Step 1: Use the Rayleigh criterion for resolution.
The resolution \( R \) of a microscope is given by the formula:
\[
R = \frac{0.61 \lambda}{NA},
\]
where \( \lambda \) is the wavelength of light and \( NA \) is the numerical aperture of the lens.
Step 2: Substitute the given values.
Given \( \lambda = 380 \, \text{nm} \) and \( NA = 1.4 \), substitute these values into the equation:
\[
R = \frac{0.61 \times 380 \, \text{nm}}{1.4} = \frac{231.8 \, \text{nm}}{1.4} = 271.43 \, \text{nm}.
\]
Step 3: Conclusion.
The maximum resolution is approximately 271.43 nm.
In the following figure, the radius of the circle circumscribing the regular hexagon is 2 cm. The area of the shaded region is ............ cm\(^2\) (round off to 2 decimal places) 
Which of the following statements is/are TRUE for the function \( f(x) \) shown in the figure given below? 
Match the metabolic pathways in Group A with corresponding enzymes in Group B 
Which one of the following plots represents exponential growth? 