According to Curie's law in magnetism, the correct relation is $(\mathrm{M}=$ magnetization in paramagnetic…

According to Curie's law in magnetism, the correct relation is $(\mathrm{M}=$ magnetization in paramagnetic sample, $\mathrm{B}=$ applied magnetic field, $\mathrm{T}=$ absolute temperature of the material, $\mathrm{C}=$ curie's constant $)$
  1. $M=\frac{T}{C B}$
  2. $M=\frac{C B}{T}$
  3. $\mathrm{C}=\frac{\mathrm{MB}}{\mathrm{T}}$
  4. $\mathrm{C}=\frac{\mathrm{T}^2}{\mathrm{MB}}$

Solution

If \(\mathrm{M}_{\mathrm{z}}=\) magnetization of a paramagnetic sample, B external magnetic field, \(\mathrm{T}=\) absolute temperature, \(\mathrm{C}=\) curie constant then according to Curie's law in magnetism, the correct relation is \(M_z=\frac{C B}{T}\).

Asked in: MHT CET 2023 (10 May Shift 1)

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