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Marshman, Emily; Sayer, Ryan; Henderson, Charles; Singh, Chandralekha – Physical Review Physics Education Research, 2017
At large research universities, physics graduate teaching assistants (TAs) are often responsible for grading in courses at all levels. However, few studies have focused on TAs' grading practices in introductory and advanced physics courses. This study was designed to investigate whether physics graduate TAs grade students in introductory physics…
Descriptors: Teaching Assistants, Grading, Introductory Courses, Physics
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Brown, Benjamin R.; Mason, Andrew; Singh, Chandralekha – Physical Review Physics Education Research, 2016
An earlier investigation found that the performance of advanced students in a quantum mechanics course did not automatically improve from midterm to final exam on identical problems even when they were provided the correct solutions and their own graded exams. Here, we describe a study, which extended over four years, in which upper-level…
Descriptors: Error Correction, Science Instruction, Mechanics (Physics), Quantum Mechanics
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Singh, Chandralekha; Marshman, Emily – Physical Review Special Topics - Physics Education Research, 2015
Learning advanced physics, in general, is challenging not only due to the increased mathematical sophistication but also because one must continue to build on all of the prior knowledge acquired at the introductory and intermediate levels. In addition, learning quantum mechanics can be especially challenging because the paradigms of classical…
Descriptors: Mechanics (Physics), Quantum Mechanics, Science Instruction, Logical Thinking
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Marshman, Emily; Singh, Chandralekha – Physical Review Physics Education Research, 2017
Single photon experiments involving a Mach-Zehnder interferometer can illustrate the fundamental principles of quantum mechanics, e.g., the wave-particle duality of a single photon, single photon interference, and the probabilistic nature of quantum measurement involving single photons. These experiments explicitly make the connection between the…
Descriptors: Quantum Mechanics, Difficulty Level, Problem Solving, Action Research
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Marshman, Emily; Singh, Chandralekha – Physical Review Special Topics - Physics Education Research, 2015
Compared with introductory physics, relatively little is known about the development of expertise in advanced physics courses, especially in the case of quantum mechanics. Here, we describe a framework for understanding the patterns of student reasoning difficulties and how students develop expertise in quantum mechanics. The framework posits that…
Descriptors: Science Instruction, Quantum Mechanics, Mechanics (Physics), Logical Thinking
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Zhu, Guangtian; Singh, Chandralekha – Physical Review Special Topics - Physics Education Research, 2012
We describe the difficulties that advanced undergraduate and graduate students have with quantum measurement within the standard interpretation of quantum mechanics. We explore the possible origins of these difficulties by analyzing student responses to questions from both surveys and interviews. Results from this research are applied to develop…
Descriptors: Graduate Students, Quantum Mechanics, College Science, Mechanics (Physics)
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Lin, Shih-Yin; Singh, Chandralekha – European Journal of Physics, 2010
We discuss the categorization of 20 quantum mechanics problems by physics professors and undergraduate students from two honours-level quantum mechanics courses. Professors and students were asked to categorize the problems based upon similarity of solution. We also had individual discussions with professors who categorized the problems. Faculty…
Descriptors: Quantum Mechanics, Problem Solving, Classification, College Faculty