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Singh, Chandralekha; Levy, Akash; Levy, Jeremy – Physics Teacher, 2022
After the passage of the U.S. National Quantum Initiative Act in December 2018, the National Science Foundation (NSF) and the Office of Science and Technology Policy (OSTP) recently assembled an interagency working group and conducted a workshop titled "Key Concepts for Future Quantum Information Science Learners" that focused on…
Descriptors: Physics, Quantum Mechanics, Science Instruction, Scientific Concepts
Brown, Benjamin; Singh, Chandralekha – Physical Review Physics Education Research, 2021
We discuss the development and validation of a conceptual multiple-choice survey instrument called the survey of thermodynamic processes and first and second laws (STPFaSL) suitable for introductory physics courses. The survey instrument uses common student difficulties with these concepts as resources in that the incorrect answers to the…
Descriptors: Test Construction, Test Validity, Thermodynamics, Scientific Concepts
DeVore, Seth; Singh, Chandralekha – Physical Review Physics Education Research, 2020
We describe the development and in-class evaluation of a quantum interactive learning tutorial (QuILT) on quantum key distribution, a context which involves an exciting application of quantum mechanics. The protocol used in the QuILT described here uses single photons with nonorthogonal polarization states to generate a random shared key over a…
Descriptors: Science Instruction, Quantum Mechanics, Scientific Concepts, College Science
Maries, Alexandru; Brundage, Mary Jane; Singh, Chandralekha – Physical Review Physics Education Research, 2022
The Conceptual Survey of Electricity and Magnetism (CSEM) is a multiple-choice survey that contains a variety of electricity and magnetism concepts from Coulomb's law to Faraday's law at the level of introductory physics used to help inform instructors of student mastery of those concepts. Prior studies suggest that many concepts on the survey are…
Descriptors: Physics, Energy, Graduate Students, Teaching Methods
Li, Yangqiuting; Singh, Chandralekha – Physical Review Physics Education Research, 2022
We discuss an investigation of students' motivational beliefs and performance on the Force Concept Inventory (FCI) in a calculus-based introductory physics course at a large public university in the U.S. We investigated how students' perception of the inclusiveness of the learning environment (including perceived recognition, perceived…
Descriptors: Inclusion, Physics, Science Instruction, Student Motivation
Marshman, Emily; Singh, Chandralekha – Physical Review Physics Education Research, 2019
We developed and validated a conceptual survey that focuses on the formalism and postulates of quantum mechanics covered in upper-level undergraduate quantum mechanics courses. The concepts included in the quantum mechanics formalism and postulate survey (QMFPS) focus on Dirac notation, the Hilbert space, state vectors, physical observables and…
Descriptors: Quantum Mechanics, Physics, Scientific Principles, Scientific Concepts
Keebaugh, Christof; Marshman, Emily; Singh, Chandralekha – Physical Review Physics Education Research, 2019
We discuss an investigation of student difficulties with the corrections to the energy spectrum of the hydrogen atom for the intermediate field Zeeman effect using degenerate perturbation theory (DPT). The investigation was carried out in advanced quantum mechanics courses by administering free-response and multiple-choice questions and conducting…
Descriptors: Energy, Scientific Concepts, Quantum Mechanics, Advanced Courses
Maries, Alexandru; Sayer, Ryan; Singh, Chandralekha – Physical Review Physics Education Research, 2017
Research suggests that introductory physics students often have difficulty using a concept in contexts different from the ones in which they learned it without explicit guidance to help them make the connection between the different contexts. We have been investigating advanced students' learning of quantum mechanics concepts and have developed…
Descriptors: Quantum Mechanics, Advanced Courses, Tutorial Programs, Instructional Effectiveness
Sayer, Ryan; Maries, Alexandru; Singh, Chandralekha – Physical Review Physics Education Research, 2017
Learning quantum mechanics is challenging, even for upper-level undergraduate and graduate students. Research-validated interactive tutorials that build on students' prior knowledge can be useful tools to enhance student learning. We have been investigating student difficulties with quantum mechanics pertaining to the double-slit experiment in…
Descriptors: Quantum Mechanics, Interaction, Tutorial Programs, Student Improvement
Karim, Nafis I.; Maries, Alexandru; Singh, Chandralekha – Physical Review Physics Education Research, 2018
The Conceptual Survey of Electricity and Magnetism (CSEM) has been used to assess student understanding of introductory concepts of electricity and magnetism because many of the items on the CSEM have strong distractor choices which correspond to students' alternate conceptions. Instruction is unlikely to be effective if instructors do not know…
Descriptors: Pedagogical Content Knowledge, Teaching Assistants, Scientific Concepts, Student Surveys
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
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
Zhu, Guangtian; Singh, Chandralekha – Physical Review Special Topics - Physics Education Research, 2012
We describe the development and implementation of research-based learning tools such as the Quantum Interactive Learning Tutorials and peer-instruction tools to reduce students' common difficulties with issues related to measurement in quantum mechanics. A preliminary evaluation shows that these learning tools are effective in improving students'…
Descriptors: Quantum Mechanics, Teaching Methods, Measurement, Physics
Lin, Shih-Yin; Singh, Chandralekha – Physical Review Special Topics - Physics Education Research, 2013
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. 382 students from a calculus-based and an algebra-based introductory physics course were administered a quiz in the recitation…
Descriptors: Physics, Science Instruction, Problem Solving, Scaffolding (Teaching Technique)
Singh, Chandralekha – Physics Education, 2009
Acceleration is a fundamental concept in physics which is taught in mechanics at all levels. Here, we discuss some challenges in teaching this concept effectively when the path along which the object is moving has a curvature and centripetal acceleration is present. We discuss examples illustrating that both physics teachers and students have…
Descriptors: Physics, Mechanics (Physics), Science Instruction, Concept Teaching
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