358471 A square, a circular and an elliptical loop, all are in the \((x - y)\) plane, are moving out of a uniform magnetic field with a constant velocity \(\vec{v}=\hat{i}\). The magnetic field is directed along the negative \(z\) axis direction. The induced emf, during the passage of these loops, out of the field region, will remain constant for
358472 A jet plane having a wing - span of \(25\;\,m\) is traveling horizontally towards east with a speed of \(3600\;\,km/hour\). If the Earth's magnetic field at the location is \(4 \times {10^{ - 4}}\;T\) and the angle of dip is \(30^{\circ}\), then the potential difference between the ends of the wing is
358471 A square, a circular and an elliptical loop, all are in the \((x - y)\) plane, are moving out of a uniform magnetic field with a constant velocity \(\vec{v}=\hat{i}\). The magnetic field is directed along the negative \(z\) axis direction. The induced emf, during the passage of these loops, out of the field region, will remain constant for
358472 A jet plane having a wing - span of \(25\;\,m\) is traveling horizontally towards east with a speed of \(3600\;\,km/hour\). If the Earth's magnetic field at the location is \(4 \times {10^{ - 4}}\;T\) and the angle of dip is \(30^{\circ}\), then the potential difference between the ends of the wing is
358471 A square, a circular and an elliptical loop, all are in the \((x - y)\) plane, are moving out of a uniform magnetic field with a constant velocity \(\vec{v}=\hat{i}\). The magnetic field is directed along the negative \(z\) axis direction. The induced emf, during the passage of these loops, out of the field region, will remain constant for
358472 A jet plane having a wing - span of \(25\;\,m\) is traveling horizontally towards east with a speed of \(3600\;\,km/hour\). If the Earth's magnetic field at the location is \(4 \times {10^{ - 4}}\;T\) and the angle of dip is \(30^{\circ}\), then the potential difference between the ends of the wing is
358471 A square, a circular and an elliptical loop, all are in the \((x - y)\) plane, are moving out of a uniform magnetic field with a constant velocity \(\vec{v}=\hat{i}\). The magnetic field is directed along the negative \(z\) axis direction. The induced emf, during the passage of these loops, out of the field region, will remain constant for
358472 A jet plane having a wing - span of \(25\;\,m\) is traveling horizontally towards east with a speed of \(3600\;\,km/hour\). If the Earth's magnetic field at the location is \(4 \times {10^{ - 4}}\;T\) and the angle of dip is \(30^{\circ}\), then the potential difference between the ends of the wing is