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Solve the Problem P(t)=45(1+0.6t)(3+0.02t)\mathrm { P } ( \mathrm { t } ) = \frac { 45 ( 1 + 0.6 \mathrm { t } ) } { ( 3 + 0.02 \mathrm { t } ) }

question 142

Essay

Solve the problem.
-A rare species of insect was discovered in the rain forest of Costa Rica. Environmentalists transplant the insect into a
protected area. The population of the insect t months after being transplanted is P(t)=45(1+0.6t)(3+0.02t)\mathrm { P } ( \mathrm { t } ) = \frac { 45 ( 1 + 0.6 \mathrm { t } ) } { ( 3 + 0.02 \mathrm { t } ) } a) What was the population when t = 0?
b) What will the population be after 10 years?
c) What is the largest value the population could reach?


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The proactive effort to find effective answers or solutions to problems.

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The process of creating multiple possible solutions to a problem in order to find the most effective resolution.

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Evaluating options involves assessing various alternatives in decision-making based on criteria such as advantages, disadvantages, potential outcomes, and impacts.

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