Explanation
Two short magnets with pole strengths of $$900Am$$ and $$100Am$$ are placed with their axes in the same vertical line, with similar poles facing each other. Each magnet has a length of $$1 cm$$. When separation between the nearer poles is $$1cm$$, the weight of the upper magnet is supported by the repulsive force between the magnets. If $$g=10ms^{-2}$$, then the mass of upper magnet is ($$x \times10^{-4}$$)
True
Magnetic lines of forces are imaginary lines in electric field which indicates the direction of magnetic field.
Tangent at any point on a line of force give the direction of magnetic field at that point.
A small, magnetized sphere A of pole strength $$m$$ is counter-poised by a pan in a balance. Another magnetised sphere B of the same mass as A is placed below A so that their centres are at a distance $$1cm$$. If A and B are unlike poles of same strength and to restore counter the weight in the pan is increased by $$500 gm$$, the pole strength of each sphere is:
$$\textbf{Correct option : option D}$$
$$\textbf{Explanation:}$$
Ferromagnetic material form hysteresis loop. The magnetic field in the ferromagnetic material changes is represented by this . Due to magnetization and demagnetization of material loss of energy happens in the form of heat and this is called hysteresis loop and this loss of energy per cycle is measured by area enclosed by a hysteresis loop.
A coil of radius 200mm is to produce a field of 0.4 G In its center with a current of 0.25. How many turns must be there in the coil?
The area of hysteresis loop of a material isequivalent to 250 Joule. When 10kg material is magnetised by an alternatingfield of 50Hz then energy lost in one hour will be if the density of materialis 7.5 $$gm/c{m^3}$$
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