The roots of the quadratic equation ax² + bx + c = 0₁ a 0 are given by the following formula: - b ± √b² - 4ac 2a In this formula, the term b² - 4ac is called the discriminant. If b² - 4ac = 0, then the equation has a single (repeated) root. If

Computer Networking: A Top-Down Approach (7th Edition)
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ISBN:9780133594140
Author:James Kurose, Keith Ross
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Chapter1: Computer Networks And The Internet
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equation has two complex roots. Write a program that prompts the
user to input the value of a (the coefficient of x²), b (the coefficient
of x), and c (the constant term) and outputs the type of roots of the
equation. Furthermore, if b² - 4ac_0, the program should output
the roots of the quadratic equation. (Hint: Use the function pow from
Transcribed Image Text:equation has two complex roots. Write a program that prompts the user to input the value of a (the coefficient of x²), b (the coefficient of x), and c (the constant term) and outputs the type of roots of the equation. Furthermore, if b² - 4ac_0, the program should output the roots of the quadratic equation. (Hint: Use the function pow from
7.
The roots of the quadratic equation ax² + bx + c = 0, a 0 are given
by the following formula:
-b = √b² - 4ac
2a
In this formula, the term b² - 4ac is called the discriminant. If
b²-4ac0, then the equation has a single (repeated) root. If
200
Transcribed Image Text:7. The roots of the quadratic equation ax² + bx + c = 0, a 0 are given by the following formula: -b = √b² - 4ac 2a In this formula, the term b² - 4ac is called the discriminant. If b²-4ac0, then the equation has a single (repeated) root. If 200
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