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Q.The magnetic field in a plane electromagnetic wave is given by By=(2×10−7) T sin⁡(0.5×103z−1.5×1011t)B_y = (2\times10^{-7})\,T\ \sin(0.5\times10^{3}z - 1.5\times10^{11}t). Write the expression for the electric field. (c=3×108 ms−1)(c = 3\times10^{8}\,ms^{-1})

Manipur CohsemCOHSEM Manipur Higher Secondary Board 2020Subjective· 2mImportance★★★★★
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E0=cB0=60 V/mE_0 = cB_0 = 60\,V/m; E⃗\vec E is along xx since the wave travels along +z+z with B⃗\vec B along yy.

For a plane electromagnetic wave, E⃗\vec E, B⃗\vec B and the direction of propagation are mutually perpendicular, with E⃗×B⃗\vec E \times \vec B along the propagation direction, and the magnitudes related by

E0=c B0E_0 = c\,B_0

Here By=(2×10−7 T)sin⁡(0.5×103z−1.5×1011t)B_y = (2\times10^{-7}\,T)\sin(0.5\times10^{3}z - 1.5\times10^{11}t) - the wave travels along +z+z (from the kz−ωtkz-\omega t form) with B⃗\vec B along y^\hat y. Since x^×y^=z^\hat x \times \hat y = \hat z, the electric field must point along x^\hat x.

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