Question: Answer the questions based on the matlab code XStep 1: Define your object function: the coordinates the object occupies xin real space OhiectEunction- zsC5(4,40); QbiestEunstions,5)-1;

Answer the questions based on the matlab code  Answer the questions based on the matlab code XStep 1: Define
your object function: the coordinates the object occupies xin real space OhiectEunction-

XStep 1: Define your object function: the coordinates the object occupies xin real space OhiectEunction- zsC5(4,40); QbiestEunstions,5)-1; %an object 1 pixel in size ObjectF unction! = zerosi48,40); 9hiestEunstionas : 30,5:30)-1; %a square object 25x25 pixels. xStep 2: Define your point spread functions. %Econ solutions to the wave equation for diffraction, these are bessel %functions. They can be approximated as 2-D gaussian function. PSF1zeces(40,48) tac i-1:48 far j 1:40 Inougbta 1; Background -1; r = sa tabs ( i-20.5)^2+abs(J-20.5)^2) ; PSEACiA)-bsaseli(1, (r)/2)/((r)/2)+Background; xPSF1 has a characteristic length sod PSF 2 of 2 snd Zscos(40 , 40); foc i-1:40 far j 1:40 Ingugbt-1; Background- 1; r-sactCabs (1-20.5)12+abs (j-20.5)~2); SE211)-Inought besseli(1, (r)/5)/((r)/5)+Background; XPSF2 has a characteristic length of 5 snd sod XStep 3: Calculate the image function, which is how the microscope image of the object would look for a system with a given PSF ImageFunctioni senxzcobjectfunction, PSF1) ImageFunction2 seax2(objectFunction, PSF2) ImogeFunctions -sanu2LobjectFunction1,PSF1); ImageFunction- sQnx2CObjectFunctionl, PSF2) XStep 1: Define your object function: the coordinates the object occupies xin real space OhiectEunction- zsC5(4,40); QbiestEunstions,5)-1; %an object 1 pixel in size ObjectF unction! = zerosi48,40); 9hiestEunstionas : 30,5:30)-1; %a square object 25x25 pixels. xStep 2: Define your point spread functions. %Econ solutions to the wave equation for diffraction, these are bessel %functions. They can be approximated as 2-D gaussian function. PSF1zeces(40,48) tac i-1:48 far j 1:40 Inougbta 1; Background -1; r = sa tabs ( i-20.5)^2+abs(J-20.5)^2) ; PSEACiA)-bsaseli(1, (r)/2)/((r)/2)+Background; xPSF1 has a characteristic length sod PSF 2 of 2 snd Zscos(40 , 40); foc i-1:40 far j 1:40 Ingugbt-1; Background- 1; r-sactCabs (1-20.5)12+abs (j-20.5)~2); SE211)-Inought besseli(1, (r)/5)/((r)/5)+Background; XPSF2 has a characteristic length of 5 snd sod XStep 3: Calculate the image function, which is how the microscope image of the object would look for a system with a given PSF ImageFunctioni senxzcobjectfunction, PSF1) ImageFunction2 seax2(objectFunction, PSF2) ImogeFunctions -sanu2LobjectFunction1,PSF1); ImageFunction- sQnx2CObjectFunctionl, PSF2)

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