One long wire lies along an x axis and carries a current of 58 A in the positive x direction. A second long wire is perpendicular to the xy plane, passes through the point (0, 7.2 m, 0), and carries a current of 66 A in the positive z direction. What is the magnitude of the resulting magnetic field at the point (0, 1.3 m, 0)? Number i Units
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- A particle of mass 5.4 × 10-8 kg and charge +5.9 µC is traveling due east. It enters perpendicularly a magnetic field whose magnitude is 3.5 T. After entering the field, the particle completes one-half of a circle and exits the field traveling due west. How much time does the particle spend in the magnetic field? Number i UnitsTwo long wires are oriented so that they are perpendicular to each other. At their closest, they are 20.0 cm apart (see the figure(Figure 1)). Figure Part A B = Submit B = ? 10.0 cm Dr 17 ΑΣΦ IT=2 10.0 cm = 20.0 A Bottom wire Request Answer What is the magnitude of the magnetic field at a point midway between them if the top one carries a current of 20.0 A and the bottom one carries 12.0 A? ?= A very long wire carries an i₁ 4 A current along the x axis and another long wire carries an i2 = 9.5 A current along the y axis. What is the magnetic field at point P located at a = 7.9 m and b = 3.8 m? Use out of the page as the positive direction. y i₂ a The magnetic field at P, B = i₁ P b Units HT X
- A particle of mass 8.1 × 10-8 kg and charge +5.4 µC is traveling due east. It enters perpendicularly a magnetic field whose magnitude is 3.5 T. After entering the field, the particle completes one-half of a circle and exits the field traveling due west. How much time does the particle spend in the magnetic field? Number i UnitsA particle of mass 7.7 x 10-8 kg and charge +10 µC is traveling due east. It enters perpendicularly a magnetic field whose magnitude is 4.3 T. After entering the field, the particle completes one-half of a circle and exits the field traveling due west. How much time does the particle spend in the magnetic field? Number i UnitsEach of two long straight parallel wires 8 cm apart carries a current of 125 A. The figure shows a cross section, with the wires running perpendicular to the page and point P lying on the perpendicular bisector of the line between the wires. Find the magnitude and direction of the magnetic field at P when the current in the left-hand wire is out of the page and the current in the right-hand wire is into the page. What is the magnitude of B? What is the value of By? What is the value of Bz?