4. The magnetic field at the center of a 1.0 cm di- ameter loop is 2.5 mT. (a) What is the current in the loop? (b) A long, straight wire carries the same current you found in part a. At what distance from the wire is the magnetic field 2.5 mT?
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- A bar magnet is inside a closed cubical box.Magnetic field lines pointing outward from the box produce positive flux, and those pointing inward produce negative magneticflux. (a) Is the total magnetic flux through the surface of the boxpositive, negative, or zero? (b) Choose the best explanation fromamong the following:I. There are more outward magnetic field lines because the magnet is inside the box.II. The magnet draws field lines inward toward itself, producingmore negative flux.III. The same number of magnetic field lines leave the box asenter it.A wire is bent in to the shape shown below. If a current of I runs through the wire, what is direction and the magnitude of the magnetic field at the center of loop? R Hol B = 2R - Oa. Hol B = 2R - Ob. Hol B = 2R d. Hol B = 1+ 2R Oe.2. A small square loop of side length a carries a clockwise current I and is placed within a non-uniform magnetic field described by the expression B = (x² + y²) 2. a. Calculate the direction and magnitude of the total force on the loop. To find the force on each segment, evaluate the integral of Idix B by integrating along x or y in the direction of current flow. Then add the four segment forces together to find the total force. b. Calculate the magnetic dipole moment of the loop. Does a ○ B(x,y) X the loop experience a torque from the magnetic field? C. Where in the xy-plane would the potential energy be at a minimum? Does the force calculated in (a) move the loop toward this location or away from this location?
- A 9-A current flows through the wire shown. What is the magnitude of the magnetic field due to a 0.7-mm segment of wire as measured at: a. point A? A 3 cm < Previous 4 cm B Hint for (a) Magnetic field at A is scientific notation. For example, to enter 3.14 x 10-12, enter "3.14E-12".) b. point B? T. (Use the "E" notation to enter your answer in Hint for (b) Magnetic field at B is scientific notation. For example, to enter 3.14 x 10-¹2, , enter "3.14E-12".) T. (Use the "E" notation to enter your answer in55. A circular loop of wire 1.0 cm in radius carries a current of 30 A. The magnetic field at the center of the loop is a. 1.9 mT b. 2.4 mT C. 3.8 mT d. 12 µT e. 48 μ.A 10-cm-radius, conducting, circular loop with 50 turns carries a current 0.80 A. What is the strength of the magnetic field at the center of the loop? O a. 250 µT O b.650 µT O c. 350 µT O d. 550 µT O e. 450 µT
- 1. A circular coil of wire consisting of 100 turns, each of radius 8.0 cm carries a current of 0.40 A. What is the magnitude of the magnetic field B at the centre of the coil?5. Consider an arc of wire carrying a current I as shown below. The angle the arc subtends at the center is p. The distance from the arc to the center is R. R ( (a) What is the direction and magnitude the magnetic field at the center of the circular arc? Ø (b) What is the direction and magnitude of the magnetic field if the arc were extended to a complete circle? خبر 6. What is the direction and magnitude the magnetic field at the center of the circular arc? RThe plane of a circular loop with radius 14 cm makes an angle 35 degrees with a uniform magnetic field of magnitude 0.1 T. a) What is the flux through the loop? Wb b) If the field reversed in direction, what is the change in flux? Wb