2. The equation is now in slope-intercept form (Y = mx + b), where the slope m is -2 and the y-intercept b is 4.
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What is the least number of pairs of corresponding sides and corresponding angles required to establish the congruence of two triangles?
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Math question: What is the smallest value of n in Fermat's Theorem (n > 2) where there exist no positive integers a, b, and c satisfying a^n + b^n = c^n ?