A horizontal power line of length 49 m carries a current of 2.1 kA as shown in the figure below. Earth's magnetic field at this location has a magnitude equal to 5.0 x 10-5T and makes an angle of 65⁰ with the power line. Find the magnitude and direction of the magnetic force on the power line. magnitude direction ---Select--- N
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- A proton moves perpendicular to a uniform magnetic field B at a speed of 2.10 x 10' m/s and experiences an acceleration of 1.90 x 1013 m/s in the positive x-direction when its velocity is in the positive z-direction. Determine the magnitude and direction of the field. magnitude direction ---Select--- vA wire carries an I, = 7.35-A current along the x-axis, and another wire carries an I, = 5.95-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--- y (4.00, 3.00) mA long straight wire length 6.5 metres has a current of 3.5 amps flowing through it. The wire is in an external magnetic field of 16.2 mT. Calculate the magnitude of the force on the wire in Newtons, to 2 significant figures
- Two long, straight wires are separated by 0.12 m. The wires carry currents of 3.0 A in opposite directions, as the drawing indicates. 0.030 m 0.120 m 0.060 m (a) Find the magnitude of the net magnetic fies at the point A. (b) Find the magnitude of the net magnetic field at the point B. T. Additional Materials O eBook 1321 MAR 17 étv MacBook Air 80 DII esc F1 F2 F3 F4 F5 F6 F7 F8 ! @ #3 $ & * 2 3 4 * 00 < (OA 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.Problem 3: Charged particles enter magnetic fields shown in the figures below. Describe in words or sketch a clear explanation of: a) the force on the charged particles after they enter these magnetic fields, and b) the path these particles follow after they enter their respective magnetic fields. (а) (b) x x x Xta X
- Write a word problem with the picture below. You can pick your own numbers and find the radius or the distance of the helical coil or the electric force or magnetic force.Magnetic Field in a Current Loop You have a current loop with 21.00 loops. You measure the magnetic field at the center and find a result of 6.60 µT. The current in the loops (each individual wire) is 1.780 A. What is the radius of the loop? Your Answer: Answer unitsHi please help: The long, thin wire shown below is in a region of constant magnitude field B. The wire carries a current of 6.2 A and is oriented at an angle of 7.5 degrees to the direction of the magnetic field. A) If the magnetic force exerted on this wire per meter is 3.1 x 10^-2 N, what is the magnitude of the magnetic field? Express answer using two significant figures. B=_____ mT
- Magnetic Field in a Toroid You have a toroid with 21.00 loops and a current 0.560 A. You measure the magnetic field at a distance r from the center of the toroid and find a result of 7.30 UT. What is the value of r (distance from the center of the toroid)? Your Answer: Answer unitsA proton at point A has a speed of V=1.0x106 m/s and d = 25 cm. Find the magnitude of the magnetic field that will cause the proton to move along a circular path from A to B. (T) A(+ d