Let $v_{n}$ and $E_{n}$ be the respective speed and energy of an electron in the $n$th orbit of radius $r_{n}$,in a hydrogen atom,as predicted by Bohr's model. Then:

  • A
    plot of $\frac{E_{n} r_{n}}{E_{1} r_{1}}$ as a function of $n$ is a straight line of slope $0$
  • B
    plot of $\frac{r_{n} v_{n}}{r_{1} v_{1}}$ as a function of $n$ is a straight line of slope $1$
  • C
    plot of $\ln \left(\frac{r_{n}}{r_{1}}\right)$ as a function of $\ln (n)$ is a straight line of slope $2$
  • D
    plot of $\ln \left(\frac{r_{n} E_{1}}{E_{n} r_{1}}\right)$ as a function of $\ln (n)$ is a straight line of slope $4$

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Assuming the atom in the ground state,the expression for the magnetic field at a point (nucleus) in a hydrogen atom due to the circular motion of the electron is [$\mu_{0} =$ permeability of free space,$\epsilon_{0} =$ permittivity of free space,$m =$ mass of electron,$e =$ electronic charge,$h =$ Planck's constant].

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