{ "cells": [ { "cell_type": "markdown", "metadata": {}, "source": [ "\n", "\n", "
\n", " \n", " \"QuantEcon\"\n", " \n", "
" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "# Multiple Agent Models\n", "\n", "These lectures look at important economic models that also illustrate common\n", "equilibrium concepts." ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "## Lectures\n", "\n", "- [Robust Markov Perfect Equilibrium](https://python-programming.quantecon.org/rob_markov_perf.html)\n", " - [Overview](https://python-programming.quantecon.org/rob_markov_perf.html#overview)\n", " - [Linear Markov Perfect Equilibria with Robust Agents](https://python-programming.quantecon.org/rob_markov_perf.html#linear-markov-perfect-equilibria-with-robust-agents)\n", " - [Application](https://python-programming.quantecon.org/rob_markov_perf.html#application)\n", "- [Default Risk and Income Fluctuations](https://python-programming.quantecon.org/arellano.html)\n", " - [Overview](https://python-programming.quantecon.org/arellano.html#overview)\n", " - [Structure](https://python-programming.quantecon.org/arellano.html#structure)\n", " - [Equilibrium](https://python-programming.quantecon.org/arellano.html#equilibrium)\n", " - [Computation](https://python-programming.quantecon.org/arellano.html#computation)\n", " - [Results](https://python-programming.quantecon.org/arellano.html#results)\n", " - [Exercises](https://python-programming.quantecon.org/arellano.html#exercises)\n", " - [Solutions](https://python-programming.quantecon.org/arellano.html#solutions)\n", "- [Globalization and Cycles](https://python-programming.quantecon.org/matsuyama.html)\n", " - [Overview](https://python-programming.quantecon.org/matsuyama.html#overview)\n", " - [Key Ideas](https://python-programming.quantecon.org/matsuyama.html#key-ideas)\n", " - [Model](https://python-programming.quantecon.org/matsuyama.html#model)\n", " - [Simulation](https://python-programming.quantecon.org/matsuyama.html#simulation)\n", " - [Exercises](https://python-programming.quantecon.org/matsuyama.html#exercises)\n", " - [Solutions](https://python-programming.quantecon.org/matsuyama.html#solutions)\n", "- [Coaseā€™s Theory of the Firm](https://python-programming.quantecon.org/coase.html)\n", " - [Overview](https://python-programming.quantecon.org/coase.html#overview)\n", " - [The Model](https://python-programming.quantecon.org/coase.html#the-model)\n", " - [Equilibrium](https://python-programming.quantecon.org/coase.html#equilibrium)\n", " - [Existence, Uniqueness and Computation of Equilibria](https://python-programming.quantecon.org/coase.html#existence-uniqueness-and-computation-of-equilibria)\n", " - [Implementation](https://python-programming.quantecon.org/coase.html#implementation)\n", " - [Exercises](https://python-programming.quantecon.org/coase.html#exercises)\n", " - [Solutions](https://python-programming.quantecon.org/coase.html#solutions)" ] } ], "metadata": { "date": 1624431173.8364623, "filename": "index_multi_agent_models.rst", "kernelspec": { "display_name": "Python", "language": "python3", "name": "python3" }, "next_doc": { "link": "rob_markov_perf", "title": "Robust Markov Perfect Equilibrium" }, "prev_doc": { "link": "lqramsey", "title": "Optimal Taxation in an LQ Economy" }, "title": "Multiple Agent Models" }, "nbformat": 4, "nbformat_minor": 2 }