155584 A beam of light travelling along $\mathrm{X}$-axis is described by the electric field $E Y=600 \frac{\mathrm{V}}{\mathrm{m}}$. $\sin \omega\left(t-\frac{x}{c}\right)$. The maximum magnetic force on a charge $q=2 e$, moving along $Y$-axis with the speed of $3 \times 10^{8} \mathrm{~m} / \mathrm{s}$ is
155584 A beam of light travelling along $\mathrm{X}$-axis is described by the electric field $E Y=600 \frac{\mathrm{V}}{\mathrm{m}}$. $\sin \omega\left(t-\frac{x}{c}\right)$. The maximum magnetic force on a charge $q=2 e$, moving along $Y$-axis with the speed of $3 \times 10^{8} \mathrm{~m} / \mathrm{s}$ is
155584 A beam of light travelling along $\mathrm{X}$-axis is described by the electric field $E Y=600 \frac{\mathrm{V}}{\mathrm{m}}$. $\sin \omega\left(t-\frac{x}{c}\right)$. The maximum magnetic force on a charge $q=2 e$, moving along $Y$-axis with the speed of $3 \times 10^{8} \mathrm{~m} / \mathrm{s}$ is
155584 A beam of light travelling along $\mathrm{X}$-axis is described by the electric field $E Y=600 \frac{\mathrm{V}}{\mathrm{m}}$. $\sin \omega\left(t-\frac{x}{c}\right)$. The maximum magnetic force on a charge $q=2 e$, moving along $Y$-axis with the speed of $3 \times 10^{8} \mathrm{~m} / \mathrm{s}$ is