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## Resources

##### Includes clear efforts on Issues
Potential Scenario 1

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##### 1999-Lomen-Lovelock-Data Sets from text Differential Equations Graphics-Models-Data
Data selected by field is presented, e.g., chemistry, electricity, growth, motion, population, miscellaneous.
data Estimate
Potential Scenario 2

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##### 1999-Leonid_Hanin-Which tank empties first
Suppose that water towers like those shown in the opening are initially filled with water and have the same volume, height, and cross-sectional outlet area. Which one empties first?
tank Torricelli's Law spherical tank empty frustrum of cone cylinder
Potential Scenario 2

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##### 1999-Kowalczyk-Hausknecht-Using DEs To Model Real World Data
With the increasing availability of easy to use interactive differential equation software, we convinced ourselves to completely redesign the way we teach differential equations.
circuit Torricelli's Law Hooke's Law RC circuit harmonic oscillator glucose glucose tolerance test
Potential Scenario 23

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##### 1999-Khorasheh-Ahmadi-Gerayeli-Application of Direct Search Optimization for Pharmacokinetic Parameter Estimation
For simple pharmacokinetic compartmental models, analytical solution to the governing differential equations provide a mean to evaluate the associated rate constants. Such methods, however, can not be used used for more complex multi-compartment...
sum of square errors least squares pharmacokinetics lineteics compartmental models direct search
Potential Scenario 1

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##### 1997-Bonnie_Shulman-Using Original Sources to Teach the Logistic Equation
This Module uses original data, diagrams, and texts from three original sources to develop the logistic model of growth in natural systems with limited resources.
logistic original source
Potential Scenario 1

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##### 1993-Paul_Blanchard-Teaching Differential Equations With a Dynamical Systems Viewpoint
This is an early discourse on the dynamical system view point of teaching differential equations with a number of rich illustrations.
dynamical systems
Potential Scenario 5

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##### 1967-JG-Wagner-Computers in pharmacokinetics
This is a seminal paper in pharmacokinetics in which the author introduces historic notions and approaches. As can be seen from the abstract there is a variety of material here.
kinetics computers pharmacokinetics
Potential Scenario 4

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##### 2014-Chivers-EtAl-Predator-prey systems depend on a prey refuge
We present an agent-based model which does not require the factors or constraints of previous models to reproduce all six patterns in persistent populations.
Individual & Agent Based Modeling predator-prey think-pair-shares lynx refuge prey switching Mustela-Clethrionomys system patter oriented
Potential Scenario 4

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##### 2014-John_Cain-Chemical Reaction Kinetics Mathematical Underpinnings
The usual way of deriving kinetic equations involves application of the principle of conservation of mass in conjunction with the law of mass action. Here, examples of kinetic models for several basic processes are discussed.
kinetics biochemical reaction reactants products
Potential Scenario 1

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##### 2014-Brun-EtAl-An introduction to the mechanics of the lasso
Here, we study the mechanics of the simplest rope trick, the Flat Loop, in which the rope is driven by the steady circular motion of the roper’s hand in a horizontal plane.
bifurcation motion lasso rod model rodeo
Potential Scenario 1

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##### 2014-Bozkurt-Peker-Mathematical modelling of HIV epidemic and stability analysis
A nonlinear mathematical model of differential equations with piecewise constant arguments is proposed. This model is analyzed by using the theory of both differential and difference equations to show the spread of HIV in a homogeneous population.
disease logistic HIV piecewise constant India
Potential Scenario 1

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##### 2014-Blomhøj-EtAl-Compartment models
An overview of compartment models with many rich illustrations and much attention to various numerical methods in solutions of the resulting differential equations using Matlab. Also included is a section on the limitations of compartment models.
concentration kinetics physiology compartment salt tank balance reactions mink bathtub
Potential Scenario 84

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##### 2006-Juska-Gedminiene-Ivanec-Growth of Microbial Populations-Mathematical Modeling-Laboratory Exercises-Model-Based Data Analysis
The aim is to teach the students to use a fresh approach to the problems they are familiar with, to come up with an articulate verbal model after a mental effort, to express it in rigorous mathematical terms, to solve (with the aid of computers).
population growth rate logistic equation Verhulst equation generation time lag time
Potential Scenario 1

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##### 2004-Mitchell-von Meien-Krieger-Dalsenter-A review of recent developments in modeling of microbial growth kinetics
Mathematical models are important tools for optimizing the design and operation of solid-state fermentation (SSF) bioreactors. Such models must describe the kinetics of microbial growth.
Filamentous Fungi solid-state fermentation growth kinetics diffusion-reaction oxygen transfer
Potential Scenario 4

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