A 30 A current flows through the wire shown. What is the magnitude of the magnetic field (in T) due to a 0.4 mm segment of wire as measured at the following points? (a) point A T (b) point B T Submit Answer A 7 cm B 6 cm
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- Find the magnetic field at the center of a circular current carrying wire loop positioned in the xy plane. The radius of the loop is R, the current is counterclockwise. The magnitude of the magnetic field is ....Orl = 8 Use multiplication sign *. The magnetic field points in the . .direction. Answer 1: (You left this blank) Answer 2: (You left this blank)Find the magnitude and direction of the magnetic field at point A. Tips on next page. Keep/truncate to 4 sig figs on each step. X= 1.0cm I=2.0A × 1=2.0A 1=2.0Asuperposition of mag field 1
- Don't Use Chat GPT Will Upvote And Give Handwritten Solution PleaseEXERCISE A uniform magnetic field directed along the x-axis changes with time according to B = (0.02t² + 4.50) T, where t is in seconds. The field is confined to a circular beam of radius 1.80 cm. What is the magnitude of the electric field (in N/C) at a point 1.40 cm measured perpendicular from the x-axis when t = 2.00 s? Hint 0.00056 N/C Need Help? Read ItGiven the two charged particles shown in the figure below, find the electric field at the origin. (Let q₁ = -30.00 nC and 92= 7.00 nC. Express your answer in vector form.) 88521.16i + 62510.84j N/C -4 92 -2 X y (cm) 91 4 x (cm)
- Don't Use Chat GPT Will Upvote And Give Handwritten Solution PleaseThree charged particles are at the corners of an equilateral triangle as shown in the figure below. (Let q = 2.00 μc, and L = 7.00 με 60.0° L 0.650 m.) q -4.00 μC x (a) Calculate the electric field at the position of charge q due to the 7.00-μC and -4.00-μC charges. -10636.7 Once you calculate the magnitude of the field contribution from each charge you need to add these as vectors. KN/CI + 128963 Think carefully about the direction of the field due to the 7.00-μC charge. KN/C ĵ (b) Use your answer to part (a) to determine the force on charge q. -21.3 If you know the electric field at a particular point, how do you find the force that acts on a charge at that point? mN I + 257.9 Check units carefully. Note that the field in part (a) is given in KN/J and the force in this part is given in mN. mN ĵ ×3
- In the figure below, a long circular pipe with outside radius R = 2.38 cm carries a (uniformly distributed) current i- 9.86 mA into the page. A wire runs parallel to the pipe at a distance of 3.00R from center to center. Find the (a) magnitude and (b) direction (into or out of the page) of the current in the wire such that the ratio of the magnitude of the net magnetic field at point P to the magnitude of the net magnetic field at the center of the pipe is 2.48, but it has the opposite direction. (a) Number Units (b) Wire O O PipeDon't Use Chat GPT Will Upvote And Give Handwritten Solution PleaseDon't Use Chat GPT Will Upvote