Air freshener A has a mass of 42 grams when opened and its mass decreases by 4.2 grams each day. Air freshener B has a mass of 42 grams when opened and its mass decreases by 4.2% each day. a. Write a function a that determines the mass of air freshener A (in grams) in terms of the number of days t since it was opened. a(t) = (42-4.2t) b. Write a function b that determines the mass of air freshener B (in grams) in terms of the number of days t since it was opened. b(t) = Preview Preview syntax error

Calculus For The Life Sciences
2nd Edition
ISBN:9780321964038
Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Publisher:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Chapter3: The Derivative
Section3.2: Continuity
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Air freshener A has a mass of 42 grams when opened and its mass decreases by 4.2 grams each day. Air freshener B has a mass of 42 grams
when opened and its mass decreases by 4.2% each day.
a. Write a function a that determines the mass of air freshener A (in grams) in terms of the number of days t since it was opened.
a(t)
b. Write a function b that determines the mass of air freshener B (in grams) in terms of the number of days t since it was opened.
b(t)
=
-
(42-4.2t)
Preview
Preview
syntax error
Transcribed Image Text:Air freshener A has a mass of 42 grams when opened and its mass decreases by 4.2 grams each day. Air freshener B has a mass of 42 grams when opened and its mass decreases by 4.2% each day. a. Write a function a that determines the mass of air freshener A (in grams) in terms of the number of days t since it was opened. a(t) b. Write a function b that determines the mass of air freshener B (in grams) in terms of the number of days t since it was opened. b(t) = - (42-4.2t) Preview Preview syntax error
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