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Page 1: HW9:P1web.eecs.utk.edu/~ggu1/files/ECE341_HW9Ans_Fall16.pdf · 2016. 10. 18. · parallel, conducting plates separated by a distance d. The space between the plates (a) (b) Figure
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Page 2: HW9:P1web.eecs.utk.edu/~ggu1/files/ECE341_HW9Ans_Fall16.pdf · 2016. 10. 18. · parallel, conducting plates separated by a distance d. The space between the plates (a) (b) Figure
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Page 3: HW9:P1web.eecs.utk.edu/~ggu1/files/ECE341_HW9Ans_Fall16.pdf · 2016. 10. 18. · parallel, conducting plates separated by a distance d. The space between the plates (a) (b) Figure
Page 4: HW9:P1web.eecs.utk.edu/~ggu1/files/ECE341_HW9Ans_Fall16.pdf · 2016. 10. 18. · parallel, conducting plates separated by a distance d. The space between the plates (a) (b) Figure
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Page 6: HW9:P1web.eecs.utk.edu/~ggu1/files/ECE341_HW9Ans_Fall16.pdf · 2016. 10. 18. · parallel, conducting plates separated by a distance d. The space between the plates (a) (b) Figure
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Note: This result is actually an approximation. Think: What is the condition for this approximation? What was ignored? By ignoring this, what physics do we violate?
Page 7: HW9:P1web.eecs.utk.edu/~ggu1/files/ECE341_HW9Ans_Fall16.pdf · 2016. 10. 18. · parallel, conducting plates separated by a distance d. The space between the plates (a) (b) Figure
Page 8: HW9:P1web.eecs.utk.edu/~ggu1/files/ECE341_HW9Ans_Fall16.pdf · 2016. 10. 18. · parallel, conducting plates separated by a distance d. The space between the plates (a) (b) Figure
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Page 9: HW9:P1web.eecs.utk.edu/~ggu1/files/ECE341_HW9Ans_Fall16.pdf · 2016. 10. 18. · parallel, conducting plates separated by a distance d. The space between the plates (a) (b) Figure
Page 10: HW9:P1web.eecs.utk.edu/~ggu1/files/ECE341_HW9Ans_Fall16.pdf · 2016. 10. 18. · parallel, conducting plates separated by a distance d. The space between the plates (a) (b) Figure
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Page 11: HW9:P1web.eecs.utk.edu/~ggu1/files/ECE341_HW9Ans_Fall16.pdf · 2016. 10. 18. · parallel, conducting plates separated by a distance d. The space between the plates (a) (b) Figure
Page 12: HW9:P1web.eecs.utk.edu/~ggu1/files/ECE341_HW9Ans_Fall16.pdf · 2016. 10. 18. · parallel, conducting plates separated by a distance d. The space between the plates (a) (b) Figure
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Page 13: HW9:P1web.eecs.utk.edu/~ggu1/files/ECE341_HW9Ans_Fall16.pdf · 2016. 10. 18. · parallel, conducting plates separated by a distance d. The space between the plates (a) (b) Figure
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Page 14: HW9:P1web.eecs.utk.edu/~ggu1/files/ECE341_HW9Ans_Fall16.pdf · 2016. 10. 18. · parallel, conducting plates separated by a distance d. The space between the plates (a) (b) Figure

222 CHAPTER4

z

-Q. d --·Q •P(y, z)

' I I

- -1- - - d y

-d I I -

Q. -d .... ·-Q I

Figure P4.56: (a) Image charges.

(O,d,-d). In addition, since charges exist on the conducting half plane in the +z direction, an image of this conducting half plane also appears in the -z direction. This ground plane in the x-z plane gives rise to the image charges of ..,-Q at (0, -d, d) and +Q at (0,-d,-d).

(b) Using Eq. (4.47) with N = 4,

() Q( 1 - 1 v x,y,z = 4ne Jix+y(y-d)+z(z-d)J-lix+y(y+d)+z(z-d)I

1 ' . 1 ) + lix+y(y+d) +z(z+d)l - lix+y(y-d) +z(z+d)I

~ ,:;. ( y'x' + (y-;)2 + (z-d) 2 ~ y' x2 + (y+;)2 + (z-d)2

+ y'x2 + (y+ ;)2 + (z+ d}2 - y'x2 + (y-;)2 + (z+d)2 )

= 4~e ( Jx2+y2-2yd ~z2 -2zd+2d2 1

Jx2 +y2+2yd+z2-2zd+2d2

1 + -r:=========::::;:

Jx2 + y2 + 2yd + z2+ 2zd + 2d2

- Jx2+y2-2yd~z2 +2zd+2d2) (V).

Page 15: HW9:P1web.eecs.utk.edu/~ggu1/files/ECE341_HW9Ans_Fall16.pdf · 2016. 10. 18. · parallel, conducting plates separated by a distance d. The space between the plates (a) (b) Figure