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Examine whether the following function a...

Examine whether the following function are even or odd or neither even nor odd, where [ ] denotes greatest integer function.
`f(x)=(sec x+x^(2)-9)/(x sin x)`

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To determine whether the function \( f(x) = \frac{\sec x + x^2 - 9}{x \sin x} \) is even, odd, or neither, we will follow these steps: ### Step 1: Define the function We start with the given function: \[ f(x) = \frac{\sec x + x^2 - 9}{x \sin x} \] ### Step 2: Find \( f(-x) \) To check if the function is even or odd, we need to compute \( f(-x) \): \[ f(-x) = \frac{\sec(-x) + (-x)^2 - 9}{(-x) \sin(-x)} \] ### Step 3: Simplify \( f(-x) \) Using the properties of trigonometric functions: - \( \sec(-x) = \sec x \) (since secant is an even function) - \( (-x)^2 = x^2 \) - \( \sin(-x) = -\sin x \) Substituting these into \( f(-x) \): \[ f(-x) = \frac{\sec x + x^2 - 9}{-x \sin x} \] ### Step 4: Rewrite \( f(-x) \) Now we can rewrite \( f(-x) \): \[ f(-x) = -\frac{\sec x + x^2 - 9}{x \sin x} = -f(x) \] ### Step 5: Conclusion Since we have found that \( f(-x) = -f(x) \), it shows that the function is odd. ### Final Answer The function \( f(x) \) is an **odd function**. ---

To determine whether the function \( f(x) = \frac{\sec x + x^2 - 9}{x \sin x} \) is even, odd, or neither, we will follow these steps: ### Step 1: Define the function We start with the given function: \[ f(x) = \frac{\sec x + x^2 - 9}{x \sin x} \] ...
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