoretical model of expertise for problem solving that includes problem conceptualization,…
Descriptors: Academic Achievement, College Students, College Science, Chemistry
Carter, Kelli Patrice – ProQuest LLC, 2019
There has been a call from the national community of biologists and biology educators to increase biological literacy of undergraduate students, including understanding and application of core concepts. The structure and function relationship is a core concept identified by the wider biology community and by physiology faculty. Understanding of…
Descriptors: Concept Formation, Comprehension, Scientific Concepts, Formative Evaluation
Barniol, Pablo; Zavala, Genaro – Physical Review Special Topics - Physics Education Research, 2014
In this article we compare students' understanding of vector concepts in problems with no physical context, and with three mechanics contexts: force, velocity, and work. Based on our "Test of Understanding of Vectors," a multiple-choice test presented elsewhere, we designed two isomorphic shorter versions of 12 items each: a test with no…
Descriptors: Physics, Scientific Concepts, Comparative Analysis, Multiple Choice Tests
Clark, Douglas B.; Menekse, Muhsin; Ozdemir, Gokhan; D'Angelo, Cynthis M.; Price Schleigh, Sharon – Science Education, 2014
Substantial variation has been observed across an international series of studies examining the consistency of students' explanations of force and the most common meanings of force apparent in those explanations. On the surface, the variations among studies might be attributed to differences at the national level, but the studies also demonstrate…
Descriptors: Foreign Countries, Physics, Scientific Concepts, Comparative Analysis
Al-Balushi, Sulaiman
M.; Coll, Richard
Kevin – International Journal of Science Education, 2013
The current study compared different learners' static and dynamic mental images of unseen scientific species and processes in relation to their spatial ability. Learners were classified into verbal, visual and schematic. Dynamic images were classified into: appearing/disappearing, linear-movement, and rotation. Two types of scientific entities and…
Descriptors: Cognitive Style, Visualization, Spatial Ability, Grade 9
Osborne, Jonathan F.; Patterson, Alexis – Science Education, 2011
In this paper, we argue that there is an emergent confusion in the literature in the use of the terms "argument" and "explanation." Drawing on a range of publications, we point to instances where these terms are either used inappropriately or conflated. We argue that the distinction between these two constructs is, however, important as a lack of…
Descriptors: Scientific Concepts, Epistemology, Concept Formation, Role
Ahmad, N. J.; Lah, Y. Che – Online Submission, 2012
The efficacy of a teaching sequence designed for a specific content of learning of electrochemistry is described in this paper. The design of the teaching draws upon theoretical insights into perspectives on learning and empirical studies to improve the teaching of this topic. A case study involving two classes, the experimental and baseline…
Descriptors: Chemistry, Science Instruction, Instructional Effectiveness, Case Studies
Voutsina, Lambrini; Ravanis, Konstantinos – Themes in Science and Technology Education, 2011
This study documents the mental representations of magnetism constructed by students aged 15-17 and attempts to investigate whether these display the characteristics of models with an inner cohesiveness and constancy; whether they share common features with typical historical models of the Sciences; and whether they evolve through conventional…
Descriptors: Physics, Science History, Magnets, Scientific Concepts
Broughton, Suzanne H.; Sinatra, Gale M.; Reynolds, Ralph E. – Journal of Educational Research, 2010
Students often hold misconceptions that conflict with scientific explanations. Research has shown that refutation texts are effective for facilitating conceptual change in these cases (Guzzetti, Snyder, Glass, & Gamas, 1993). The process through which refutation texts have their effect is not clear. The authors replicated and extended previous…
Descriptors: Science Education, Scientific Concepts, Misconceptions, Concept Formation
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