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The expression of resolving power of a microscope is inversely proportional to the wavelength ЁЭЬЖ used to illuminate the object. Can we have a source with a very small wavelength compared to that of

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The expression of resolving power of a microscope is inversely proportional to the wavelength \[\lambda\] used to illuminate the object. Can we have a source with a very small wavelength compared to that of visible light?

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Yes. Sources of ultraviolet, X-rays and gamma rays have wavelengths much smaller than visible light. Since the resolving power of a microscope increases as the wavelength decreases, shorter-wavelength radiation can improve resolution. However, ultraviolet and X-rays may damage specimens and require special optical systems; therefore, their use is limited. Electron microscopes use electrons having very small de Broglie wavelengths and provide still higher resolution.

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рдЕрдзреНрдпрд╛рдп 7: Wave Optics - Intext Questions [рдкреГрд╖реНрда резреореи]

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рдмрд╛рд▓рднрд╛рд░рддреА Physics [English] Standard 12 Maharashtra State Board
рдЕрдзреНрдпрд╛рдп 7 Wave Optics
Intext Questions | Q 2. | рдкреГрд╖реНрда резреореи
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