College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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- A lightning bolt may carry a current of 1.00 × 104 A for a short time. What is the resulting magnetic field 110 m from the bolt? Suppose that the bolt extends far above and below the point of observation. uTarrow_forwardA very wire is carrying a current that is directed along the positive x axis. What is the direction of the magnetic field at a point a distance "d" along the -y axis? a) in the +x direction b) -x direction c) +y direction d) -y direction e) +z direction f) -z directionarrow_forwardA lightning bolt may carry a current of 1.00 104 A for a short time. What is the resulting magnetic field 180 m from the bolt? Suppose that the bolt extends far above and below the point of observation. ?Tarrow_forward
- A wire carries an I, = 7.05-A current along the x-axis, and another wire carries an I, = 5.35-A current along the y-axis, as shown in the figure below. What is the magnetic field at point P, located at x = 4.00 m, y = 3.00 m? magnitude HT direction Select--- y (4.00, 3.00) marrow_forwardThe vector velocity will always be to the right and the magnetic field will be into the screen or out of the screen. The angle is 90 degrees. Determine the magnitude of the magnetic force and the radius of the curvature. Will the charge be deflected to the left, or to the right or not at all when it enters the magnetic field? Strength of magnetic Field (B): 6.0T Mass of charge (m): 5.0x10-25 kg Charge (q): 4.0 x 10-16 C Velocity (v): 5.0 x 106 m/sarrow_forwardI2 Four long, parallel wires are located at the corners of a square of side a = 20 cm, as shown in the figure above, where I = 8 A, I2 = 3 A, I3 = 8 A, I4 = 1 A. Find: a) the resultant magnetic field at the center of the square: Î+ j+ k) T. b) the force on an electron moving at 5 x 10° i m/s as it passes the center: it j+ k) Narrow_forward
- A wire carries an I1 = 7.15-A current along the x-axis, and another wire carries an I2 = 5.20-A current along the y-axis, as shown in the figure below. What is the magnetic field at point P, located at x = 4.00 m, y = 3.00 m? magnitude µT direction ---Select--- +x −x +y −y into the page out of the page Two current-carrying wires lie along the axes in the x y coordinate plane. The wire along the x-axis carries current I1 in the +x-direction and lies on top of the wire along the y-axis, which carries current I2 in the +y-direction. Point P is in the first quadrant at (4.00, 3.00) m.arrow_forwardTwo long, straight, parallel wires separated by a distance d carry currents in opposite directions as shown in the figure. The bottom wire carries a current of 6.0 A. The top wire carries a current of 18 A. Point C is at the midpoint between the wires. 6.0 A C 11a. Determine the magnitude of the magnetic field at point C if d = 0.10 m. A) 2.4 x 10-5 T B) 4.8 x 10-5 T C) 9.6 x 10-5 T D) 1.1 x 104 T E) 1.4 x 104 T 11b. What is the direction of the magnetic field at the point C? A) to the left of the page B) to the right of the page C) toward the bottom of the page D) into the plane of the page E) out the plane of the pagearrow_forwardA wire carries an I1 = 7.45-A current along the x-axis, and another wire carries an I2 = 5.00-A current along the y-axis, as shown in the figure below. What is the magnetic field at point P, located at x = 4.00 m, y = 3.00 m? magnitude Use the expression for the magnetic field around a current-carrying wire to find the magnitude and direction of the magnetic field contribution from each of the two currents. µT direction Two current-carrying wires lie along the axes in the x y coordinate plane. The wire along the x-axis carries current I1 in the +x-direction and lies on top of the wire along the y-axis, which carries current I2 in the +y-direction. Point P is in the first quadrant at (4.00, 3.00) m.arrow_forward
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