Consider two long wires with current I1 = 6.2 A and I2 = 2.2 A as shown in the figure. Let d = 0.85 m, a = 1.9 m.    Part (a)  Express the magnitude of the magnetic field at A created by current I1, BA1, in terms of I1 and d. Part (b)  What is the direction of BA1?  Part (c)  Express the magnitude of the magnetic field at A created by current I2, BA2, in terms of I2 and d.  Part (d)  What is the direction of BA2?  Part (e)  Express the total magnetic field at A created by current I1 and I2, BA, in terms of I1, I2, and d. Take out of the screen as the positive direction.

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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 Consider two long wires with current I1 = 6.2 A and I2 = 2.2 A as shown in the figure. Let d = 0.85 m, a = 1.9 m.

 

 Part (a)  Express the magnitude of the magnetic field at A created by current I1BA1, in terms of I1 and d.

Part (b)  What is the direction of BA1
Part (c)  Express the magnitude of the magnetic field at A created by current I2BA2, in terms of I2 and d
Part (d)  What is the direction of BA2
Part (e)  Express the total magnetic field at A created by current I1 and I2BA, in terms of I1I2, and d. Take out of the screen as the positive direction. 
Part (f)  Calculate the numerical value of BA in Tesla. 
Part (g)  What is the direction of BA
Part (h)  Express the magnitude of the magnetic field at B created by current I1BB1, in terms of I1 and a
Part (i)  What is the direction of BB1
Part (j)  Express the magnitude of the magnetic field at B created by current I2BB2, in terms of I2a and d
  7% Part (k)  What is the direction of BB2
  7% Part (l)  Express the total magnetic field at B created by current I1 and I2BB, in terms of I1I2a, and d. Use out of the page as the positive direction. 
Part (m)  Calculate the numerical value of BB in Tesla. 

Part (n)  What is the direction of BB
B
Transcribed Image Text:B
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