Spatial distribution of electric field E(x) of a light beam which has a wavelength 5.0x107m coming from free space (n=1) and entering the dielectiric medium (n=1.5) at x=0 interface is shown below. Write an expression for the electric field E(x,t) of light inside the medium. (Ignore any reflection at the interface) E(X) λ=5.0x107m E₂ MM n=1 x=0 E(x,t)=? n=1.5 X
Spatial distribution of electric field E(x) of a light beam which has a wavelength 5.0x107m coming from free space (n=1) and entering the dielectiric medium (n=1.5) at x=0 interface is shown below. Write an expression for the electric field E(x,t) of light inside the medium. (Ignore any reflection at the interface) E(X) λ=5.0x107m E₂ MM n=1 x=0 E(x,t)=? n=1.5 X
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![Spatial distribution of electric field E(x) of a light beam which has a wavelength
5.0x107m coming from free space (n=1) and entering the dielectiric medium (n=1.5)
at x=0 interface is shown below. Write an expression for the electric field E(x,t) of
light inside the medium. (Ignore any reflection at the interface)
E(X)
λ=5.0x107m
E₂
MM
n=1
x=0
E(x,t)=?
n=1.5
X](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7ad6689f-337a-4336-8663-394cc219e955%2Fd89ebc86-f801-4490-a9d5-f4f3182cd889%2Foo3sa1v_processed.png&w=3840&q=75)
Transcribed Image Text:Spatial distribution of electric field E(x) of a light beam which has a wavelength
5.0x107m coming from free space (n=1) and entering the dielectiric medium (n=1.5)
at x=0 interface is shown below. Write an expression for the electric field E(x,t) of
light inside the medium. (Ignore any reflection at the interface)
E(X)
λ=5.0x107m
E₂
MM
n=1
x=0
E(x,t)=?
n=1.5
X
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