Geometric, Physical, and Visual Optics E-Book, 1st Edition
A basic optics textbook that integrates relevant visual and ophthalmic optics material with basic geometric and physical optics. Dr. Keating's book uses the vergence approach to optics as well as the wavefront approach to vergence as an aid to developing optics intuition.
ISBNコード :
9781483289465
出版日 :
28-01-2015
A basic optics textbook that integrates relevant visual and ophthalmic optics material with basic geometric and physical optics. Dr. Keating's book uses the vergence approach to optics as well as the wavefront approach to vergence as an aid to developing optics intuition.
特長
* - Basic textbook on the integrated approach to geometric, physical, and introductory visual optics. * - Features a unique, early emphasis on image formation, the use of the vergence-dioptric power approach from the beginning, the relation of vergence tothe geometric properties of wavefronts, and the interchangeability of the wavefront representation with the ray representation. * - Emphasis on developing intuition and conceptual understanding so that the numbers mean something to the reader.
著者情報
By Michael P. Keating, PhD, Professor, Michigan College of Optometry, Ferris State University, Big Rapids, MI
| ISBN Number | 9781483289465 |
|---|---|
| Description Author List | By Michael P. Keating, PhD, Professor, Michigan College of Optometry, Ferris State University, Big Rapids, MI |
| Copyright Year | 1988 |
| Edition Number | 1 |
| Format | E-Book |
| Imprint | Butterworth-Heinemann |
| Page Count | 0 |
| Publication Date | 28 Jan 2015 |
| Stock Status | IN STOCK |
Optics, Light, and Vision; The Geometric Behavior of Light; Optical Objects and Images; Thin Lenses and Ray Diagrams; Thin Lens Equations; Thin Lens Eye Models; Single Spherical Refracting Interfaces; Plane Refracting Interfaces and Reduced Systems; Lenses Revisited; Reflection; The Gauss System; System Matrices; Angular Magnification; Spectacle Magnification and Relative Spectacle Magnification; Astigmatism: On Axis; Dioptric Power and Off-Axis Meridians; Prisms; Prism Properties of Lenses; Stops and Related Effects; Aberrations; Waves and Superposition; Diffraction; Scattering, Dispersion, and Polarization; Emission, Absorption, and Photons; Spatial Distribution of Optical Formulation; Appendix: Basic Matrix Algebra
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