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Drawing appropriate diagrams is a useful problem solving heuristic that can transform a given problem into a representation that is easier to exploit for solving it. A major focus while helping introductory physics students learn problem…

物理教育 · 物理学 2016-01-19 Alex Maries , Chandralekha Singh

An appropriate diagram is a required element of a solution building process in physics problem solving and it can transform a given problem into a representation that is easier to exploit for solving the problem. A major focus while helping…

物理教育 · 物理学 2020-07-02 Alexandru Maries , Chandralekha Singh

Drawing appropriate diagrams is a useful problem solving heuristic that can transform a problem into a representation that is easier to exploit for solving it. One major focus while helping introductory physics students learn effective…

物理教育 · 物理学 2020-06-29 Alexandru Maries , Chandralekha Singh

Drawing appropriate diagrams is a useful problem solving heuristic that can transform a give problem into a representation that is easier to exploit for solving it. A major focus while helping introductory physics students learn problem…

物理教育 · 物理学 2016-01-22 Alexandru Maries , Chandralekha Singh

Helping students become proficient problem-solvers is one of the primary goals of physics courses. In part 1 of this article, we summarized the vast research on problem-solving relevant for physics instruction, and here we discuss a…

物理教育 · 物理学 2023-04-14 Chandralekha Singh , Alexandru Maries

We describe a study in which introductory physics students engage in reflection with peers about problem solving. The recitations for an introductory physics course with 200 students were broken into the "Peer Reflection" (PR) group and the…

物理教育 · 物理学 2016-02-19 Andrew Mason , Chandralekha Singh

We describe a study in which introductory physics students engage in reflection with peers about problem solving. The recitations for an introductory physics course with 200 students were broken into the "Peer Reflection" (PR) group and the…

物理教育 · 物理学 2016-03-10 Andrew Mason , Chandralekha Singh

Diagrams are ubiquitous in physics, especially in physics education and physics problem solving. Problem solvers may generate diagrams to orient to a scenario, to organize information, to directly extract an answer, or as a tool of…

物理教育 · 物理学 2022-02-04 Michael Vignal , Bethany R. Wilcox

Previous research has found that introductory physics students perform far better on numeric problems than on otherwise equivalent symbolic problems. This paper describes a framework to explain these differences developed by analyzing…

物理教育 · 物理学 2012-07-19 Eugene Torigoe

In this study, we examine introductory physics students' ability to perform analogical reasoning between two isomorphic problems which employ the same underlying physics principles but have different surface features. Three hundred and…

物理教育 · 物理学 2016-02-19 Shih-Yin Lin , Chandralekha Singh

We discuss the development of interactive video tutorial-based problems to help introductory physics students learn effective problem solving heuristics. The video tutorials present problem solving strategies using concrete examples in an…

物理教育 · 物理学 2016-02-26 Chandralekha Singh

One finding of cognitive research is that people do not automatically acquire usable knowledge by spending lots of time on task. Because students' knowledge hierarchy is more fragmented, "knowledge chunks" are smaller than those of experts.…

物理教育 · 物理学 2016-02-23 Chandralekha Singh

Students must learn effective problem solving strategies in order to develop expertise in physics. Effective problem solving strategies include a conceptual analysis of the problem followed by planning of the solution, and then…

物理教育 · 物理学 2016-05-03 Andrew J. Mason , Chandralekha Singh

Traditionally, scholars in physics education research pay attention to students solving well-structured learning activities, which provide restricted room for collaboration and idea-generation due to their close-ended nature. In order to…

物理教育 · 物理学 2020-03-31 Javier Pulgar , Alexis Spina , Carlos Ríos

Mastering problem solving requires students to not only understand and apply physics concepts but also employ mathematics and mathematical representations (sketches, diagrams, graphs, gestures, equations and spoken language) skillfully. As…

物理教育 · 物理学 2017-10-13 Nandana Weliweriya , Tra Huynh , Eleanor C Sayre

For several decades, scholars have studied cooperation and its outcomes in the educational context. Yet, we lack a complete understanding of how different instructional strategies impact the relationship between cooperation and learning.…

物理教育 · 物理学 2020-07-01 Javier Pulgar , Cristian Candia , Paul Leonardi

Identifying the relevant physics principles is a central component of problem solving. A major goal of most introductory physics courses is to help students discern the deep similarities between problems based upon the physics principles so…

物理教育 · 物理学 2016-02-23 Shih-Yin Lin , Chandralekha Singh

Equations are about more than computing physical quantities or constructing formal models; they are also about understanding. The conceptual systems physicists use to think about nature are made from many different resources, formal and…

物理教育 · 物理学 2018-04-06 Mark Eichenlaub , Edward F. Redish

Many studies have investigated students' epistemological framing when solving physics problems. Framing supports students' problem solving as they decide what knowledge to employ and the necessary steps to solve the problem. Students may…

物理教育 · 物理学 2016-10-12 Hai D Nguyen , Deepa N Chari , Eleanor C Sayre

Effective physics learning, especially in complex topics, requires balancing mathematical formalism with conceptual understanding. Conceptual problem-solving involves connecting math to physical reality, and using an epistemological…

物理教育 · 物理学 2025-11-24 Matteo Tuveri , Andrea Pierfrancesco Sanna , Mariano Cadoni
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