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Physics · Ch 9 — Ray Optics and Optical Instruments

Summary

Summary

  • Reflection of Light: Laws: incident, reflected, and normal lie in same plane; ∠i=∠r\angle i = \angle r. For a plane mirror, image is virtual, erect, same size, and laterally inverted.
  • Spherical Mirrors: Focal length f=R2f = \frac{R}{2} (concave: ff negative, convex: ff positive). Mirror equation: 1v+1u=1f\frac{1}{v} + \frac{1}{u} = \frac{1}{f}. Magnification m=−vum = -\frac{v}{u}.
  • Refraction: Snell’s law: n1sin⁡i=n2sin⁡rn_1 \sin i = n_2 \sin r. Absolute refractive index n=cvn = \frac{c}{v}. Relative refractive index n21=n2n1n_{21} = \frac{n_2}{n_1}.
  • Lens Maker’s Formula: 1f=(n−1)(1R1−1R2)\frac{1}{f} = (n-1)\left(\frac{1}{R_1} - \frac{1}{R_2}\right) for a thin lens in air. Lens equation: 1v−1u=1f\frac{1}{v} - \frac{1}{u} = \frac{1}{f}. Magnification m=vum = \frac{v}{u}.
  • Power of Lens: P=1fP = \frac{1}{f} (in metres), unit dioptre (D). For combination: P=P1+P2P = P_1 + P_2.
  • Total Internal Reflection: Occurs when light travels from denser to rarer medium and i>ici > i_c, where sin⁡ic=n2n1\sin i_c = \frac{n_2}{n_1}. Applications: optical fibres, mirages.
  • Optical Instruments: Simple microscope: M=DfM = \frac{D}{f} (final image at near point). Compound microscope: M=Lfo⋅DfeM = \frac{L}{f_o} \cdot \frac{D}{f_e}. Astronomical telescope (normal adjustment): M=fofeM = \frac{f_o}{f_e}, length L=fo+feL = f_o + f_e. …