Magnetostatics Course
This course provides essential knowledge on magnetostatics, focusing on steady magnetic fields. Explore units, vector calculus, and Maxwell’s equations in the static regime. Apply Biot–Savart and Ampère’s laws to calculate fields from wires and loops. Analyse charged particle trajectories, including cyclotron motion. Bridge theory and practice through lab experiments with numerical methods, Hall probes, safety measures, and accurate experimental design for physics applications.

4 to 360 hours flexible workload
valid certificate in your country
What will I learn?
Gain a thorough understanding of steady magnetic fields in this course, covering essential units, vector calculus, and Maxwell’s equations in static conditions. Master Biot–Savart and Ampère’s laws, model currents in wires and loops, examine particle dynamics in fields, and integrate theory with hands-on labs using numerical techniques, precise measurements, safety protocols, and real-world parameters.
Elevify advantages
Develop skills
- Calculate magnetic fields using Biot–Savart and Ampère’s laws in practical lab scenarios.
- Solve magnetostatic problems efficiently with symmetry and vector calculus techniques.
- Simulate charged particle behaviour in constant magnetic fields, covering cyclotron motion.
- Plan secure experiments by selecting appropriate currents, loop dimensions, and cabling.
- Accurately measure and calibrate B-fields using Hall probes and coils while managing errors.
Suggested summary
Before starting, you can change the chapters and the workload. Choose which chapter to start with. Add or remove chapters. Increase or decrease the course workload.What our students say
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