282458
A light beam parallel to axis is incident on the system of four convex lenses \(A, B, C\) and \(D\). Focal lengths of \(A, B, C\) and \(D\) are \(30 \mathrm{~cm}, 10\) \(\mathrm{cm}, 30 \mathrm{~cm}\) and \(10 \mathrm{~cm}\), respectively as shown. Here, fixed distance \(B C=20 \mathrm{~cm}\). What should be the distance between the lens \(A\) and lens \(D\) so that after refractions, rays will be parallel to axis in regions I, III and V?

282458
A light beam parallel to axis is incident on the system of four convex lenses \(A, B, C\) and \(D\). Focal lengths of \(A, B, C\) and \(D\) are \(30 \mathrm{~cm}, 10\) \(\mathrm{cm}, 30 \mathrm{~cm}\) and \(10 \mathrm{~cm}\), respectively as shown. Here, fixed distance \(B C=20 \mathrm{~cm}\). What should be the distance between the lens \(A\) and lens \(D\) so that after refractions, rays will be parallel to axis in regions I, III and V?

282458
A light beam parallel to axis is incident on the system of four convex lenses \(A, B, C\) and \(D\). Focal lengths of \(A, B, C\) and \(D\) are \(30 \mathrm{~cm}, 10\) \(\mathrm{cm}, 30 \mathrm{~cm}\) and \(10 \mathrm{~cm}\), respectively as shown. Here, fixed distance \(B C=20 \mathrm{~cm}\). What should be the distance between the lens \(A\) and lens \(D\) so that after refractions, rays will be parallel to axis in regions I, III and V?

282458
A light beam parallel to axis is incident on the system of four convex lenses \(A, B, C\) and \(D\). Focal lengths of \(A, B, C\) and \(D\) are \(30 \mathrm{~cm}, 10\) \(\mathrm{cm}, 30 \mathrm{~cm}\) and \(10 \mathrm{~cm}\), respectively as shown. Here, fixed distance \(B C=20 \mathrm{~cm}\). What should be the distance between the lens \(A\) and lens \(D\) so that after refractions, rays will be parallel to axis in regions I, III and V?
