Question

A Ferris wheel is 20 m in diameter and makes 1 revolution every 3 minutes. This Ferris wheel has a 3 meters boarding platform with riders entering at the bottom. At time t = 0 Chris is at the top of the ride, descending.

Find all the times at which Chris is 15 meters above the ground.

Answer #1

A Ferris wheel is 40 meters in diameter and boarded from a
platform that is 4 meters above the ground. The six o'clock
position on the Ferris wheel is level with the loading platform.
The wheel completes 1 full revolution in 4 minutes. How many
minutes of the ride are spent higher than 42 meters above the
ground?
minutes

A Ferris wheel is 30 meters in diameter and boarded from a
platform that is 3 meters above the ground. The six o'clock
position on the Ferris wheel is level with the loading platform.
The wheel completes 1 full revolution in 9 minutes. How much of the
ride, in minutes, is spent higher than 19 meters above the ground?
(Round your answer to two decimal places.)
I see other examples going over this but could you explain more
and neatly...

A ferris wheel is 25 meters in diameter and boarded from a
platform that is 1 meters above the ground. The six o'clock
position on the ferris wheel is level with the loading platform.
The wheel completes 1 full revolution in 4 minutes. The function h
= f(t) gives your height in meters above the ground t minutes after
the wheel begins to turn. Write an equation for h = f(t).

A ferris wheel is 40 meters in diameter and boarded from a
platform that is 5 meters above the ground. The six o'clock
position on the ferris wheel is level with the loading platform.
The wheel completes 1 full revolution in 2 minutes. The function h
= f(t) gives your height in meters above the ground t minutes after
the wheel begins to turn. Write an equation for h = f(t)

How do I solve this?
A ferris wheel is 35 meters in diameter and boarded from a
platform that is 2 meters above the ground. The six o'clock
position on the ferris wheel is level with the loading platform.
The wheel completes 1 full revolution in 4 minutes. The function h
= f(t) gives your height in meters above the ground t minutes after
the wheel begins to turn. Write an equation for h = f(t).

1. A population of rabbits oscillates 21 above and below an
average of 103 during the year, hitting the lowest value in January
(t = 0). Find an equation for the population, P, in terms of the
months since January, t.
P(t) =
What if the lowest value of the rabbit population occurred in
April instead?
P(t)=
2. A Ferris wheel is 45 meters in diameter and boarded from a
platform that is 4 meters above the ground. The six...

a ferris wheel has a radius of 5.0 m and makes one revolution
every 8.0s with uniform rotation. a person who normally weighs 670N
is sitting on one of the benches attached at the rim of the wheel.
what is the apparent weight of the person as she passes through the
lowest point of her motion?

A Ferris wheel has diameter of 9.05 m and makes one revolution
in 12.4 seconds. A person weighing 588 N is sitting on one of the
benches attached at the rim of the wheel. What is the apparent
weight (that is, the normal force exerted on her by the bench) of
the person as she passes through the highest point of her motion?
Express your answer in N.

A Ferris wheel has diameter of 11.52 m and makes one revolution
in 13.3 seconds. A person weighing 591 N is sitting on one of the
benches attached at the rim of the wheel. What is the apparent
weight (that is, the normal force exerted on her by the bench) of
the person as she passes through the highest point of her motion?
Express your answer in N.

A Ferris wheel is a vertical, circular amusement ride with
radius 8 m. Riders sit on seats that swivel to remain horizontal.
The Ferris wheel rotates at a constant rate, going around once in 8
s. Consider a rider whose mass is 54 kg. (Pls note answers in terms
of vectors)
A) What is the vector force exerted by the seat on the rider at
the bottom of the ride?
B) What is the Vector force exerted at the top...

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