The equation for h = f(t) will be, [tex]\rm h(t)=7.5sin({\pi}t-\frac{\pi}{2})+12.5[/tex].
A connection between independent variables and the dependent variable is defined by the function. Functions help to represent graphs and equations.
The given data in the problem is;
Ferris wheel diameter,d= 15 meters
The platform is 5 m above the ground.
The Ferris wheel function is;
h(t) = A sin(Bt + C) + D
Here,
A is Amplitude
D is the midline
B is period
C is a phase shift
t is the time
The amplitude of the function is half of the diameter;
A = d/2
A=15 m /2
A = 7.5 m
The value of the mid-line is found as;
Mid-line = amplitude + distance from the mid-line;
D= 7.5 + 5
D = 12.5
From the given data, the wheel completes 1 full revolution in 2 minutes
The period of the wheel is T.
B = 2
The phase shift is found as;
[tex]\rm \frac{C}{\pi}=\frac{-1}{2}\\\\ {C}=\frac{-\pi}{2}[/tex]
The Ferris wheel function is;
h(t) = A sin(Bt + C) + D
Substitute the obtained values we get;
[tex]\rm h(t)=7.5sin({\pi}t-\frac{\pi}{2})+12.5[/tex]
Hence, the equation for h = f(t) will be, [tex]\rm h(t)=7.5sin({\pi}t-\frac{\pi}{2})+12.5[/tex].
To learn more about the function, refer to the link https://brainly.com/question/12431044.
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