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Original Question
An exponential function is graphed on the coordinate plane. The graph starts just above y equals 2 and curves up and to the rig...Asked by Jaz
                An exponential function is graphed on the coordinate plane. The graph starts just above y equals 2 and curves up and to the right forever.
Question
Use the graph to answer the question.
Describe the end behavior of the graphed function.
(1 point)
Responses
f left-parenthesis x right-parenthesis right arrow 2 as x right arrow negative infinity and f left-parenthesis x right-parenthesis right arrow infinity as x right arrow infinity
Image with alt text: f left-parenthesis x right-parenthesis right arrow 2 as Image with alt text: x right arrow negative infinity and Image with alt text: f left-parenthesis x right-parenthesis right arrow infinity as Image with alt text: x right arrow infinity
f left-parenthesis x right-parenthesis right arrow negative infinity as x right arrow 2 and f left-parenthesis x right-parenthesis right arrow infinity as x right arrow infinity
Image with alt text: f left-parenthesis x right-parenthesis right arrow negative infinity as Image with alt text: x right arrow 2 and Image with alt text: f left-parenthesis x right-parenthesis right arrow infinity as Image with alt text: x right arrow infinity
f left-parenthesis x right-parenthesis right arrow 2 as x right arrow negative infinity and f left-parenthesis x right-parenthesis right arrow infinity as x right arrow 4
Image with alt text: f left-parenthesis x right-parenthesis right arrow 2 as Image with alt text: x right arrow negative infinity and Image with alt text: f left-parenthesis x right-parenthesis right arrow infinity as Image with alt text: x right arrow 4
f left-parenthesis x right-parenthesis right arrow negative infinity as x right arrow negative infinity and f left-parenthesis x right-parenthesis right arrow infinity as x right arrow infinity
            
        Question
Use the graph to answer the question.
Describe the end behavior of the graphed function.
(1 point)
Responses
f left-parenthesis x right-parenthesis right arrow 2 as x right arrow negative infinity and f left-parenthesis x right-parenthesis right arrow infinity as x right arrow infinity
Image with alt text: f left-parenthesis x right-parenthesis right arrow 2 as Image with alt text: x right arrow negative infinity and Image with alt text: f left-parenthesis x right-parenthesis right arrow infinity as Image with alt text: x right arrow infinity
f left-parenthesis x right-parenthesis right arrow negative infinity as x right arrow 2 and f left-parenthesis x right-parenthesis right arrow infinity as x right arrow infinity
Image with alt text: f left-parenthesis x right-parenthesis right arrow negative infinity as Image with alt text: x right arrow 2 and Image with alt text: f left-parenthesis x right-parenthesis right arrow infinity as Image with alt text: x right arrow infinity
f left-parenthesis x right-parenthesis right arrow 2 as x right arrow negative infinity and f left-parenthesis x right-parenthesis right arrow infinity as x right arrow 4
Image with alt text: f left-parenthesis x right-parenthesis right arrow 2 as Image with alt text: x right arrow negative infinity and Image with alt text: f left-parenthesis x right-parenthesis right arrow infinity as Image with alt text: x right arrow 4
f left-parenthesis x right-parenthesis right arrow negative infinity as x right arrow negative infinity and f left-parenthesis x right-parenthesis right arrow infinity as x right arrow infinity
Answers
                                                    There are no human answers yet.
                                            
                
                    Answered by
            GPT-4o mini
            
    Based on your description of the exponential function's graph, the correct end behavior can be expressed as follows:
- As \( x \) approaches negative infinity, \( f(x) \) approaches 2 (meaning the function levels off just above y = 2).
- As \( x \) approaches positive infinity, \( f(x) \) approaches infinity (indicating that the function rises indefinitely).
Therefore, the appropriate response is:
**f(x) → 2 as x → -∞ and f(x) → ∞ as x → ∞**.
    
- As \( x \) approaches negative infinity, \( f(x) \) approaches 2 (meaning the function levels off just above y = 2).
- As \( x \) approaches positive infinity, \( f(x) \) approaches infinity (indicating that the function rises indefinitely).
Therefore, the appropriate response is:
**f(x) → 2 as x → -∞ and f(x) → ∞ as x → ∞**.
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