A video camera located at ground level follows the liftoff of an Atlas V Rocket from the Kennedy Space Center. Suppose that the camera is 1000 m from the launch pad. a. Write the angle of elevation θ from the camera to the rocket as a function of the rocket's height h . b. Without the use of a calculator, will the angle of elevation be less than 45 ° or greater than 45 ° when the rocket is 400 m high? c. Use a calculator to find θ to the nearest tenth of a degree when the rocket's height is 400 m , 1500 m , and 3000 m .
A video camera located at ground level follows the liftoff of an Atlas V Rocket from the Kennedy Space Center. Suppose that the camera is 1000 m from the launch pad. a. Write the angle of elevation θ from the camera to the rocket as a function of the rocket's height h . b. Without the use of a calculator, will the angle of elevation be less than 45 ° or greater than 45 ° when the rocket is 400 m high? c. Use a calculator to find θ to the nearest tenth of a degree when the rocket's height is 400 m , 1500 m , and 3000 m .
Solution Summary: The author calculates the angle of elevation theta from the camera to the rocket using the given figure.
A video camera located at ground level follows the liftoff of an Atlas
V
Rocket from the Kennedy Space Center. Suppose that the camera is
1000
m
from the launch pad.
a. Write the angle of elevation
θ
from the camera to the rocket as a function of the rocket's height
h
.
b. Without the use of a calculator, will the angle of elevation be less than
45
°
or greater than
45
°
when the rocket is
400
m
high?
c. Use a calculator to find
θ
to the nearest tenth of a degree when the rocket's height is
400
m
,
1500
m
, and
3000
m
.
n
3
5
ст
7
ап
85
95
105
The table gives values of an arithmetic
sequence an for selected values of n. Which
of the following linear functions is
αρ
constructed from the initial value an (with
n = 0) and common difference of the
sequence?
A
f(x) = 70+5x
B
f(x) = 70+10x
C
f(x) = 75+5x
D
f(x) = 75+10x
3. Submit answer Practice similar
Calculate the integral approximation Se for
So
dz.
L-de
4
1.
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