The number of hours of daylight each day for a particular city can be modeled using the sinusoidal function s(m)=5sin(2π/12m−π/2)+13 , where s is the number of hours of sunlight per day, and m represents the month of the year, with m=1 corresponding to January, m=2 corresponding to February, etc. What is the number of hours of daylight in the longest day of the year? A.8 hours B. 13 hours C.18 Hours D.24 hours
The number of hours of daylight each day for a particular city can be modeled using the sinusoidal function s(m)=5sin(2π/12m−π/2)+13 , where s is the number of hours of sunlight per day, and m represents the month of the year, with m=1 corresponding to January, m=2 corresponding to February, etc. What is the number of hours of daylight in the longest day of the year? A.8 hours B. 13 hours C.18 Hours D.24 hours
The number of hours of daylight each day for a particular city can be modeled using the sinusoidal function s(m)=5sin(2π/12m−π/2)+13 , where s is the number of hours of sunlight per day, and m represents the month of the year, with m=1 corresponding to January, m=2 corresponding to February, etc. What is the number of hours of daylight in the longest day of the year? A.8 hours B. 13 hours C.18 Hours D.24 hours
The number of hours of daylight each day for a particular city can be modeled using the sinusoidal function s(m)=5sin(2π/12m−π/2)+13 , where s is the number of hours of sunlight per day, and m represents the month of the year, with m=1 corresponding to January, m=2 corresponding to February, etc.
What is the number of hours of daylight in the longest day of the year?
A.8 hours
B. 13 hours
C.18 Hours
D.24 hours
Expression, rule, or law that gives the relationship between an independent variable and dependent variable. Some important types of functions are injective function, surjective function, polynomial function, and inverse function.
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