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Nanette M. Wachter; Evan H. Kreth; Ronald P. D'Amelia – Journal of Chemical Education, 2024
Keto-enol tautomerization is paramount to understanding the mechanisms involved in many organic reactions and biochemical transformations. Isomerization of an enol to a carbonyl compound is typically introduced during the discussion of the acid-catalyzed electrophilic addition of water to alkynes. The tautomerization of carbonyl compounds to enol…
Descriptors: Science Instruction, Chemistry, Scientific Concepts, Concept Formation
Prabuddha Bhattacharya; Amit Basak – Journal of Chemical Education, 2024
Chirality continues to intrigue scientists because of its implications in various scientific areas, including the long-unsolved question of its development and link with the origin of life. Chirality plays a significant role in medicine with the advent of chiral drugs and the consequent importance of asymmetric synthesis. For many undergraduate…
Descriptors: Science Instruction, Scientific Concepts, Concept Formation, Undergraduate Students
An Ontological Perspective on Mechanical Energy Conservation Problem-Solving in High School Students
Hyojoon Kim; Sangwoo Ha – Research in Science Education, 2025
This study explores the ontological perspective in analyzing students' problem-solving related to mechanical energy conservation. The research involves 18 high school students whose explanations were qualitatively analyzed using an extended ontological framework. Initially, students predominantly employed matter-based predicates and…
Descriptors: Problem Solving, Energy Conservation, High School Students, Thinking Skills
Ayesha Farheen; Nia Martin; Scott E. Lewis – Chemistry Education Research and Practice, 2024
Education in organic chemistry is highly reliant on molecular representations. Students abstract information from representations to make sense of submicroscopic interactions. This study investigates relationships between differing representations: bond-line structures, ball-and-stick, or electrostatic potential maps (EPMs), and predicting partial…
Descriptors: Science Instruction, Organic Chemistry, Scientific Concepts, Concept Formation
Fletcher, Kurtis A.; Lallier, Nicole M.; Masman, Jack M. – Physics Teacher, 2023
Inspired by a commercially produced scattering experiment that was popular beginning in the 1960s, we have developed a Nerf-projectile-based educational activity to demonstrate the basics of particle scattering experiments.
Descriptors: Science Experiments, Science Instruction, Physics, Motion
Kamali Sripathi; Aidan Hoskinson – CBE - Life Sciences Education, 2024
Genetic variation is historically challenging for undergraduate students to master, potentially due to its grounding in both evolution and genetics. Traditionally, student expertise in genetic variation has been evaluated using Key Concepts. However, Cognitive Construals may add to a more nuanced picture of students' developing expertise. Here, we…
Descriptors: Genetics, Undergraduate Students, Science Instruction, Evolution
Maria Michela Salvatore; Francesco Salvatore – Journal of Chemical Education, 2023
Biochemistry students at the introductory level easily comprehend the importance of energy-yielding oxidation and reduction biochemical processes, but nevertheless, they fight with words "oxidation" and "reduction" (and with the corresponding adjectives, "oxidized" and "reduced") applied in biochemistry…
Descriptors: Biochemistry, Science Instruction, Scientific Concepts, Concept Formation
Marina Martínez-Carmona; G. Enrique Ayuso Fernández; Manuel Fernández-Díaz; Francisco Serrano-García; Antonia Plaza Griñán – Biochemistry and Molecular Biology Education, 2025
Knowledge about genetics is essential to build a society capable of participating in socioscientific and ethical debates. However, this subject remains difficult for students, making it necessary to develop new educational strategies, such as gamification. Thus, two main objectives are established in this work: (a) to design and evaluate…
Descriptors: Genetics, Science Instruction, Gamification, Game Based Learning
Vitthal T. Borkar – Journal of Chemical Education, 2023
The simple demonstration presented, herein, involves the combustion of acetylene liberated from the rapid hydrolysis of 0.50 g of calcium carbide. The unsaturated hydrocarbon formed burns with a yellow sooty flame in air. This acetylene-air flame being visually attractive is often misused by those attempting to showcase their illusory magical…
Descriptors: Science Instruction, Demonstrations (Educational), Chemistry, Scientific Concepts
Tufan Inaltekin; Tolga Saka – Journal of Baltic Science Education, 2025
In science, one of the most crucial representations for constructing meaning about physical events is graphs. The first graph students encounter in science class is the constant velocity motion graph. Therefore, examining students' understanding of structuring and interpreting these graphs for the relationship between distance, time, and velocity…
Descriptors: Science Instruction, Graphs, Motion, Scientific Concepts
Ibrahim Al-Odat – Journal of Microbiology & Biology Education, 2024
This article aims to simplify and facilitate the process of practical teaching of enzyme kinetics by utilizing minimal teaching laboratory requirements. Simultaneously, it ensures that students comprehend the enzyme kinetics experiment effectively. The focus is on teaching students how to estimate the maximum velocity (Vmax) and Michaelis constant…
Descriptors: Undergraduate Students, Biochemistry, Science Instruction, Kinetics
Maricic, Mirjana; Cvjeticanin, Stanko; Adamov, Jasna; Ninkovic, Stanislava Olic; Andic, Branko – Research in Science Education, 2023
This study aimed to examine whether withholding answers coupled with physical manipulation of material strengthened by the self-explanation effect (SEE) contribute to the development of a deeper conceptual understanding and retention of learning about motion content in a hands-on (HO) learning environment. The correlation between students'…
Descriptors: Science Instruction, Direct Instruction, Hands on Science, Concept Formation
Dewi Ayu Kencana Ungu; Mihye Won; David F. Treagust; Mauro Mocerino; Henry Matovu; Chin-Chung Tsai; Roy Tasker – Journal of Chemical Education, 2023
Magnetic molecular models help students explore molecular structures and interactions. In this study, we investigated how pairs of students used magnetic models to explore hydrogen bonding and the 6-fold symmetry of snowflakes. Fourteen first-year students enrolled in a chemistry unit participated in pairs. Students' interactions with the magnetic…
Descriptors: College Freshmen, Science Instruction, Molecular Structure, Chemistry
Annisafira Nanda Rosa; Wolly Candramila; Eko Sri Wahyuni – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2025
Textbooks are essential learning resources for both teachers and students, but they often contain misconceptions that can affect students' understanding of key concepts, particularly in biology. Misconceptions can arise from inaccurate or incomplete information, and they may lead to incorrect conceptual understanding. The clarity and accuracy of…
Descriptors: Misconceptions, Biology, Science Instruction, Textbooks
Lisa Giachini; Isabelle Cabot – Journal of Education and Learning, 2025
This study examines the effects of the pedagogical use of context-rich problems on motivation and learning, as compared to traditional problems, in mechanical physics courses at the college level. The results indicate that the treatment has appreciable outcomes on conceptual learning gain, on the perception of task value and on a perceived sense…
Descriptors: Mechanics (Physics), Science Instruction, Student Motivation, Problem Solving