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When a Ferromagnetic Material Goes Through a Hysteresis Loop, Its Thermal Energy is Increased. Where Does this Energy Come From? - Physics

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प्रश्न

When a ferromagnetic material goes through a hysteresis loop, its thermal energy is increased. Where does this energy come from?

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उत्तर

When a ferromagnetic material is taken through the cycle of magnetisation, magnet dipoles of the material orient and reorient with time. This molecular motion within the material results in the production of heat, which increses thermal energy of material.

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अध्याय 15: Magnetic Properties of Matter - Short Answers [पृष्ठ २८५]

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एचसी वर्मा Concepts of Physics Vol. 2 [English] Class 11 and 12
अध्याय 15 Magnetic Properties of Matter
Short Answers | Q 7 | पृष्ठ २८५

संबंधित प्रश्न

The property of diamagnetism is said to be present in all materials. Then, why are some materials paramagnetic or ferromagnetic?


Can we have magnetic hysteresis in paramagnetic or diamagnetic substances?


A paramagnetic material is placed in a magnetic field. Consider the following statements:-
(A) If the magnetic field is increased, the magnetisation is increased.
(B) If the temperature is increased, the magnetisation is increased.


A paramagnetic material is kept in a magnetic field. The field is increased till the magnetisation becomes constant. If the temperature is now decreased, the magnetisation ___________ .


A ferromagnetic material is placed in an external magnetic field. The magnetic domains ______________ .


The magnetic susceptibility is negative for _____________ .


The permanent magnetic moment of the atoms of a material is zero. The material _________________ .


When a ferromagnetic material goes through a hysteresis loop, the magnetic susceptibility
(a) has a fixed value
(b) may be zero
(c) may be infinity
(d) may be negative


Assertion: The earth¢s magnetic field is due to iron present in its core.

Reason: At a high temperature magnet losses its magnetism.


The time period of oscillation of a magnet in a vibration magnetometer is 1.5 sec. The time period of oscillation of another magnet similar in size, shape and mass but having 1/4 magnetic moment than that of the 1st magnet oscillating at the same place will be ______.


Current I is flowing in a coil of area A and number of turns is N, then magnetic moment of the coil in M equal to ______.

On cutting a solenoid in half, the field lines remain ...A..., emerging from one face of the solenoid and entering into the other face. Here, A refers to ______.

A temporary magnet is made of ______.

Which of the following is not showing the essential difference between electrostatic shielding by a conducting shell and magnetostatic shielding?


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