Answer:
R.P. of a compound microscope \[=\frac{2\mu \sin \theta }{\lambda }=\frac{2\mu \sin \theta \times v}{c}\] (i) When the frequency v of the incident light increases, the resolving power increases (R.P\[\propto v\]). (ii) Resolving power does not change with change in focal length of objective lens. (iii) When the aperture of the objective lens increases, the semi vertical angle \[\theta \] increases and hence the resolving power of the microscope increases.
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