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Use the Equation, Resolving Power=lambda/2(Numerical Aperture). So, given the values for Numerical Aperture(NA): If NA=0, then R=0, NA=0.2, then R=1500, NA=0.4, then R=750, etc. Simply solve the equation substituting the provided Numerical Aperture (NA) values in.

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Use the Equation, Resolving Power=lambda/2(Numerical Aperture). So, given the values for Numerical Aperture(NA): If NA=0, then R=0, NA=0.2, then R=1500, NA=0.4, then R=750, etc. Simply solve the equation substituting the provided Numerical Aperture (NA) values in.

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When talking about numerical aperture it is mainly used in microscopy, which helps describe the acceptance area angle of an objective. The numerical aperture can found using this formula NA=nx

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when numerical aperture increases ,there will be greater lss and low bandwidth...jahi

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The formula for the resolution of an objective lens is


R = (1.22(lamda))/(2*(NA))



Where (lamda) is wavelength and (NA) is the numerical aperture
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