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James A. Van Allen lab journal, September 1959-January 1961
Page 186
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(A): E vector point of view (B): H vector point of view First: (E sub x) = ((E sub 0)(sine(((w)(t))-(2pi(Z)/(lambda))))) (H sub y) = ((H sub 0)(sine(((w)(t))-(2pi(Z)/(lambda))))) (E sub 0) = ((H sub 0)/((K sub 0)(C))) = ((B sub 0)/((M sub 0)(K sub 0)([C?]))) = (C(B sub 0)) (A): E.M.F. in AB = ((b)((E sub [x? alpha?]) sub (z=0))) = ((b)(E sub 0)(sine ((w)(t)))) E.M.F. in DC = ((b)((E sub x) sub (z=a))) = ((b)(E sub 0)(sine (((w)(t))-((2pi(a))/(lambda))))) E.M.F. in AD = 0 E.M.F. in BC = 0
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(A): E vector point of view (B): H vector point of view First: (E sub x) = ((E sub 0)(sine(((w)(t))-(2pi(Z)/(lambda))))) (H sub y) = ((H sub 0)(sine(((w)(t))-(2pi(Z)/(lambda))))) (E sub 0) = ((H sub 0)/((K sub 0)(C))) = ((B sub 0)/((M sub 0)(K sub 0)([C?]))) = (C(B sub 0)) (A): E.M.F. in AB = ((b)((E sub [x? alpha?]) sub (z=0))) = ((b)(E sub 0)(sine ((w)(t)))) E.M.F. in DC = ((b)((E sub x) sub (z=a))) = ((b)(E sub 0)(sine (((w)(t))-((2pi(a))/(lambda))))) E.M.F. in AD = 0 E.M.F. in BC = 0
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