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Michael E. Robbins; Nathan D. Davis; Eric W. Burkholder – Physical Review Physics Education Research, 2025
There is currently little physics education literature examining thinking and learning in graduate education and even less literature characterizing problem solving among physics graduate students despite this being an essential professional skill for physicists. Given reports of discrepancies between physics problem solving in the undergraduate…
Descriptors: Decision Making, Graduate Students, Physics, Science Instruction
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
Abolaji R. Akinyemi; Michael E. Loverude; John R. Thompson – Physical Review Physics Education Research, 2025
One expected outcome of physics instruction is that students develop quantitative reasoning skills, including strategies for evaluating solutions to problems. Examples of well-known "canonical" evaluation strategies include special case analysis, unit analysis, and checking for reasonable numbers. We report on responses from three tasks…
Descriptors: Physics, Science Instruction, Problem Solving, Evaluation
Elise M. Walck-Shannon; Heather D. Barton; Shaina F. Rowell; Douglas L. Chalker; Angela Fink – CBE - Life Sciences Education, 2025
Recently, our course team transformed a large-enrollment introductory genetics course from being predominantly lecture based to active learning based. During class sessions, students engaged in problem solving, which occurs when a student attempts to solve a problem without knowing the path to complete it. We designed class activities…
Descriptors: Active Learning, Genetics, Learning Activities, Inquiry
Keita Yasuda; Izuru Senaha – Journal of Chemical Education, 2024
Clathrate hydrates are attractive materials for education because they form from water and familiar compounds, such as carbon dioxide, and are relevant to novel technologies. In this study, an attempt to propose a laboratory experiment was summarized, which used carbon dioxide clathrate hydrate as an educational material with carbon capture…
Descriptors: Chemistry, Science Instruction, Laboratory Experiments, Energy
Ted M. Clark; Nicole M. Dickson-Karn; Ellie Anderson – Journal of Chemical Education, 2022
This study investigated the strategies students in general chemistry and analytical chemistry courses used before and after instruction to solve a volumetric analysis problem in which the molar ratio was not 1:1. Questions like this have historically been very challenging for high school and undergraduate students. Student writing on open-response…
Descriptors: Undergraduate Students, Chemistry, Science Instruction, Learning Strategies
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
Danijela Dodlek; Gorazd Planinsic; Eugenia Etkina – Physical Review Physics Education Research, 2024
Research carried out through the last 20 years gave us undeniable evidence that to learn anything we need to be active participants, not passive observers. One of the important aspects of learning physics is constructing explanations of physical phenomena. To support and guide students toward constructing their explanations, teachers need to be…
Descriptors: Science Teachers, Preservice Teachers, Teacher Response, Physics
Jingjing Han; Lina Zhang; Liucai Yang; Yougen Luo; Ruiqin Yao; Xuebin Qu – Biochemistry and Molecular Biology Education, 2024
The primary objective of science postgraduate education is to foster students' capacity for creative thinking and problem-solving, particularly in the context of scientific research quality. In order to achieve this goal, the "7E" teaching mood has been implemented in the cell biology course for postgraduate students to promote…
Descriptors: Science Instruction, Graduate Students, Creative Thinking, Problem Solving
Irina Braun; Nicole Graulich – Chemistry Education Research and Practice, 2024
Resonance is a crucial concept in Organic Chemistry that enables both deriving chemical properties from molecular structures and predicting reactions by considering electron density distribution. Despite its importance for problem-solving and learning success, learners encounter various difficulties with this concept. Although prior research…
Descriptors: Foreign Countries, Chemistry, Organic Chemistry, Scientific Concepts
Mikeas Silva de Lima; Lilian Pozzer; Salete Linhares Queiroz – Journal of Research in Science Teaching, 2025
In the context of scholarly and scientific discourse, students often have to deal with graphic-visual modes of communication, which requires their ability to comprehend and utilize inscriptions, that is, scientific visual representations, to convey information effectively--what we call graphical literacy. Despite its pivotal role for training…
Descriptors: Graphs, Knowledge Level, Chemistry, Science Instruction
Kimberly S. DeGlopper – ProQuest LLC, 2024
The work presented in the following chapters was undertaken with the goal of understanding and improving education in organic chemistry. Initial work, described in Chapters 1 and 2, focuses on students' ability to explain and rationalize the outcomes of organic chemistry reactions. Chapter 1 explores the relationship between assessment emphasis…
Descriptors: Organic Chemistry, Science Instruction, Learning Strategies, Thinking Skills
Forringer, Edward – Physics Teacher, 2021
When authoring physics problems, professors may develop an intuition for how much information they need to provide such that the problem has a unique answer and is not over constrained. It is an open question as to whether using intuition leads to a sufficiently broad range of problems. In this paper we discuss a systematic way of authoring…
Descriptors: Motion, Physics, Science Instruction, College Science
Mason, Andrew J.; McCardell, Jessica M.; White, Philip A.; Colton, John S. – Physical Review Physics Education Research, 2023
This study seeks to determine whether giving an explicit incentive to students in an upper-division first-semester electromagnetism course (EM1), in the form of partial credit for reworking unit exam problems, will improve their problem-solving skills as measured by performance on identical problems on the final exam. Three problems--a primarily…
Descriptors: College Science, Energy, Magnets, Problem Solving
Sean Gao; Taylor C. Outlaw; Jason G. Liang-Lin; Alina Feng; Reika Shimomura; Jennifer L. Roizen; Charles T. Cox Jr. – Chemistry Education Research and Practice, 2024
This study aimed to analyze second-semester organic chemistry students' problem-solving strategies, specifically focusing on the resources activated while solving problems on E2, E1, and E1cB elimination reactions. Using the theoretical framework by Elby and Hammer, we defined a resource as a unit of information used in the problem-solving…
Descriptors: Organic Chemistry, Science Instruction, Problem Solving, Protocol Analysis

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