In a single-slit diffraction experiment, there is a minimum of intensity for orange light at 600 nm and a minimum of intensity for violet light at 400 nm at the same angle of 2 x 103 rad. 5. What is the minimum possible slit width? 6. A spy satellite orbiting at 160 km above the Earth's surface has a lens that can resolve objects on the ground as small as 20 cm. What is the effective diameter of the lens as determined by diffraction consideration alone? Assume 2 = 550 nm.

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5. In a single-slit diffraction experiment, there is a minimum of intensity for orange light at 600 nm and a minimum of intensity for violet light at 400 nm at the same angle of 2 × 10−3 rad. What is the minimum possible slit width?

6. A spy satellite orbiting at 160 km above the Earth’s surface has a lens that can resolve objects on the ground as small as 20 cm. What is the effective diameter of the lens as determined by diffraction consideration alone? Assume λ = 550 nm.

In a single-slit diffraction experiment, there is a minimum of intensity for orange light at 600
nm and a minimum of intensity for violet light at 400 nm at the same angle of 2 x 103 rad.
5.
What is the minimum possible slit width?
6. A spy satellite orbiting at 160 km above the Earth's surface has a lens that can resolve
objects on the ground as small as 20 cm. What is the effective diameter of the lens as
determined by diffraction consideration alone? Assume 2 = 550 nm.
Transcribed Image Text:In a single-slit diffraction experiment, there is a minimum of intensity for orange light at 600 nm and a minimum of intensity for violet light at 400 nm at the same angle of 2 x 103 rad. 5. What is the minimum possible slit width? 6. A spy satellite orbiting at 160 km above the Earth's surface has a lens that can resolve objects on the ground as small as 20 cm. What is the effective diameter of the lens as determined by diffraction consideration alone? Assume 2 = 550 nm.
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