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Irina Braun; Scott E. Lewis; Nicole Graulich – Chemistry Education Research and Practice, 2025
The ability to reason with representations is pivotal for successful learning in Organic Chemistry and is closely linked to representational competence. Given the visual nature of this discipline, this comprises competency in extracting and processing relevant visual information. With regard to the resonance concept, proficiency in identifying…
Descriptors: Undergraduate Students, Organic Chemistry, Science Instruction, Pattern Recognition
Sinkovits, Daniel Wilhelm – Physics Teacher, 2022
The cross diagram is a way to illustrate and plan the solutions for all kinds of constant-acceleration kinematics problems--including projectile motion, multistage, and multiple-object problems. The cross diagram arranges the kinematic variables in a logical way, making the kinematic relationships between them easy to identify. Combined with a…
Descriptors: Science Instruction, Mechanics (Physics), Visual Aids, Motion
Ibrahim, Bashirah; Ding, Lin – International Journal of Science Education, 2023
We investigate students' eye movements when they solve sequential and simultaneous synthesis physics problems. In sequential synthesis problems, multiple events occur chronologically, whereas in simultaneous synthesis problems, multiple events take place concurrently. We captured students' eye fixations on each problem diagram and recorded their…
Descriptors: Physics, Eye Movements, Science Instruction, Visual Aids
Adrienne M. Pesce; Daniel B. King – Journal of Chemical Education, 2023
Novice chemists often struggle with the highly visual nature of some chemistry topics. To make visually demanding concepts, such as isomerism and stereochemistry, more accessible to students, chemistry instructors have long recommended the use of molecular model kits as visual aids. However, studies pertaining to student model usage have shown…
Descriptors: Student Attitudes, Molecular Structure, Science Teachers, Science Instruction
Cardona Zapata, Mónica Eliana; López Ríos, Sonia – Technology, Knowledge and Learning, 2022
Experimental activity in the physics teaching can be considered as a space in which teachers create contexts for students to approach the way scientific knowledge is constructed. In this sense, the strategies for the integration of Information and Communication Technologies (ICT) in the context of science education, has a wide potential to guide…
Descriptors: Physics, Science Instruction, Teaching Methods, Visual Aids
Anna Koumara; Michael Bakaloglou; Hariton M. Polatoglou – World Journal of Education, 2024
Eleven high school students participated in a one-week STEM summer camp focused on designing and building parachutes to deliver fragile objects safely. Using the Engineering Design Process (EDP) as a framework, students explored how canopy size affects performance. They applied physics concepts such as terminal velocity, forces, and acceleration,…
Descriptors: Foreign Countries, High School Students, Summer Science Programs, Physics
Unyapoti, Trai; Arayathanitkul, Kwan; Emarat, Narumon – Physics Teacher, 2020
Collisions are real-world situations from everyday life (such as car crashes, playing billiards, etc.) that can be described and understood by the principle of conservation of momentum. One might expect that learning from simple collisions might help students understand more complicated physical phenomena. However, from our teaching experiences we…
Descriptors: Physics, Scientific Concepts, Visual Aids, Conservation (Concept)
Ibrahim, Bashirah; Ding, Lin – Physical Review Physics Education Research, 2021
This study examines students' visual behaviors when they tackle two types of synthesis problems, sequential and simultaneous problems. Sequential synthesis tasks can be solved by applying pertinent concepts consecutively, whereas simultaneous synthesis tasks require concurrent application of multiple concepts. Twenty-two students from an…
Descriptors: Sequential Approach, Synthesis, Problem Solving, Eye Movements
Thamarasseri, Ismail; Shejeena, K. A. – Journal of Educational Technology, 2022
Education is an important tool which is very useful in everybody's life. A science curriculum should offer students opportunities that relate to life outside the classroom. It should provide students with situations in which they can frame and solve problems of their own making; and it should be supportive of students. Teaching methods and…
Descriptors: Scaffolding (Teaching Technique), Visual Aids, Instructional Effectiveness, Metacognition
VanVeller, Brett – Journal of Chemical Education, 2021
When organic students are asked to design a total synthesis of a molecule, they are often overwhelmed by the multitude of possible transformations. A decision tree is a useful tool to break complex problems up into simpler steps and scaffold the thinking process that many seasoned chemists take for granted. While many comprehensive resources…
Descriptors: Decision Making, Science Instruction, Molecular Structure, Problem Solving
Rau, Martina A.; Zahn, Miranda; Misback, Edward; Herder, Tiffany; Burstyn, Judith – Journal of the Learning Sciences, 2021
Background: A key aspect of STEM learning is the use of visual representations for problem solving. To successfully use visuals, students need to make sense of how they show concepts and to fluently perceive domain-relevant information in them. Adding support for sense making and perceptual fluency to problem-solving activities enhances students'…
Descriptors: Chemistry, College Science, Undergraduate Students, Problem Solving
Rau, Martina A.; Zahn, Miranda; Misback, Edward; Herder, Tiffany; Burstyn, Judith – Grantee Submission, 2021
Background: A key aspect of STEM learning is the use of visual representations for problem solving. To successfully use visuals, students need to make sense of how they show concepts and to fluently perceive domain-relevant information in them. Adding support for sense making and perceptual fluency to problem-solving activities enhances students'…
Descriptors: Chemistry, College Science, Undergraduate Students, Problem Solving
Rodriguez, Jon-Marc G.; Stricker, Avery R.; Becker, Nicole M. – Journal of Chemical Education, 2020
Chemical kinetics is an important topic that is reinforced across the undergraduate chemistry curriculum, but previous research indicates students tend to have difficulty developing a sophisticated understanding of reaction rate. In this qualitative case study, we characterized how two students conceptualized reaction rate in the context of…
Descriptors: Science Instruction, Chemistry, Kinetics, Undergraduate Study
Pendrill, Ann-Marie – Physics Education, 2020
Students often use incoherent strategies in their problem solving involving force and motion, as revealed, e.g. when they are asked to draw force diagrams for amusement rides involving circular motion, whether in horizontal or vertical planes. Depending on the questions asked, assignments involving circular motion can reveal different types of…
Descriptors: Science Instruction, Physics, Motion, Scientific Concepts
Hernandez, Eder; Campos, Esmeralda; Barniol, Pablo; Zavala, Genaro – Physical Review Physics Education Research, 2022
Studying students' problem-solving abilities in physics education research has consistently shown that novices focus on a problem's surface features rather than its physical principles. Previous research has observed that some electricity and magnetism students confuse electricity and magnetism concepts, often presented in parallel problems (or…
Descriptors: Problem Solving, Scientific Concepts, Concept Formation, Energy

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