Show that the function f(x) = x-2/x-3 defined on f : R - {3} ---> R - {1} is a bijection. for the function to be bijective, function weed to be both injective (one-to-one) & surjective (onto.)

Show that the function f(x) = x-2/x-3 defined on f : R - {3} ---> R - {1} is a bijection. for the function to be bijective, function weed to be both injective (one-to-one) & surjective (onto.)

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Show that the function f(x) = x-2/x-3 defined on f : R - {3} ---> R - {1} is a bijection. for the function to be bijective, function weed to be both injective (one-to-one) & surjective (onto.)

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