How to calculate magnetic flux of a solenoid. Solenoid magnetic field calculation. This magnetic flux calculator calculates the magnetic flux of an object based on the magnitude of the magnetic field which the object emanates the area of the object and the angle of the object from the 900 perpendicular angle according to the formula f bacosa if the magnetic field is at a non 900 angle non perpendicular to the area of the object. B 8505 104 namps m.
The magnetic field is determined by the contribution of each loop in the solenoid so the total magnetic field is dependent on the number of turns and the length of the solenoid. Click on the quantity you wish to calculate. The total magnetic flux through the coil is obtained by multiplying the flux density b by the cross section area a.
For a solenoid of length l m with n turns the turn density is nnl turnsm. The magnetic flux linkage is the amount of magnetism multiplied by the number of turns of the coil. No the book is correct the magnetic flux the amount of magnetism going through the solenoid is the magnetic field strength b multiplied by the area of the solenoid a p r 2.
The magnetic field generated by the solenoid is 8505 104 namps m. Solenoid formula a solenoid is a coil of wire through which a current flow. At the center of a long solenoid.
F b a cos a where f is the magnetic flux webers b is the magnetic field teslas. Magnetic field permeability x turn density x current. The point of the flux linkage is that a current induced in the solenoid by a changing magnetic field will be proportional to the flux linkage not the flux.
If the current in the solenoid is i amperes. The following equation can be used to calculate a magnetic flux.
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