HW13.EGM4313

# HW13.EGM4313 - Page 753, problem 2: V = Ax + B V (1) =...

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Page 753, problem 2: kV x kV V kV B kV A B A kV kV V B A kV kV V B Ax V 11 54 11 6 . 5 11 54 , 11 6 . 5 10 10 10 ) 10 ( 4 . 4 4 . 4 ) 1 ( + = = = + = = + - = = - + = The complex potential is kV z kV 11 54 11 6 . 5 + (plus any arbitrary imaginary constant) Page 753, problem 3: V xy V y x V V A V B A V B V x V B Axy V 110 50 ) , ( 50 60 ) 1 , 1 ( 110 ) 0 , ( + - = - = = + = = = + = Since ( 29 2 2 2 2 y x i xy iz - + - = the complex potential is V iz V 110 25 2 + (plus any arbitrary imaginary constant) Page 753, problem 7: ( 29 ( 29 ( 29 4 ln / 200 0 ) 4 ( 200 200 1 ln ) ( V a V V V b V V b r a r V - = = = = + = ( 29 ) 4 ln( / ) ln( 1 200 ) ( r V r V - = The complex potential is ( 29 V z Ln V 200 ) 4 ln( 200 + - (plus any arbitrary imaginary constant). Page 760, problem 2: ( 29 5 5 . 7 5 , 5 . 7 20 2 10 2 ) ( + - = = = = + - = + - + - = x y T B A B A B A B x y A T

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The complex potential is ( 29 5 5 . 7 5 . 7 5 5 . 7 5 . 7 + + - = + + - z i iz z (plus any arbitrary
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## This note was uploaded on 09/05/2011 for the course EGM 4313 taught by Professor Mei during the Spring '08 term at University of Florida.

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HW13.EGM4313 - Page 753, problem 2: V = Ax + B V (1) =...

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