153123 A uniform magnetic field $\vec{B}$ is perpendicular to the plane of a circular loop of diameter $10 \mathrm{~cm}$ formed wire of diameter $2 \mathrm{~mm}$ and resistivity $2 \times 10^{-8} \Omega \mathrm{m}$. If a current of $11 \mathrm{~A}$ is to be induced in the loop then the rate at which $\vec{B}$ is to be changed is
153123 A uniform magnetic field $\vec{B}$ is perpendicular to the plane of a circular loop of diameter $10 \mathrm{~cm}$ formed wire of diameter $2 \mathrm{~mm}$ and resistivity $2 \times 10^{-8} \Omega \mathrm{m}$. If a current of $11 \mathrm{~A}$ is to be induced in the loop then the rate at which $\vec{B}$ is to be changed is
153123 A uniform magnetic field $\vec{B}$ is perpendicular to the plane of a circular loop of diameter $10 \mathrm{~cm}$ formed wire of diameter $2 \mathrm{~mm}$ and resistivity $2 \times 10^{-8} \Omega \mathrm{m}$. If a current of $11 \mathrm{~A}$ is to be induced in the loop then the rate at which $\vec{B}$ is to be changed is
153123 A uniform magnetic field $\vec{B}$ is perpendicular to the plane of a circular loop of diameter $10 \mathrm{~cm}$ formed wire of diameter $2 \mathrm{~mm}$ and resistivity $2 \times 10^{-8} \Omega \mathrm{m}$. If a current of $11 \mathrm{~A}$ is to be induced in the loop then the rate at which $\vec{B}$ is to be changed is
153123 A uniform magnetic field $\vec{B}$ is perpendicular to the plane of a circular loop of diameter $10 \mathrm{~cm}$ formed wire of diameter $2 \mathrm{~mm}$ and resistivity $2 \times 10^{-8} \Omega \mathrm{m}$. If a current of $11 \mathrm{~A}$ is to be induced in the loop then the rate at which $\vec{B}$ is to be changed is