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Elizabeth Stippell; Alexey V. Akimov; Oleg V. Prezhdo – Journal of Chemical Education, 2023
We report an educational tool for the upper level undergraduate quantum chemistry or quantum physics course that uses a symbolic approach via the PySyComp Python library. The tool covers both time-independent and time-dependent quantum chemistry, with the latter rarely considered in the foundations course due to topic complexity. We use quantized…
Descriptors: Undergraduate Students, College Science, Quantum Mechanics, Chemistry
Michael E. Robbins; Gabriel J. DiQuattro; Eric W. Burkholder – Physical Review Physics Education Research, 2025
[This paper is part of the Focused Collection in Investigating and Improving Quantum Education through Research.] One of the greatest weaknesses of physics education research is the paucity of research on graduate education. While there are a growing number of investigations of graduate student degree progress and admissions, there are very few…
Descriptors: Science Education, College Science, Science Instruction, Teaching Methods
Tu, Tao; Li, Chuan-Feng; Xu, Jin-Shi; Guo, Guang-Can – Physical Review Physics Education Research, 2023
In the context of quantum mechanics, students are often asked to use delta functions to solve problems. Here, we investigate three typical problem-solving processes using delta functions: a delta function potential well problem, a position space delta function problem, and a momentum space delta function problem. We studied students'solutions in…
Descriptors: Quantum Mechanics, Science Instruction, Problem Solving, Scientific Concepts
Mary Jane Brundage; Alysa Malespina; Chandralekha Singh – Physical Review Physics Education Research, 2023
Collaborative learning with peers can lead to students learning from each other and solving physics problems correctly not only in situations in which one student knows how to solve the problems but also when none of the students can solve the problems alone. We define the rate of construction as the percentage of groups collaborating on problem…
Descriptors: Peer Relationship, Cooperative Learning, Science Education, Quantum Mechanics
Tu, Tao; Li, Chuan-Feng; Xu, Jin-Shi; Guo, Guang-Can – Physical Review Physics Education Research, 2021
In quantum mechanics courses, students are often asked to solve bound and scattering state problems. The use of an ordinary differential equation is a standard technique to solve these questions. Here, we investigated students' problem-solving processes for two typical problems of a single particle in one spatial dimension: a bound state problem…
Descriptors: Quantum Mechanics, Science Instruction, Problem Solving, Barriers
Tu, Tao; Li, Chuan-Feng; Zhou, Zong-Quan; Guo, Guang-Can – Physical Review Physics Education Research, 2020
Upper-division physics students solve partial differential equations in various contexts in quantum mechanics courses. Separation of variables is a standard technique to solve these equations. We investigated students' solutions to midterm exam questions and utilized think-aloud interviews. We also applied a framework that organizes students'…
Descriptors: Science Instruction, Physics, Equations (Mathematics), Quantum Mechanics
Agcali, Rahime Yagmur; Atik, Bahar; Bilgen, Ecenaz; Karli, Berfu; Danisman, Mehmet Fatih – Journal of Chemical Education, 2019
Understanding the concepts of quantum mechanics has always been a challenge for undergraduate students. This is especially so because many of the introductory (analytically solvable) systems and problems discussed in textbooks are seemingly abstract. Using approximate experimental demonstrations of such systems and problems have been shown to be…
Descriptors: Science Instruction, Undergraduate Students, College Science, Quantum Mechanics
Johansson, Anders; Andersson, Staffan; Salminen-Karlsson, Minna; Elmgren, Maja – Cultural Studies of Science Education, 2018
Educating new generations of physicists is often seen as a matter of attracting good students, teaching them physics and making sure that they stay at the university. Sometimes, questions are also raised about what could be done to increase diversity in recruitment. Using a discursive perspective, in this study of three introductory quantum…
Descriptors: Quantum Mechanics, Mechanics (Physics), Science Instruction, College Science
Singh, Satya Pal – European Journal of Physics Education, 2019
Quantum mechanics has completed century since its genesis. Quantum mechanics is taught at various levels-starting from school and colleges to universities. Regression methods are introduced at under graduate and post graduate levels to solve Schrodinger equation for finding solutions of various trivial and non-trivial physical problems. The common…
Descriptors: Problem Solving, Quantum Mechanics, Mechanics (Physics), Science Instruction
Modir, Bahar; Thompson, John D.; Sayre, Eleanor C. – Physical Review Physics Education Research, 2019
Students' difficulties in quantum mechanics may be the result of unproductive framing rather than a fundamental inability to solve the problems or misconceptions about physics content. Using the theoretical lens of epistemological framing, we applied previously developed frames to seek an underlying structure to the long lists of published…
Descriptors: Quantum Mechanics, Mechanics (Physics), Concept Formation, Misconceptions
Modir, Bahar; Thompson, John D.; Sayre, Eleanor C. – Physical Review Physics Education Research, 2017
Students' difficulties in quantum mechanics may be the result of unproductive framing and not a fundamental inability to solve the problems or misconceptions about physics content. We observed groups of students solving quantum mechanics problems in an upper-division physics course. Using the lens of epistemological framing, we investigated four…
Descriptors: Epistemology, Problem Solving, Quantum Mechanics, Physics
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
Cleary, David A. – Journal of Chemical Education, 2014
The usefulness of the JANAF tables is demonstrated with specific equilibrium calculations. An emphasis is placed on the nature of standard chemical potential calculations. Also, the use of the JANAF tables for calculating partition functions is examined. In the partition function calculations, the importance of the zero of energy is highlighted.
Descriptors: Science Instruction, College Science, Computation, Chemistry
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
Salah, Hazzi; Dumon, Alain – Chemistry Education Research and Practice, 2014
The concept of covalent bonding is characterized by an interconnected knowledge framework based on Lewis and quantum models of atoms and molecules. Several research studies have shown that students at all levels of chemistry learning find the quantum model to be one of the most difficult subjects to understand. We have tried in this paper to…
Descriptors: Foreign Countries, Molecular Structure, Science Instruction, Questionnaires