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Q.Explain construction and working of compound microscope with diagram and find expression for its magnifying power when final image is formed –

(i) at infinity.
(ii) at least distance of distinct vision.
Uttarakhand UbseUttarakhand Board Intermediate (Class 12) 2018Subjective· 5mImportance★★★★★
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Two convex lenses: objective gives a real magnified image, eyepiece magnifies it further. M=Lfo⋅DfeM=\dfrac{L}{f_o}\cdot\dfrac{D}{f_e} (image at infinity) or M=Lfo(1+Dfe)M=\dfrac{L}{f_o}\left(1+\dfrac{D}{f_e}\right) (image at DD).

Ray diagram for image formation in a compound microscope, used to derive its magnifying power.
Ray diagram for image formation in a compound microscope, used to derive its magnifying power.

Construction. A compound microscope has two converging (convex) lenses mounted at the ends of a tube: the objective (small aperture, short focal length fof_o) faces the object, and the eyepiece (larger focal length fef_e) faces the eye. Their separation can be adjusted.

Working. The object ABAB is placed just beyond the objective's focus fof_o. The objective forms a real, inverted, magnified image A′B′A'B' inside the tube. This image lies within the focal length of the eyepiece, which then acts as a simple magnifier and produces a virtual, magnified final image A′′B′′A''B'' (inverted relative to the object). (Ray diagram: object beyond FoF_o → real image A′B′A'B' by objective → eyepiece forms enlarged virtual image seen by the eye.)

Magnifying power. M=mo×meM = m_o\times m_e, where mom_o is the linear magnification of the objective and mem_e that of the eyepiece. With LL the tube length (distance between the lenses, taken ≈\approx image distance for objective) and object near fof_o, mo≈L/fom_o \approx L/f_o.

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