Draw the hysteresis curve ($B-H$ loop) and explain it.

Vedclass pdf generator app on play store
Vedclass iOS app on app store
(N/A) The relation between $\overrightarrow{B}$ and $\overrightarrow{H}$ in ferromagnetic materials is complex. It is non-linear and depends on the magnetic history of the sample.
The figure depicts the behavior of the material through one cycle of magnetization.
$1$. Initial Magnetization: Let the material be unmagnetized initially. We place it in a solenoid and increase the current. The magnetic field $B$ in the material rises and saturates as shown by the curve $O-a$.
$2$. Retentivity: Now,decrease $H$ and reduce it to zero. At $H=0$,$B \neq 0$. This is represented by the curve $a-b$. The value of $B$ at $H=0$ is called retentivity $(B_R)$. The domains are not completely randomized even though the external field is removed.
$3$. Coercivity: Next,the current in the solenoid is reversed and slowly increased. Certain domains are flipped until the net field inside is nullified. This is represented by the curve $b-c$. The value of $H$ at $C$ is called coercivity $(H_c)$.
$4$. Saturation: As the reversed current is increased in magnitude,we once again obtain saturation,represented by the curve $c-d$.
$5$. Completion of Cycle: Next,the current is reduced (curve $d-e$) and reversed (curve $e-a$). This cycle repeats itself.
Phenomenon: The curve $O-a$ does not retrace itself as $H$ is reduced. For a given value of $H$,$B$ is not unique but depends on the previous magnetization. This phenomenon is called hysteresis,which means 'lagging behind'.

Explore More

Similar Questions

The coercivity of a small magnet is $4 \times 10^3 \ A/m$. It is placed inside a solenoid of length $1 \ m$ having $500$ turns to demagnetize it. The current that must be passed through the solenoid is .......... $A$.

Difficult
View Solution

$A$ bar magnet has a coercivity of $4 \times 10^3 \, A \, m^{-1}$. It is desired to demagnetize it by inserting it inside a solenoid $12 \, cm$ long and having $60$ turns. The current that should be sent through the solenoid is . . . . . . $A$.

The figure illustrates how $B$,the flux density,inside a sample of ferromagnetic material varies with external magnetic field $B_0$. For the sample to be suitable for making a permanent magnet,

$A$ bar magnet has a coercivity of $4 \times 10^3 \text{ A m}^{-1}$. It is placed inside a solenoid of $12 \text{ cm}$ length and $60$ turns. The current that should be passed through the solenoid to demagnetize the bar magnet is: (in $\text{ A}$)

Hysteresis loops for two magnetic materials $A$ and $B$ are given below. These materials are used to make magnets for electric generators,transformer cores,and electromagnet cores. Then it is proper to use:

Vedclass Products

For Students

Vedclass Test Series

Mock tests in real JEE/NEET style with performance analysis. 5-day free trial.

Start Free Trial
For Teachers

Exam Paper Generator

Generate Set A/B/C/D exam papers from 7.5L+ questions in 2 minutes. 3 chapters free.

Try Free
For Institutes

Online Exam Module

Live online exams with unlimited students, 360° analytics & white-label branding.

See Demo