$A$ metal sample carrying a current along $X-$ axis with density $J_x$ is subjected to a magnetic field $B_z$ (along $z-$ axis). The electric field $E_y$ developed along $Y-$ axis is directly proportional to $J_x$ as well as $B_z$. The constant of proportionality has $SI$ unit:

  • A
    $m^2/A$
  • B
    $m^3/(A \cdot s)$
  • C
    $m^2/(A \cdot s)$
  • D
    $(A \cdot s)/m^3$

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Column $I$Column $II$Column $III$
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$(IV)$ Proton with $\overrightarrow{v}=2 \frac{E_0}{B_0} \hat{x}$$(iv)$ $\overrightarrow{E}=E_0 \hat{x}$$(S)$ $\overrightarrow{B}=B_0 \hat{z}$

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$(3)$ In which case would the particle move in a straight line along the negative direction of $y$-axis (i.e., move along $-\hat{y}$)?

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