Решение на момент правки #19351 от , автор jzmicer. Это не текущая версия.

Statement

11.6.2.

A parallel‑plate capacitor moves with velocity , as shown in the figure. The electric field strength between the plates is . Determine the rate of change of the electric flux through the rectangular contour and the circulation of the magnetic induction around this contour. How are the sought quantities related to each other in SI? In CGS?

Give examples confirming the proportionality of the circulation of the magnetic induction around a contour to the rate of change of the electric flux through the surface bounded by this contour.

For problem $11.6.2$

Solution

Choose a surface passing through the capacitor: Using the solution of problem 11.6.1, this can be generalised for any surface: Charging capacitor:

When a capacitor is charging, current flows in the wires, but there is no current between the plates. The changing electric field between the plates maintains the circulation of around a contour that does not intersect the conductor, equal to the circulation around a contour that does intersect the conductor: for a surface crossing the conductor.

Answer