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050 0 0 _aQC381.2
_b.K37 2002
100 1 _aKatz, Milton,
_d1927-
_949371
245 1 0 _aIntroduction to Geometrical Optics /
_cMilton Katz.
246 3 0 _aGeometrical optics
260 _aRiver Edge, NJ :
_bWorld Scientific,
_cc2002.
300 _axiv, 313 p. :
_bill. ;
_c26 cm.
500 _a"First published in 1994 by Penumbra Publishing Co."--T.p. verso.
504 _aIncludes bibliographical references (p. 305-307) and index.
505 _aLight; Reflection at Plane Mirrors; Refraction of Light; Refraction by Planes, Plates and Prisms; Paraxial Refraction at Planes, Plates and Prisms; Refraction and Reflection at Spherical Surfaces; Thin Lenses; Rotationally Symmetrical Systems; Astigmatic Lenses; Thick Lens Systems; Stops, Pupils and Ports; Numerical Aperture, f-Number and Resolution; Magnifiers and Microscopes; Telescopes; Cameras and Projectors; Ophthalmic Instruments; Dispersion and Chromatic Aberration; Trigonometric Ray Tracing; Monochromatic Aberrations.
520 _aThis work is the culmination of 25 years of teaching Geometrical Optics. The volume is organized such that the single spherical refracting surface is the basic optical element. Spherical mirrors are treated as special cases of refraction, with the same applicable equations. Thin lens equations follow as combinations of spherical refracting surfaces while the cardinal points of the thick lens make it equivalent to a thin lens. Ultimately, one set of vergence equations are applicable to all these elements. The chapters are devoted to in-depth treatments of stops, pupils and ports; magnifiers, microscopes, telescopes, and camera lenses; ophthalmic instruments; resolving power and MTF; trigonometric ray tracing; and chromatic and monochromatic aberrations. There are over 100 worked examples, 400 homework problems and 400 illustrations.
650 0 _aGeometrical optics.
_949372
650 0 _aGeometrical optics
_vProblems, exercises, etc.
_949373
650 0 _aOphthalmic lenses.
_949374
650 0 _aOptical instruments.
_949375
942 _2lcc
_n0
_cBK
999 _c23392
_d23392