$A$ charged particle of charge '$q$' is accelerated by a potential difference '$V$' and enters a region of uniform magnetic field '$B$' at right angles to the direction of the field. The charged particle completes a semicircle of radius '$r$' inside the magnetic field. The mass of the charged particle is

  • A
    $\frac{r^2 q B^2}{2 V}$
  • B
    $\frac{r^2 q^2 B^2}{\sqrt{2} V}$
  • C
    $\frac{q r B}{2 V}$
  • D
    $\frac{q^2 r^2 B^2}{V}$

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$A$ positive,singly ionized atom of mass number $A_M$ is accelerated from rest by a voltage $V = 192 \text{ V}$. Thereafter,it enters a rectangular region of width $w$ with a magnetic field $B_0 = 0.1 \hat{k} \text{ T}$,as shown in the figure. The ion finally hits a detector at a distance $x$ below its starting trajectory.
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Which of the following option$(s)$ is(are) correct?
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