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Quattrucci, Joseph G. – Journal of Chemical Education, 2018
A new method for teaching advanced laboratories at the undergraduate level is presented. The intent of this approach is to get students more engaged in the lab experience and apply critical thinking skills to solve problems. The structure of the lab is problem-based and provides students with a research-like experience. Students read the current…
Descriptors: Problem Based Learning, Thinking Skills, Teaching Methods, Critical Thinking
Hung, Ching-Sui; Wu, Hsin-Kai – Physical Review Physics Education Research, 2018
Numerical and symbolic representations are used extensively in physics problems. However, relatively little is understood about how students respond to these two representational formats when they are solving problems. This study examined the effect of the representational format (numeric vs symbolic) on the problem-solving performance,…
Descriptors: Grade 10, Problem Solving, High School Students, Self Efficacy
Bain, Kinsey; Rodriguez, Jon-Marc G.; Moon, Alena; Towns, Marcy H. – Chemistry Education Research and Practice, 2018
Chemical kinetics is a highly quantitative content area that involves the use of multiple mathematical representations to model processes and is a context that is under-investigated in the literature. This qualitative study explored undergraduate student integration of chemistry and mathematics during problem solving in the context of chemical…
Descriptors: Chemistry, Science Instruction, Qualitative Research, Undergraduate Students
Sawyer, Robert; Rowe, Jonathan; Azevedo, Roger; Lester, James – International Educational Data Mining Society, 2018
Student interactions with game-based learning environments produce a wide range of in-game problem-solving sequences. These sequences can be viewed as trajectories through a game's problem-solving space. In this paper, we present a general framework for analyzing students' problem-solving behavior in game-based learning environments by filtering…
Descriptors: Educational Games, Teaching Methods, Educational Technology, Technology Uses in Education
Fancsali, Cheri; Mirakhur, Zitsi; Klevan, Sarah; Rivera-Cash, Edgar – Research Alliance for New York City Schools, 2022
The perspective that computing and computational thinking (CT) are necessary competencies for the 21st century is increasingly pervasive. Computational concepts and methods--problem solving, designing systems, refining the steps in a process, and tinkering toward creative solutions--are relevant in nearly every discipline, profession, and…
Descriptors: Thinking Skills, Problem Solving, Computation, Science Instruction
Morphew, Jason W.; Gladding, Gary E.; Mestre, Jose P. – Physical Review Physics Education Research, 2020
Students must actively engage in problem solving to effectively learn in introductory physics courses. However, students often get stuck and are not able to make progress when solving problems outside of their current ability, particularly when one-on-one tutoring and instructor office hours are a limited resource. One effective technique consists…
Descriptors: Metacognition, Problem Solving, Introductory Courses, Physics
Mayall, Robert M.; Arcellana-Panlilio, Mayi – Papers on Postsecondary Learning and Teaching, 2019
With the ever-increasing push towards authentic learning within post-secondary institutions, many approaches are being explored. One such method with a particular focus on real-world applications has been the International Genetically Engineered Machines (iGEM) competition program. At the University of Calgary, the iGEM program sees teams of…
Descriptors: Authentic Learning, Teacher Workshops, College Faculty, Vignettes
Hadiati, Soka; Kuswanto, Heru; Rosana, Dadan; Pramuda, Adi – International Journal of Instruction, 2019
This study aims to examine students' reasoning based on the model in each laboratory work style and find the effect on scientific attitude and student activity. This study uses a quantitative approach with the experimental method. The study was conducted in three classes with different lab work styles. Arduino and sensors were used as a…
Descriptors: Logical Thinking, Scientific Attitudes, Laboratory Procedures, Open Source Technology
Immethun, Cheryl M.; Daher, Tareq; Saha, Rajib – Chemical Engineering Education, 2019
The use of active learning techniques in engineering classrooms has been limited despite substantial evidence supporting their efficacy in helping students construct problem-solving expertise. A blended classroom, which combines online and in-class learning, was employed in a Chemical Engineering Computation class to address instructional…
Descriptors: Science Instruction, Teaching Methods, Chemical Engineering, Blended Learning
Albacete, Patricia; Jordan, Pamela; Katz, Sandra; Chounta, Irene-Angelica; McLaren, Bruce M. – Grantee Submission, 2019
This paper describes an initial pilot study of Rimac, a natural-language tutoring system for physics. Rimac uses a student model to guide decisions about "what content to discuss next" during reflective dialogues that are initiated after students solve quantitative physics problems, and "how much support to provide" during…
Descriptors: Natural Language Processing, Teaching Methods, Educational Technology, Technology Uses in Education
Hagge, Mathew; Amin-Naseri, Mostafa; Jackman, John; Guo, Enruo; Gilbert, Stephen B.; Starns, Gloria; Faidley, Leann – Advances in Engineering Education, 2017
Students learn when they connect new information to existing understanding or when they modify existing understanding to accept new information. Most current teaching methods focus on trying to get students to solve problems in a manner identical to that of an expert. This study investigates the effectiveness of assessing student understanding…
Descriptors: Intelligent Tutoring Systems, Thermodynamics, Problem Solving, Decision Making
Müller, Tanja; Henning, Thomas – Interdisciplinary Journal of Problem-based Learning, 2017
In this paper, we provide insight into the PBL project called PoLiMINT (Problem-oriented Learning in MINT). The project is located at the Bremen University of Applied Sciences and aims to introduce and foster PBL in the introductory phase of a physics study program. Concerning our general conditions, we will present our incremental implementation…
Descriptors: Teaching Methods, Problem Based Learning, Problem Solving, Introductory Courses
Zare, Richard N.; Cox, Charles T., Jr.; Murphy, Katherine; Bayas, Camille – Journal of College Science Teaching, 2017
In large, introductory courses, instructors and teaching assistants often struggle to provide detailed feedback on student homework in a timely manner. Here we describe a peer-reviewed homework system that provides quick turnaround while offering flexibility in the construction of homework problems. Homework is administered through a cycle, which…
Descriptors: Homework, Peer Evaluation, Introductory Courses, Problem Solving
Ouasri, Ali – Chemistry Education Research and Practice, 2017
This paper investigates the difficulties that Moroccan pupils (18-19) of the second Baccalaureate year encountered in solving chemical equilibrium problems relating to ethanoate ions' reactivity with water and methanoic acid, and to copper-aluminum cells. The pupils were asked to provide answers to questions derived from two problems. The…
Descriptors: Foreign Countries, Late Adolescents, Chemistry, Science Instruction
Bruce, Richard M. – Advances in Physiology Education, 2017
Learning the basic competencies of critical thinking are very important in the education of any young scientist, and teachers must be prepared to help students develop a valuable set of analytic tools. In my experience, this is best achieved by encouraging students to study areas with little scientific consensus, such as the control mechanisms of…
Descriptors: Exercise Physiology, Critical Thinking, Thinking Skills, Science Instruction

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