k Electromagnetic wave having magnetic field B(x, y, z,t) = B. sin [(x+y) √ + ok where k is wave vector. Calculate its electric field. k CB, sin [(x + y) +++ ox](²+²) cot (b) CB, sin[(x + y) * + ex ](¹+²) (c) cB, sin [(x+y)+ (a) cB + ex(i) (d) cB sin (x+y). [(x + y) √ / 2 + + cot
k Electromagnetic wave having magnetic field B(x, y, z,t) = B. sin [(x+y) √ + ok where k is wave vector. Calculate its electric field. k CB, sin [(x + y) +++ ox](²+²) cot (b) CB, sin[(x + y) * + ex ](¹+²) (c) cB, sin [(x+y)+ (a) cB + ex(i) (d) cB sin (x+y). [(x + y) √ / 2 + + cot
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![Electromagnetic wave having magnetic field B(x, y, z,t) = B sin (x+y)-
where k is wave vector. Calculate its electric field.
k
(a) cB, sin [(x + y) + cx
√√2
√2
k
(b) CB, sin [(x + y) + cx (2+1)
√2
k
(c) CB, sin [(x + y) +++ x] (7)
=
(d) CB, sin [(x + y)
cB
+
+ x3
k
+ cot k](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F485753a6-a968-448b-bb83-bbb3ae8e77b5%2F32056039-713d-47bf-aad3-2a712493b8db%2F7tyw2wd_processed.png&w=3840&q=75)
Transcribed Image Text:Electromagnetic wave having magnetic field B(x, y, z,t) = B sin (x+y)-
where k is wave vector. Calculate its electric field.
k
(a) cB, sin [(x + y) + cx
√√2
√2
k
(b) CB, sin [(x + y) + cx (2+1)
√2
k
(c) CB, sin [(x + y) +++ x] (7)
=
(d) CB, sin [(x + y)
cB
+
+ x3
k
+ cot k
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