282485
A thin plano-convex lens of focal length \(f\) is split into two halves: one of the halves is shifted along the optical axis. The separation between object and image planes is \(1.8 \mathrm{~m}\). The magnification of the image formed by one of the half-lenses is 2 . If \(f\) and \(d\) be the focal-length of the lens and separation between the two halves respectively then,
282485
A thin plano-convex lens of focal length \(f\) is split into two halves: one of the halves is shifted along the optical axis. The separation between object and image planes is \(1.8 \mathrm{~m}\). The magnification of the image formed by one of the half-lenses is 2 . If \(f\) and \(d\) be the focal-length of the lens and separation between the two halves respectively then,
282485
A thin plano-convex lens of focal length \(f\) is split into two halves: one of the halves is shifted along the optical axis. The separation between object and image planes is \(1.8 \mathrm{~m}\). The magnification of the image formed by one of the half-lenses is 2 . If \(f\) and \(d\) be the focal-length of the lens and separation between the two halves respectively then,
282485
A thin plano-convex lens of focal length \(f\) is split into two halves: one of the halves is shifted along the optical axis. The separation between object and image planes is \(1.8 \mathrm{~m}\). The magnification of the image formed by one of the half-lenses is 2 . If \(f\) and \(d\) be the focal-length of the lens and separation between the two halves respectively then,
282485
A thin plano-convex lens of focal length \(f\) is split into two halves: one of the halves is shifted along the optical axis. The separation between object and image planes is \(1.8 \mathrm{~m}\). The magnification of the image formed by one of the half-lenses is 2 . If \(f\) and \(d\) be the focal-length of the lens and separation between the two halves respectively then,