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 Jun 20 comment Evaluating $\int e^{-(t-k)^2} dt$, where $k$ is a constant All I wanted to know the effect of constant $k$ in the final result. Once I make substitutions in (3), I am effectively removing the constant Jun 28 comment Hausdorff Distance between “Pure Black” and “Pure White” images So for example, if the images that I use have a dimension of 100x100, can I take the infimum as 10000 since number of elements here cannot exceed 100x100? I mean for the purpose of programming. Jun 28 comment Hausdorff Distance between “Pure Black” and “Pure White” images Thanks for the reply. Now I have to figure out how to implement this in my program. Mar 13 comment How is Hausdorff Distance sensitive to position? @Thomas E, "Sensitive to position" is exactly what I am not understanding. According to the link in my question, it says that Hausdorff Distance is sensitive to position and they show it by drawing circles enclosing the polygons with radius equal to the Hausdorff distance between the polygons. They show two figures where in the dimension of the polygons remain same but their positions are changed and the radius of the enclosing circles are different in the figures. This, they suggest is the proof for Hausdorff distance being sensitive to position, which i am unable to understand. Oct 19 comment Is there an efficient Hausdorff Distance algorithm? Thank you very much. I will apply this. And I will be using Taxi Cab distance instead of Euclidean distance but as you stated, it will be similar. Oct 19 comment Is there an efficient Hausdorff Distance algorithm? r is a 2D array or a 2D matrix of binary image, hence i will be calculating the Hausdorff Distance using the position of the pixels rather than the value of the pixels.