2013Unpublished venueRequires access

Bibliography and Recommended Reading

Robert B. Northrop, Anne N. Connor

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Abstract

An important purpose for formulating a detailed mathematical model of a complex, nonlinear system (CNLS) in ecological sustainability analysis is to be able to simulate (and verify) its behavior under a variety of initial conditions and inputs in order to anticipate unintended behaviors, including tipping points and limit-cycle oscillations.

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An important purpose for formulating a detailed mathematical model of a complex, nonlinear system (CNLS) in ecological sustainability analysis is to be able to simulate (and verify) its behavior under a variety of initial conditions and inputs in order to anticipate unintended behaviors, including tipping points and limit-cycle oscillations.

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Available abstract

An important purpose for formulating a detailed mathematical model of a complex, nonlinear system (CNLS) in ecological sustainability analysis is to be able to simulate (and verify) its behavior under a variety of initial conditions and inputs in order to anticipate unintended behaviors, including tipping points and limit-cycle oscillations.

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