Comparing a current-carrying circular wire with polygons of equal perimeter; Magnetic field versus magnetic flux
J. P. Silva, A. J. Silvestre
Abstract
We compare the magnetic field at the center of and the self-magnetic flux through a current-carrying circular loop, with those obtained for current-carrying polygons with the same perimeter. As the magnetic field diverges at the position of the wires, we compare the self-fluxes utilizing several regularization procedures. The calculation is best performed utilizing the vector potential, thus highlighting its usefulness in practical applications. Our analysis answers some of the intuition challenges students face when they encounter a related simple textbook example. These results can be applied directly to the determination of mutual inductances in a variety of situations.
Create a lesson
Related papers
AI-Augmented Inquiry and Regulation in Hybrid Systems: A Control Allocation Architecture for Preserving Epistemic Agency in Hybrid Human-AI Cognition
Jochen Kuhn, Peter Gerjets, Ulrich Trautwein et al.
Using Gemini and LuaLaTeX to transcribe physics videos into PDF/UA-2 and ISO 32005 math-accessible PDFs
Craig W. Looney, Christopher L. Duston
Large Scale AI Grading of Handwritten Physics Assessments: Score Agreement and Olympiad Team Selection Outcomes
Praveen Pathak, Siddharth Tiwary, Charudatt Kadolkar et al.
Teaching Quantum Design Automation with Block-Based Programming
Damian Rovara, Robert Wille
Measuring student understanding in quantum computing: Development and validation of the Quantum Computing Conceptual Survey
Josephine C. Meyer, Molly Griston, Gina Passante et al.
PhysTrackX: Open-Source Software for Kinematics Tracking for the Physics Laboratory
Isam Abdullah Balghari, Muhammad Sabieh Anwar