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Question
once the hot air balloon reaches cruising altitude, it flies at an elevation of 2,400 feet. start by writing the starting elevation of the balloon after it reached cruising altitude, or the vertical intercept. the slope is 0. the vertical intercept is 2,400. e = \square + ? elevation = starting elevation + change in elevation
Step1: Identify vertical intercept
The vertical intercept is given as 2,400, which is the starting elevation when \(t=0\).
Step2: Identify slope/change rate
The slope (change in elevation per minute) is 0, so the change in elevation term is \(0 \times t\).
Step3: Build elevation equation
Combine starting elevation and change term.
\(e = 2400 + 0t\)
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\(e = \boldsymbol{2400} + 0t\)
The blank should be filled with 2400.