{ "cells": [ { "cell_type": "markdown", "metadata": {}, "source": [ "\n", "\n", "# EM GeoSci Apps\n", "\n", "The purpose of these notebooks is to provide tools for you to investigate fundamental concepts in electromagnetic geophysics. They support **em.geosci.xyz**, an open source \"textbook\" resource for electromagnetic geophysics. \n", "\n", "These notebooks are powered by SimPEG, an open source framework for Simulation and Parameter Estimation in Geophysics.\n", "\n", "If you have feedback, we would like to hear from you! \n", "- Contact us\n", "- Report issues\n", "- Join the development" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "**[DC](#DC-Resistivity) | [EM Fundamentals](#EM-Fundamentals) | [Inductive Sources](#Inductive-Source-EM) | [Grounded Sources](#Grounded-Source-EM) | [Natural Sources](#Natural-Source-EM) | [IP](#Induced-Polarization) | [GPR](#Ground-Penetrating-Radar) | [Inversion](Inversion)**\n", "\n", "\n", "## Contents\n", "\n", "#### DC Resistivity\n", "- [DC_LayeredEarth.ipynb](./notebooks/dcip/DC_LayeredEarth.ipynb)\n", "- [DC_Cylinder_2D.ipynb](./notebooks/dcip/DC_Cylinder_2D.ipynb)\n", "- [DC_Building_Pseudosections.ipynb](./notebooks/dcip/DC_Building_Pseudosections.ipynb)\n", "- [DC_Inversions.ipynb](./notebooks/dcip/DC_Inversions.ipynb)\n", "- [DC_Layer_Cylinder_2D.ipynb](./notebooks/dcip/DC_Layer_Cylinder_2D.ipynb)\n", "- [DC_Layer_Cylinder_2_5D.ipynb](./notebooks/dcip/DC_Layer_Cylinder_2_5D.ipynb)\n", "- [DC_Plate_2D.ipynb](./notebooks/dcip/DC_Plate_2D.ipynb)\n", "- [DC_Plate2_5D.ipynb](./notebooks/dcip/DC_Plate2_5D.ipynb)\n", "- [DCIP_2D_Overburden_Pseudosections.ipynb](./notebooks/dcip/DCIP_2D_Overburden_Pseudosections.ipynb)\n", "- [DC_Overburden_2_5D.ipynb](./notebooks/dcip/DC_Overburden_2_5D.ipynb)\n", "- [DC_Sphere_Constant_E.ipynb](./notebooks/dcip/DC_Sphere_Constant_E.ipynb)\n", "\n", "#### EM Fundamentals\n", "- [FDEM_ThreeLoopModel.ipynb](./notebooks/em/FDEM_ThreeLoopModel.ipynb)\n", "- [InductionRLcircuit_Transient.ipynb](./notebooks/em/InductionRLcircuit_Transient.ipynb)\n", "- [InductionRLcircuit_Harmonic.ipynb](./notebooks/em/InductionRLcircuit_Harmonic.ipynb)\n", "- [FDEM_Inductive_Sphere.ipynb](./notebooks/em/FDEM_Inductive_Sphere.ipynb)\n", "- [TDEM_Planewave_Wholespace.ipynb](./notebooks/em/TDEM_Planewave_Wholespace.ipynb)\n", "- [FDEM_Planewave_Wholespace.ipynb](./notebooks/em/FDEM_Planewave_Wholespace.ipynb)\n", "- [TDEM_MagneticDipole_Wholespace.ipynb](./notebooks/em/TDEM_MagneticDipole_Wholespace.ipynb)\n", "- [FDEM_MagneticDipole_Wholespace.ipynb](./notebooks/em/FDEM_MagneticDipole_Wholespace.ipynb)\n", "\n", "#### Inductive Source EM\n", "- [TDEM_HorizontalLoop_LayeredEarth.ipynb](./notebooks/em/TDEM_HorizontalLoop_LayeredEarth.ipynb)\n", "- [TDEM_HorizontalLoop_Sphere.ipynb](./notebooks/em/TDEM_HorizontalLoop_Sphere.ipynb)\n", "- [FDEM_VMD_LayeredEarth.ipynb](./notebooks/em/FDEM_VMD_LayeredEarth.ipynb)\n", "- [FDEM_VMD_Sphere.ipynb](./notebooks/em/FDEM_VMD_Sphere.ipynb)\n", "- [TDEM_Inductivesource.ipynb](./notebooks/em/TDEM_Inductivesource.ipynb)\n", "- [TDEM_UXO.ipynb](./notebooks/em/TDEM_UXO.ipynb)\n", "\n", "#### Grounded Source EM\n", "- [TDEM_ElectricDipole_Wholespace.ipynb](./notebooks/em/TDEM_ElectricDipole_Wholespace.ipynb)\n", "- [FDEM_ElectricDipole_Wholespace.ipynb](./notebooks/em/FDEM_ElectricDipole_Wholespace.ipynb)\n", "- [MarineCSEM_LayeredEarth.ipynb](./notebooks/em/MarineCSEM_LayeredEarth.ipynb)\n", "- [TDEM_Groundedsource.ipynb](./notebooks/em/TDEM_Groundedsource.ipynb)\n", "\n", "#### Natural Source EM\n", "- [FDEM_Planewave_Reflection.ipynb](./notebooks/em/FDEM_Planewave_Reflection.ipynb)\n", "- [MT_LayeredEarth.ipynb](./notebooks/em/MT_LayeredEarth.ipynb)\n", "\n", "#### Induced Polarization\n", "- [PhyProp_ColeCole.ipynb](./notebooks/dcip/PhyProp_ColeCole.ipynb)\n", "\n", "#### Ground Penetrating Radar\n", "- [GPR_Attenuation.ipynb](./notebooks/GPR_Attenuation.ipynb)\n", "\n", "#### Inversion\n", "- [LinearInversion.ipynb](./notebooks/inversion/LinearInversion.ipynb)\n", "- [2D-LinearInversion-Crosswell-Tomorgraphy.ipynb](./notebooks/inversion/2D-LinearInversion-Crosswell-Tomorgraphy.ipynb)" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "## Running the notebook\n", "\n", "From the menu, select `cell`, `run all`, or run each individual cell using `shift + enter`\n", "\n", "![cell-run-all](https://em.geosci.xyz/_images/run_all_cells.png)" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "####
We love open source!
\n", "\n", "
\"Creative \n", "\n", "This work is licensed under a Creative Commons Attribution 4.0 International License.
" ] } ], "metadata": { "anaconda-cloud": {}, "kernelspec": { "display_name": "Python 3", "language": "python", "name": "python3" }, "language_info": { "codemirror_mode": { "name": "ipython", "version": 3 }, "file_extension": ".py", "mimetype": "text/x-python", "name": "python", "nbconvert_exporter": "python", "pygments_lexer": "ipython3", "version": "3.6.7" } }, "nbformat": 4, "nbformat_minor": 1 }