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WAVE THEORYCOMBINATlON OF WAVE MOTIONS
REPRESENTATION OF LIGHT BY WAVE TRAINS OF FINITE
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aberration Airy disc amplitude analyser angle aperture axis beam of light calcite calculated centimetres centre chromatic colour components constant corresponding crystal curvature curve deﬁned deﬁnite detector diffraction diﬁerence diﬂerence direction displacement distance eﬁect emitted equal equation etalon exit pupil experiment Fabry-Pérot etalon ﬁeld ﬁlm ﬁnite ﬁrst ﬂux Fourier frequency Fresnel fringes function given gives glass grating illumination incident interference interferometer lens lenses lines magniﬁcation maxima maximum measured medium method microscope millimetre mirror normal object observer obtained optical path difference phase difference plane wave plane-polarized plate polarized light prism produced proﬁle propagation radiation ratio ray optics rays Reference reﬂection refractive index relative energy represented resultant rotation screen shown in ﬁg simple harmonic simple harmonic motions slit spatial frequencies spectra spectrum spherical telescope thickness transmitted variation vector velocity of light wave surface wave trains wavefront wavelength zero zone