Two sources are emitting coherent, monochromatic EM waves with a wavelength of 2 cm in air. Source 1 is embedded in a material with index of refraction n1 = 1.5. The distance between source 1 and the edge of the material is 6 cm. You can assume nair = 1. At the point marked with an X, which is 9 cm from source 2 and 3 cm from the edge of the material that source 1 is embedded inside, what kind of interference will you find between EM waves from the two sources? Group of answer choices Destructive Constructive
Two sources are emitting coherent, monochromatic EM waves with a wavelength of 2 cm in air. Source 1 is embedded in a material with index of refraction n1 = 1.5. The distance between source 1 and the edge of the material is 6 cm. You can assume nair = 1. At the point marked with an X, which is 9 cm from source 2 and 3 cm from the edge of the material that source 1 is embedded inside, what kind of interference will you find between EM waves from the two sources? Group of answer choices Destructive Constructive
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Two sources are emitting coherent, monochromatic EM waves with a wavelength of 2 cm in air.
Source 1 is embedded in a material with index of refraction n1 = 1.5. The distance between source 1 and the edge of the material is 6 cm. You can assume nair = 1.
At the point marked with an X, which is 9 cm from source 2 and 3 cm from the edge of the material that source 1 is embedded inside, what kind of interference will you find between EM waves from the two sources?
Group of answer choices
Destructive
Constructive
![nair
n1
EM wave source 2
EM wave source 1
6 cm
3 ст
9 cm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F36382837-f65c-4dbc-8752-ad5c6465de9c%2Ff6f9ff2c-d0fe-4672-8fa2-9b475482be17%2Fhpyi4eg_processed.png&w=3840&q=75)
Transcribed Image Text:nair
n1
EM wave source 2
EM wave source 1
6 cm
3 ст
9 cm
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