$A$ solenoid has a core of a material with relative permeability $400$. The windings of the solenoid are insulated from the core and carry a current of $2 \; A$. If the number of turns is $1000$ per metre,calculate $(a) \; H$,$(b) \; M$,$(c) \; B$ and $(d)$ the magnetising current $I_m$.

Vedclass pdf generator app on play store
Vedclass iOS app on app store
(D) The magnetic field intensity $H$ is independent of the material of the core and is given by:
$H = nI = 1000 \times 2.0 = 2 \times 10^3 \; A/m$.
$(b)$ The magnetic field $B$ is given by $B = \mu_r \mu_0 H$:
$B = 400 \times (4\pi \times 10^{-7} \; T \cdot m/A) \times 2 \times 10^3 \; A/m \approx 1.0 \; T$.
$(c)$ Magnetisation $M$ is given by $M = \chi_m H = (\mu_r - 1)H$:
$M = (400 - 1) \times 2 \times 10^3 = 399 \times 2000 = 7.98 \times 10^5 \; A/m \approx 8 \times 10^5 \; A/m$.
$(d)$ The magnetising current $I_m$ is the additional current required to produce the same magnetic field $B$ in the absence of the core. The relation is $B = \mu_0 n (I + I_m)$.
Since $B = \mu_r \mu_0 n I$,we have $\mu_r \mu_0 n I = \mu_0 n (I + I_m)$,
$\mu_r I = I + I_m \implies I_m = I(\mu_r - 1)$,
$I_m = 2 \times (400 - 1) = 2 \times 399 = 798 \; A$.

Explore More

Similar Questions

$A$ magnetizing field of $2 \times 10^3 \, A/m$ produces a magnetic flux density of $8 \pi \, T$ in an iron rod. The relative permeability of the rod will be -

$A$ paramagnetic substance in the form of a cube with sides $1\, cm$ has a magnetic dipole moment of $20 \times 10^{-6}\, J/T$ when a magnetic intensity of $60 \times 10^3\, A/m$ is applied. Its magnetic susceptibility is

An iron rod is placed parallel to a magnetic field of intensity $2000 \text{ A/m}$. The magnetic flux through the rod is $6 \times 10^{-4} \text{ Wb}$ and its cross-sectional area is $3 \text{ cm}^2$. The magnetic permeability of the rod in $\text{Wb/(A} \cdot \text{m)}$ is:

$A$ Rowland ring of mean radius $15\; cm$ has $3500$ turns of wire wound on a ferromagnetic core of relative permeability $800$. What is the magnetic field $B$ (in $T$) in the core for a magnetizing current of $1.2\; A$?

$A$ solenoid having $400$ turns per metre has a core of a material with relative permeability $400$. When a current of $0.5 \ A$ is passed through it,the magnetization of the core material in $Am^{-1}$ is nearly

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