arXiv · 1501.02563
Electric cell voltage at etching and deposition of metals under an inhomogeneous constant magnetic field
Abstract
The self-organized electric cell voltage of the physical circuit is calculated at etching and deposition of metals at the surface of a magnetized ferromagnetic electrode in an electrolyte without passing an external electrical current. This self-organized voltage arises due to the inhomogeneous distribution of concentration of the effectively dia- or paramagnetic cluster components of an electrolyte at the surface of a ferromagnetic electrode under the effect of inhomogeneous magnetostatic fields. The current density and Lorentz force are calculated in an electrolyte in the vicinity of the magnetized steel ball-shaped electrode. The Lorentz force causes the rotation of an electrolyte around the direction of an external magnetic field.
Explore related subjects
Keep this discovery
O. Yu. Gorobets, Yu. I. Gorobets, V. P. Rospotniuk, Yu. A. Legenkiy. 2015-01-12. Electric cell voltage at etching and deposition of metals under an inhomogeneous constant magnetic field. https://doi.org/10.5488/cmp.17.43401
Cite the original work for its findings. Save a collection to share your selection of sources.