During a year, the length of a day, from sunrise to sunset, in Taloga, Oklahoma, varies from the shortest day of approximately 9.6 hours to the longest day of approximately 14.4 hours, while in Montreal, the day lengths vary from 8.3 hours to 15.7 hours. 2π For each location, determine a function L(t) = 12 + A sin that approximates the length of a day, in hours, where t 365 represents the day of the year assuming t = 0 is the spring equinox on March 21. Define LT-(t) as the equation for Taloga and LM (t) as the equation for Montreal. (Express numbers in exact form. Use symbolic notation and fractions where needed. LT(t) = LM (t) =

Calculus: Early Transcendentals
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Author:James Stewart
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Chapter1: Functions And Models
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Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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During a year, the length of a day, from sunrise to sunset, in Taloga, Oklahoma, varies from the shortest day of approximately
9.6 hours to the longest day of approximately 14.4 hours, while in Montreal, the day lengths vary from 8.3 hours to 15.7 hours.
2л
For each location, determine a function L(t) = 12 + A sin t that approximates the length of a day, in hours, where t
365
represents the day of the year assuming t = 0 is the spring equinox on March 21.
Define LT (t) as the equation for Taloga and LM (t) as the equation for Montreal.
(Express numbers in exact form. Use symbolic notation and fractions where needed.
LT (t) =
LM (t) =
Transcribed Image Text:During a year, the length of a day, from sunrise to sunset, in Taloga, Oklahoma, varies from the shortest day of approximately 9.6 hours to the longest day of approximately 14.4 hours, while in Montreal, the day lengths vary from 8.3 hours to 15.7 hours. 2л For each location, determine a function L(t) = 12 + A sin t that approximates the length of a day, in hours, where t 365 represents the day of the year assuming t = 0 is the spring equinox on March 21. Define LT (t) as the equation for Taloga and LM (t) as the equation for Montreal. (Express numbers in exact form. Use symbolic notation and fractions where needed. LT (t) = LM (t) =
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