Earth’s magnetic field approximates that of a dipole with a field of 6×10−5 T at the North Pole. Over London, the magnetic flux density is 5×10−5 T and the angle of dip (or magnetic inclination) is 66◦. The wing span of a jumbo jet is 80 m, its length 60 m, and its depth 8 m. Estimate the potential differences that could be detected over the surface of the jet when it flies horizontally at 720 km/h: a) over the North Pole, b) northwards over the Equator, c) eastwards along the Equator,
Earth’s magnetic field approximates that of a dipole with a field of 6×10−5 T at the North Pole. Over London, the magnetic flux density is 5×10−5 T and the angle of dip (or magnetic inclination) is 66◦. The wing span of a jumbo jet is 80 m, its length 60 m, and its depth 8 m. Estimate the potential differences that could be detected over the surface of the jet when it flies horizontally at 720 km/h: a) over the North Pole, b) northwards over the Equator, c) eastwards along the Equator,
College Physics
11th Edition
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Chapter1: Units, Trigonometry. And Vectors
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The Earth’s magnetic field approximates that of a dipole with a field of 6×10−5 T at the North Pole. Over London, the magnetic flux density is 5×10−5 T and the angle of dip (or magnetic inclination) is 66◦.
The wing span of a jumbo jet is 80 m, its length 60 m, and its depth 8 m. Estimate the potential differences that could be detected over the surface of the jet when it flies horizontally at 720 km/h:
a) over the North Pole,
b) northwards over the Equator,
c) eastwards along the Equator,
d) northwest over London.
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