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0.1 Fig. 1 shows the 2-D view of the magnitude of the fft of an image 7(m, n), which is computed using the shififft function

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0.1 Fig. 1 shows the 2-D view of the magnitude of the fft of an image 7(m, n), which is computed using the shififft function in MATLAB. Fig. 1 a) Draw and label the axes, show the origin (0,0), the maximum and minimum axis limits, the axis values for the two dots assuming that the horizontal and vertical distances between the dots are measured as 0.1 and 0.2 of one side of the square- shaped plane. i. ii. assuming that Fig. 1 represents the DSFT{/(m, n)). assuming that Fig. 1 represents the (100x100)-point DF71(m, n)). 0.1 Fig. 1 shows the 2-D view of the magnitude of the fft of an image 7(m, n), which is computed using the shififft function in MATLAB. Fig. 1 a) Draw and label the axes, show the origin (0,0), the maximum and minimum axis limits, the axis values for the two dots assuming that the horizontal and vertical distances between the dots are measured as 0.1 and 0.2 of one side of the square- shaped plane. i. ii. assuming that Fig. 1 represents the DSFT{/(m, n)). assuming that Fig. 1 represents the (100x100)-point DF71(m, n))

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