Physic Labs

Problem 3

On an optical bench, a thin converging lens of focal length f=10.0 cmf=10.0\,\mathrm{cm} is used with an object of height ho=2.00 cmh_o=2.00\,\mathrm{cm} placed on the principal axis, initially at distance u=30.0 cmu=30.0\,\mathrm{cm}. Work in air and in the paraxial approximation. For a real object take u>0u>0; a real image has v>0v>0. Define transverse magnification by M=hi/ho=−v/uM=h_i/h_o=-v/u. (a) Find the image distance and magnification, and state whether the image is real or virtual and upright or inverted. (b) Find the image height. (c) Move the object to u=15.0 cmu=15.0\,\mathrm{cm} and repeat the position, magnification, and image-character determination, then compare the two placements.
v=(1f−1u)−1=15.0 cm(u=30.0 cm)v=\left(\frac1f-\frac1u\right)^{-1}=15.0\,\mathrm{cm}\quad(u=30.0\,\mathrm{cm})
problems.proof.analysis

Solving for vv gives v=fu/(u−f)v=fu/(u-f). Since u=3fu=3f, v=1.5f=15.0 cm>0v=1.5f=15.0\,\mathrm{cm}>0, so the image is real on the far side of the lens.