Question: #13 answer all parts a-f (7%) Problem 13: A wire on a circuit board has a length L = 4.7 mm and carries a current

#13 answer all parts a-f

#13 answer all parts a-f (7%) Problem 13: A wire on a

(7%) Problem 13: A wire on a circuit board has a length L = 4.7 mm and carries a current / = 2.41 MA in the positive y direction. A nearby circuit element generates a magnetic field in the vicinity of the wire given by B = BX i + B, j + Bz k = (-5.5 G) i+ (5.4 G) j+ (6.5 G) k Patel, Simran - simran.patel@doane.edu @theexpertta.com -tracking id: 9N69-D3-16-42-9192-40031. In accordance with Expert TA's Terms of Service. copying this information to any solutions sharing website is strictly forbidden. Doing so may result in termination of your Expert TA Account. D A 17% Part (a) Calculate the magnitude of the magnetic field, in gauss, in the vicinity of the wire due to the circuit element. B = 1 G Grade Summary Deductions 0% Potential 100% sin() cos() tan JC 7 8 9 HOME Submissions cotan() asinQ acos() B 4 5 6 Attempts remaining: 1 (100% per attempt) atan acotan( sinhO 2 3 detailed view cosh( tanh() cotanh() + O END Degrees O Radians VO CLEAR Submit Hint I give up! Hints: 0% deduction per hint. Hints remaining: 2 Feedback: 0% deduction per feedback. 4 17% Part (b) Calculate the x component of the magnetic force, in newtons, exerted on the wire by the magnetic field due to the circuit element. A 17% Part (c) Calculate the y component of the magnetic force, in newtons, exerted on the wire by the magnetic field due to the circuit element. A 17% Part (d) Calculate the z component of the magnetic force, in newtons, exerted on the wire by the magnetic field due to the circuit element. 4 17% Part (e) Calculate the magnitude of the magnetic force, in newtons, exerted on the wire by the magnetic field due to the circuit element. 4 17% Part (f) If you simply multiply the current, the length, and the magnetic field strength, ILB, in appropriate units, you will find that this results in a larger calculated force larger than the answer to Part (e). Which of the following scenarios would result in the maximum force exerted on the current carrying wire? All content @ 2023 Expert TA, LLC

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