The magnetic susceptibility of any paramagnetic material changes with absolute temperature $T$ as

  • A
    Directly proportional to $T$
  • B
    Remains constant
  • C
    Inversely proportional to $T$
  • D
    Exponentially decaying with $T$

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

$A$ magnetizing field of $100 \,A/m$ produces a magnetic flux of $2.4 \times 10^{-5} \,Wb$ in an iron bar of cross-sectional area $0.3 \,cm^2$. The magnetic permeability of the iron bar in the $SI$ unit is

The relative permeability of iron is $2000$. Its absolute permeability in $SI$ units will be (given $\frac{\mu_0}{4 \pi} = 10^{-7} \text{ SI units}$):

If the magnetizing field on a ferromagnetic material is increased,its permeability

The dimensions $[MLT^{-2}A^{-2}]$ belong to:

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