Transfer of Learning in Quantum Mechanics
arXiv:1602.05655 · doi:10.1063/1.2084692
Abstract
We investigate the difficulties that undergraduate students in quantum mechanics courses have in transferring learning from previous courses or within the same course from one context to another by administering written tests and conducting individual interviews. Quantum mechanics is abstract and its paradigm is very different from the classical one. A good grasp of the principles of quantum mechanics requires creating and organizing a knowledge structure consistent with the quantum postulates. Previously learned concepts such as the principle of superposition and probability can be useful in quantum mechanics if students are given opportunity to build associations between new and prior knowledge. We also discuss the need for better alignment between quantum mechanics and modern physics courses taken previously because semi-classical models can impede internalization of the quantum paradigm in more advanced courses.
4 pages, PACS: 01.40Fk,01.40.gb,01.40G-,1.30.Rr
Cited by in corpus (19)
- Student understanding of quantum mechanics at the beginning of graduate instruction
- Interactive learning tutorials on quantum mechanics
- Improving Students' Understanding of Quantum Mechanics via the Stern-Gerlach Experiment
- Categorization of Quantum Mechanics Problems by Professors and Students
- Using an Isomorphic Problem Pair to Learn Introductory Physics: Transferring from a Two-step Problem to a Three-step Problem
- Improving student understanding of addition of angular momentum in quantum mechanics
- Development and validation of a sequence of clicker questions for helping students learn addition of angular momentum in quantum mechanics
- Validation and Administration of a Conceptual Survey on the Formalism and Postulates of Quantum Mechanics
- Improving performance in quantum mechanics with explicit incentives to correct mistakes
- Interactive Learning Tutorial on Quantum Key Distribution
- Quantum interactive learning tutorial on the double-slit experiment to improve student understanding of quantum physics
- Student understanding of Fermi energy, the Fermi-Dirac distribution and total electronic energy of a free electron gas
- Effectiveness of interactive tutorials in promoting "which-path" information reasoning in advanced quantum mechanics
- Student Understanding of the Bloch Sphere
- Improving student understanding of quantum mechanics underlying the Stern-Gerlach experiment using a research-validated multiple-choice question sequence
- Challenges in addressing student difficulties with time-development of two-state quantum systems using a multiple-choice question sequence in virtual and in-person classes
- Challenges in addressing student difficulties with measurement uncertainty of two-state quantum systems using a multiple-choice question sequence in online and in-person classes
- Using multiple representations to improve student understanding of quantum states
- Challenges in addressing student difficulties with basics and change of basis for two-state quantum systems using a multiple-choice question sequence in online and in-person classes