Problems in Optics
This collection of problems and accompanying solutions provide the reader with a full introduction to physical optics. The subject coverage is fairly traditional, with chapters on interference and diffraction, and there is a general emphasis on spectroscopy.
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Youngs Experiment Achromatic Fringes
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absorption amplitude angle angular application Assume atoms axes axis beam becomes bright Calculate centre coefficient components Consider constant corresponding Determine difference diffraction direction dispersion distance distribution effect electric electron emitted energy equal equation expression face factor field figure finds flux frequency fringes function given gives grating ground hence illumination incident integral intensity interference length levels light limit linear mass maximum mean mirror molecule monochromatic necessary normal Note object observed obtained optic oscillator parallel passing path period phase placed plane plate polarization position potential PROBLEM pupil radiation rays reflection relative represents respect result rings rotation screen separation Show slit SOLUTION spacing spectra spectrum surface taking term thickness transition variation velocity vibration wave wavelength width write written zero