Application Exercises In Exercises 43-44, use a calculator in radian mode in parts (b) and (c). The number of hours of daylight H , on day t of any given year (on January 1 , t = 1 ) in Fairbanks, Alaska, can be modeled by the function H ( t ) = 12 + 8.3 sin [ 2 π 365 ( t − 80 ) ] . a. March 21, the 80th day of the year, is the spring equinox Find the number of hours of daylight in Fairbanks on this day b. June 21, the 172nd day of the year, is the summer solstice, the day with the maximum number of hours of daylight. To the nearest tenth of an hour, find the number of hours of daylight in Fairbanks on this day c. December 21, the 355th day of the year, is the winter solstice, the day with the minimum number of hours of daylight Find, to the nearest tenth of an hour, the number of hours of daylight in Fairbanks on this day.
Application Exercises In Exercises 43-44, use a calculator in radian mode in parts (b) and (c). The number of hours of daylight H , on day t of any given year (on January 1 , t = 1 ) in Fairbanks, Alaska, can be modeled by the function H ( t ) = 12 + 8.3 sin [ 2 π 365 ( t − 80 ) ] . a. March 21, the 80th day of the year, is the spring equinox Find the number of hours of daylight in Fairbanks on this day b. June 21, the 172nd day of the year, is the summer solstice, the day with the maximum number of hours of daylight. To the nearest tenth of an hour, find the number of hours of daylight in Fairbanks on this day c. December 21, the 355th day of the year, is the winter solstice, the day with the minimum number of hours of daylight Find, to the nearest tenth of an hour, the number of hours of daylight in Fairbanks on this day.
Solution Summary: The author calculates the number of hours of daylight in Fairbanks on March 21, the 80th day of the year.
In Exercises 43-44, use a calculator in radian mode in parts (b) and (c).
The number of hours of daylight H, on day t of any given year (on January
1
,
t
=
1
) in Fairbanks, Alaska, can be modeled by the function
H
(
t
)
=
12
+
8.3
sin
[
2
π
365
(
t
−
80
)
]
.
a. March 21, the 80th day of the year, is the spring equinox Find the number of hours of daylight in Fairbanks on this day
b. June 21, the 172nd day of the year, is the summer solstice, the day with the maximum number of hours of daylight. To the nearest tenth of an hour, find the number of hours of daylight in Fairbanks on this day
c. December 21, the 355th day of the year, is the winter solstice, the day with the minimum number of hours of daylight Find, to the nearest tenth of an hour, the number of hours of daylight in Fairbanks on this day.
Can you answer this question and give step by step and why and how to get it. Can you write it (numerical method)
Can you answer this question and give step by step and why and how to get it. Can you write it (numerical method)
There are three options for investing $1150. The first earns 10% compounded annually, the second earns 10% compounded quarterly, and the third earns 10% compounded continuously. Find equations that model each investment growth and
use a graphing utility to graph each model in the same viewing window over a 20-year period. Use the graph to determine which investment yields the highest return after 20 years. What are the differences in earnings among the three
investment?
STEP 1: The formula for compound interest is
A =
nt
= P(1 + − − ) n²,
where n is the number of compoundings per year, t is the number of years, r is the interest rate, P is the principal, and A is the amount (balance) after t years. For continuous compounding, the formula reduces to
A = Pert
Find r and n for each model, and use these values to write A in terms of t for each case.
Annual Model
r=0.10
A = Y(t) = 1150 (1.10)*
n = 1
Quarterly Model
r = 0.10
n = 4
A = Q(t) = 1150(1.025) 4t
Continuous Model
r=0.10
A = C(t) =…
Chapter 4 Solutions
MyLab Math with Pearson eText -- Standalone Access Card -- for Precalculus (6th Edition)
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