Question
Question: If \(\sin \theta \) and \(\cos \theta \) are the roots of the equation \(a{x^2} - bx + c = 0\) , the...
If sinθ and cosθ are the roots of the equation ax2−bx+c=0 , then a,b and c satisfy the relation
A. a2+b2+2ac=0 B. a2−b2+2ac=0 C. a2+b2+2ab=0 D. a2−b2−2ac=0
Solution
Hint: From this quadratic equation, first we need to find the sum and product of roots of the equation and then by applying some trigonometric identities we solve the question further. By using the simple algebra, we will get our answer.
Complete step-by-step answer:
Given that sinθ and cosθ are the roots of the equation ax2−bx+c=0
We know sum of roots = a−b and product of roots = ac for quadratic equation ax2+bx+c=0
So when we find sum and product of roots comparing
sinθ+cosθ=ab.....(1) sinθ×cosθ=ac
Then by squaring equation (1) on both sides
(sinθ+cosθ)2=a2b2 sin2θ+cos2θ+2sinθcosθ=a2b2
Now substituting the values from product equation and applying the identity sin2θ+cos2θ=1
1+a2c=a2b2
Now solving both sides
aa+2c=a2b2
Now, by cross multiplying
a2+2ac=b2 a2−b2+2ac=0
Hence option B. a2−b2+2ac=0 is the right answer.
Note: You need to remember the trigonometric identities for sine and cosine to solve this question. Carefully, find the sum and product and obtain the correct answer using the method mentioned above. Apply the formulas and cross multiply with caution as these steps are most error prone. And in the question of quadratic equations this is the only method to achieve our answer.