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Magnetohydrodynamics (MHD; additionally magneto-liquid elements or hydro­magnetics) is the investigation of the attractive properties and conduct of electrically directing liquids. Instances of such magneto­fluids incorporate plasmas, fluid metals, salt water, and electrolytes. "Magneto­hydro­dynamics" is gotten from magneto-meaning attractive field, hydro-significance water, and elements meaning development. The field of MHD was started by Hannes Alfvén, for which he got the Nobel Prize in Physics in 1970.    The crucial idea driving MHD is that attractive fields can incite flows in a moving conductive liquid, which thus enraptures the liquid and equally changes the attractive field itself. The arrangement of conditions that portray MHD are a blend of the Navier–Stokes conditions of liquid elements and Maxwell's conditions of electro­magnetism. These differential conditions must be explained all the while, either logically or numerically.    The least difficult type of MHD, Ideal MHD, expect that the liquid has so little resistivity that it very well may be treated as an ideal conductor. This is the restriction of unending attractive Reynolds number. In perfect MHD, Lenz's law directs that the liquid is it might be said attached to the attractive field lines. To clarify, in perfect MHD a little rope-like volume of liquid encompassing a field line will keep on lying along an attractive field line, even as it is turned and contorted by liquid streams in the framework. This is at times alluded to as the attractive field lines being "solidified" in the fluid. The association between attractive field lines and liquid in perfect MHD fixes the topology of the attractive field in the liquid—for instance, in the event that a lot of attractive field lines are integrated with a bunch, at that point they will remain so as long as the liquid/plasma has insignificant resistivity. This trouble in reconnecting attractive field lines makes it conceivable to store vitality by moving the liquid or the wellspring of the attractive field. The vitality would then be able to open up if the conditions for perfect MHD separate, permitting attractive reconnection that discharges the put away vitality from the attractive field.

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