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CALCULUS 1 FINAL EXAM REVIEW Linearization Use the Linearization to approximate 5 32.05 Related Rates (Implicit Differentiation) L’Hopital’s Rule Optimization Newton’s Method Use two iterations of Newton’s Method to approximate the real zeros of the function. Use the provided initial guess.
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apps-dso.sws.iastate.edu · Web viewCALCULUS 1 FINAL EXAM REVIEW Linearization Use the Linearization to approximate 5 32.05 Related Rates (Implicit Differentiation) L’Hopital’s

Jun 09, 2018

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Page 1: apps-dso.sws.iastate.edu · Web viewCALCULUS 1 FINAL EXAM REVIEW Linearization Use the Linearization to approximate 5 32.05 Related Rates (Implicit Differentiation) L’Hopital’s

CALCULUS 1 FINAL EXAM REVIEW

Linearization

Use the Linearization to approximate 5√32.05

Related Rates (Implicit Differentiation)

L’Hopital’s Rule

Optimization

Newton’s MethodUse two iterations of Newton’s Method to approximate the real zeros of the function. Use the provided initial guess.

Page 2: apps-dso.sws.iastate.edu · Web viewCALCULUS 1 FINAL EXAM REVIEW Linearization Use the Linearization to approximate 5 32.05 Related Rates (Implicit Differentiation) L’Hopital’s

Integrals (and their applications)

Separable Differential Equations

7) The population P(t)of gerbils grows at a rate proportional to its size. dPdt

=kP, k is some constant P(0) = 10

a) Write an equation for P(t) in terms of k.b) If it takes three years for the population to double, calculate k.

Page 3: apps-dso.sws.iastate.edu · Web viewCALCULUS 1 FINAL EXAM REVIEW Linearization Use the Linearization to approximate 5 32.05 Related Rates (Implicit Differentiation) L’Hopital’s