QUESTION IMAGE
Question
which function has zeros at \\(x = -2\\) and \\(x = 5\\)?
\\(f(x) = x^2 - 3x - 10\\)
\\(f(x) = x^2 + 3x - 10\\)
\\(f(x) = x^2 + 2x - 10\\)
<pre_analysis>
{
"quality": "clear",
"question_count": 1,
"skills_matched": [
"step_cot",
"multiple_choice_formatter",
"explain_then_answer",
"quick"
],
"needs_drawing": false,
"concepts_used": [
"Roots of Quadratic Functions"
],
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"Roots of Quadratic Functions",
"Factoring Quadratics"
]
}
</pre_analysis>
<reasoning>
Identify the given zeros
\[
x_1 = -2,\quad x_2 = 5
\]
Write the factored form of the quadratic function
\[
f(x) = (x - x_1)(x - x_2) = (x - (-2))(x - 5) = (x + 2)(x - 5)
\]
Expand the factored expression
\[
f(x) = x^2 - 5x + 2x - 10 = x^2 - 3x - 10
\]
</reasoning>
<answer>
<mcq-correct>(A) \(f(x) = x^2 - 3x - 10\)</mcq-correct>
<mcq-option>(B) \(f(x) = x^2 + 3x - 10\)</mcq-option>
<mcq-option>(C) \(f(x) = x^2 + 2x - 10\)</mcq-option>
</answer>
<post_analysis>
{
"subject": "Mathematics",
"question_type": "Multiple Choice",
"knowledge_point": [
"Mathematics",
"Algebra",
"Roots of Quadratic Functions"
]
}
</post_analysis>
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<pre_analysis>
{
"quality": "clear",
"question_count": 1,
"skills_matched": [
"step_cot",
"multiple_choice_formatter",
"explain_then_answer",
"quick"
],
"needs_drawing": false,
"concepts_used": [
"Roots of Quadratic Functions"
],
"new_concepts": [],
"current_concepts": [
"Roots of Quadratic Functions",
"Factoring Quadratics"
]
}
</pre_analysis>
<reasoning>
Identify the given zeros
\[
x_1 = -2,\quad x_2 = 5
\]
Write the factored form of the quadratic function
\[
f(x) = (x - x_1)(x - x_2) = (x - (-2))(x - 5) = (x + 2)(x - 5)
\]
Expand the factored expression
\[
f(x) = x^2 - 5x + 2x - 10 = x^2 - 3x - 10
\]
</reasoning>
<answer>
<mcq-correct>(A) \(f(x) = x^2 - 3x - 10\)</mcq-correct>
<mcq-option>(B) \(f(x) = x^2 + 3x - 10\)</mcq-option>
<mcq-option>(C) \(f(x) = x^2 + 2x - 10\)</mcq-option>
</answer>
<post_analysis>
{
"subject": "Mathematics",
"question_type": "Multiple Choice",
"knowledge_point": [
"Mathematics",
"Algebra",
"Roots of Quadratic Functions"
]
}
</post_analysis>