Imagine you have a circular loop of wire placed in the x-y plane. The current I = 9 A is flowing along counter – clockwise through the loop if we look from above the xy plane. Calculate the magnetic dipole moment. Assume that the radius of the loop is R = 17 cm . magnetic dipole moment Give your answer up to at least three significance digits. A · m?

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Chapter1: Units, Trigonometry. And Vectors
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Use the following constants if necessary. Coulomb constant, k = 8.987 × 10º N · m²/C². Vacuum permitivity, eo = 8.854 × 10-12 F/m. Magnetic
Permeability of vacuum, Ho = 12.566370614356 ×x 10-7 H/m. Magnitude of the Charge of one electron, e = -1.60217662 × 10-19 C. Mass of one
electron, me = 9.10938356 x 10-31 kg. Unless specified otherwise, each symbol carries their usual meaning. For example, µC means micro coulomb
Imagine you have a circular loop of wire placed in the x-y plane. The current I = 9 A is flowing along counter – clockwise through the loop if we
look from above the xy plane. Calculate the magnetic dipole moment. Assume that the radius of the loop is R = 17 cm.
magnetic dipole moment
Give your answer up to at least three significance digits.
A · m?
Transcribed Image Text:Use the following constants if necessary. Coulomb constant, k = 8.987 × 10º N · m²/C². Vacuum permitivity, eo = 8.854 × 10-12 F/m. Magnetic Permeability of vacuum, Ho = 12.566370614356 ×x 10-7 H/m. Magnitude of the Charge of one electron, e = -1.60217662 × 10-19 C. Mass of one electron, me = 9.10938356 x 10-31 kg. Unless specified otherwise, each symbol carries their usual meaning. For example, µC means micro coulomb Imagine you have a circular loop of wire placed in the x-y plane. The current I = 9 A is flowing along counter – clockwise through the loop if we look from above the xy plane. Calculate the magnetic dipole moment. Assume that the radius of the loop is R = 17 cm. magnetic dipole moment Give your answer up to at least three significance digits. A · m?
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