This tool numerically solves for the magnetic field around an arbitrarily shaped coil specified by the user, in a discrete and finite volume surrounding the coil.
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Updated
Sep 21, 2023 - Python
This tool numerically solves for the magnetic field around an arbitrarily shaped coil specified by the user, in a discrete and finite volume surrounding the coil.
A Simple Biot Savart Solver in Python
Simulation of Biot-Savart law - Analytical solution to calculate magnetic field of an arbitrarily shaped coil. MATLAB and Python interface are provided.
Lecture Notes in Electromagnetics II for Engineering Physics master students at Uppsala University (2022-2026)
This is a simply code to calculate and show the 3d magnetic field genereated by circular and/or straight wire with constant current flowing inside. The basic idea is to apply Biot-Savart Law
This script generates a ring current model (RCM) for the given molecule and calculates the induced magnetic field at a specific atoms. This can be than related to the experimental NMR data to deduce ring current susceptibility in units of nA/T.
This code was written to model the magnetic field from different configurations of the Helmholtz coils using the Biot-Savart Law.
Magnetic field of two coaxial coils (Biot–Savart): Helmholtz uniformity, field lines and on-axis profile.
A lightweight user friendly electromagnetic simulation environment
FieldForge is a Python package for fast magnetic field simulations using the Biot–Savart law. It provides vectorized numerical implementations for computing magnetic field intensity (H) and magnetic flux density (B) generated by current-carrying conductors.
Implementación en MATLAB de los métodos de Multhopp y Vortex Lattice para el análisis aerodinámico de alas de envergadura finita.
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