154714 A rectangular, a square, a circular and an elliptical loop, all in the $(x-y)$ plane, are moving out of a uniform magnetic field with a constant velocity, $V=\vec{v} \hat{i}$. The magnetic field is directed along the negative $\mathrm{z}$-axis direction. The induced emf, during the passage of these loops, out of the field region, will no remain constant for
154714 A rectangular, a square, a circular and an elliptical loop, all in the $(x-y)$ plane, are moving out of a uniform magnetic field with a constant velocity, $V=\vec{v} \hat{i}$. The magnetic field is directed along the negative $\mathrm{z}$-axis direction. The induced emf, during the passage of these loops, out of the field region, will no remain constant for
154714 A rectangular, a square, a circular and an elliptical loop, all in the $(x-y)$ plane, are moving out of a uniform magnetic field with a constant velocity, $V=\vec{v} \hat{i}$. The magnetic field is directed along the negative $\mathrm{z}$-axis direction. The induced emf, during the passage of these loops, out of the field region, will no remain constant for