Question:medium

If \(a, b, c\) are distinct odd natural numbers, then the number of rational roots of the equation \(ax^2 + bx + c = 0\) is:

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To check for rational roots, compute the discriminant and determine if it is a perfect square. If not, there are no rational roots.
Updated On: Nov 28, 2025
  • must be 0
  • must be 1
  • must be 2
  • cannot be determined from the given data
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The Correct Option is A

Solution and Explanation

Step 1: The quadratic equation is:

\[ ax^2 + bx + c = 0 \]

Here, \( a, b, c \) are different odd natural numbers.

Step 2: The discriminant \( \Delta \) of the quadratic equation is:

\[ \Delta = b^2 - 4ac \]

For rational roots, the discriminant must be a perfect square.

Step 3: Since \( a, b, c \) are distinct odd natural numbers, \( b^2 \) is odd, and \( 4ac \) is odd. Therefore, \( b^2 - 4ac \) is even.

Step 4: The difference of an odd and even number is always odd; thus, the discriminant cannot be a perfect square.

Step 5: Consequently, the equation has no rational roots.

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