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8 changes: 7 additions & 1 deletion docs/fundamentals/mesh_design.ipynb
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"\n",
"## Base parameters\n",
"\n",
"An Octree mesh can be though of as the combination of a base mesh and refinements. The base mesh is defined by the core extent, padding, and the base cell resolution. These concepts are explored in further detail in the following sub-sections.\n",
"An Octree mesh can be thought of as the combination of a base mesh and refinements. The base mesh is defined by the core extent, padding, and the base cell resolution. These concepts are explored in further detail in the following sub-sections.\n",
"\n",
"- [A region of interest (extent)](mesh-extent)\n",
"- [Base cell resolution](base-cell-size)\n",
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"![extent_to_pad](./images/extent_to_pad.png)\n",
"\n"
]
},
{
"metadata": {},
"cell_type": "markdown",
"source": "",
"id": "658c5419227c2985"
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}
],
"metadata": {
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18 changes: 4 additions & 14 deletions docs/plate-simulation/standalone.rst
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Expand Up @@ -125,24 +125,14 @@ below provides a visual representation of these angles.
direction (a) is the angle measured between the horizontal projection of the plate
normal (n\') and due north (N).*

The plate location can be specified in both relative and absolute terms. The position
parameters are given as easting, northing, and elevation. If the relative locations
checkbox is selected, the easting and northing are relative to the center of the
survey and the elevation is relative to one of the available references. The elevation
may be referenced to either the earth-air interface or the overburden via the
``Depth reference`` dropdown. Either choice can be relative to the minimum, maximum,
or mean of the points making up the reference surface as given by the ``Reference type``
dropdown. In all these cases, the distance provided acts as a depth below the reference
to the *top of plate* in the *z negative down* convention. If the relative locations
checkbox is not selected, the easting, northing, and elevation specify the center
location of the plate.
The plate location is chosen to be centered on the provided survey object with the depth
relative to the topography entered as positive down.

.. figure:: /plate-simulation/images/methodology/model/plate_location_options.png
:align: center

*Plate location options in relative mode. Notice the* ``Elevation`` *is given as
negative to ensure the top of the plate is below the selected min of the
overburden.*
*Plate depth option sets the top of the plate n meters below the topography and
centered on the survey object.*

.. figure:: /plate-simulation/images/methodology/model/plate_location.png
:align: center
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2 changes: 1 addition & 1 deletion docs/tutorials/magnetic.ipynb
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"source": [
"## Magnetic vector inversion (MVI)\n",
"\n",
"We now look at the solution using the magnetic vector inversion (MVI) algorithm. This approach is generally favoured if [remanent magnetization](https://gpg.geosci.xyz/content/magnetics/magnetics_basic_principles.html?highlight=remanence#remanent-magnetization) is kwown to distorte the magnetic signal.\n",
"We now look at the solution using the magnetic vector inversion (MVI) algorithm. This approach is generally favoured if [remanent magnetization](https://gpg.geosci.xyz/content/magnetics/magnetics_basic_principles.html?highlight=remanence#remanent-magnetization) is known to distort the magnetic signal.\n",
"\n",
"We use the default parameters but without a reference model as shown below.\n",
"\n",
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