Question: I If a second order polynomial is written in the general form: +h+c=0 then the roots (ie the values of x that satisfy the equation)



I If a second order polynomial is written in the general form: +h+c=0 then the roots (ie the values of x that satisfy the equation) can be determined using the quadratic formula: -b3V8 - 4 20 You will be given a 3-clomont row vector a, b, c as an input. The goal is to write a function that does the following 1. Check if the roots of the polynomial defined by a, b, and e aro real and distinct. Note that the roots will be real if the value under the square root is greater than or equal to zero. They will not be distinct, however, if the value under the square root is exactly equal to zero. Assign an an integer (uints datatype) valun to the output variable root Condition you may choose a different namo) as follows: The value 2 If the roots are real and distinct . The value 1 if the two roots are the same The value of the roots are not real (1.0, complex because the value under the square root is less than oy Assign the solution to the quadratic to the output variable rootValues (you may choose a different name) according to the following guidelines: . In cases where there are two real and distinct roots, compute the two roots and assign them in ascending order to a two-element row vector . In cases where the two roots are the same, compute the root and assign this value to both elements in a two-clomont row vector . In cases where the roots are complex, output assign the text complex roots output variable rootValues Task Write a function quadratic Solver that takes one 3-element array input and returns two outputs (root condition and root values): Use an if-elseif-else structure in your code. Is rootCondition output correct for the example input [2 -45]? Is rootValues output correct for the example input [2 -4 5]? Is rootCondition output correct for complex roots? Is rootCondition output correct for indistinct (repeated) roots? Is rootValues output correct for complex roots? Is rootValues output correct for indistinct (repeated) roots? Are both outputs correct for randomly generated coefficients (unknown root condition)? Does your solution use an if-elseif-else structure? 1% Modify the function header below function CHANGE_THIS_HEADER % YOUR CODE STARTS % YOUR CODE ENDS end
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