10. If G(x) is an antiderivative of g(x) then y = G(x) is a solution to the differential dy equation = g(x). dx 11. The differential equation = xy - y + x is separable. dx In2 %3D 12. If a population grows exponentially, the doubling time is given by t = k is the growth constant. =2, where

Calculus: Early Transcendentals
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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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10. If G(x) is an antiderivative of g(x) then y = G(x) is a solution to the differential
dy
equation = g(x).
dx
_11. The differential equation = xy – y + x is separable.
12. If a population grows exponentially, the doubling time is given by t =, where
k is the growth constant.
dx
In2
Transcribed Image Text:10. If G(x) is an antiderivative of g(x) then y = G(x) is a solution to the differential dy equation = g(x). dx _11. The differential equation = xy – y + x is separable. 12. If a population grows exponentially, the doubling time is given by t =, where k is the growth constant. dx In2
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