User Requirement
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Program
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Forward and
inverse modeling of DC Resistivity data in terms
of 1 dimensional layered earth models. |
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Forward and
inverse modeling of DC Resistivity data in terms
of 1 dimensional layered earth models. Analyze
equivalence and produce smooth
models. |
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Forward and
inverse modeling of DC Resistivity and Induced
Polarization data in terms of 1 dimensional layered
earth models. Analyze equivalence and produce smooth
models. |
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Smooth (cell
based) inversion and polygon modeling of 2D DC
Resistivity and Induced Polarization data. Program
includes two Smooth Model algorithms, including the
Zonge 'topography' algorithm and full 2D polygon forward
and inverse modeling. |
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Forward and
inverse modeling Geonics EM 31, 34 & 38 (EM
Conductivity) data, collected along a profile, in
terms of 1 dimensional layered earth models.
Display geo-electrical sections based on 1D models. |
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Forward and
inverse modeling Scintrex EM-4 Genie/HLEM or APEX
Parametrics MAXMIN (Frequency EM) data, collected
along a profile, in terms of 1 dimensional
layered earth models. Display geo-electrical sections
based on 1D models. |
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Present and
process Very Low Frequency (VLF) data as
profiles and contour maps. |
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Forward and
inverse modeling of Magnetotelluric data in terms
of 1 dimensional layered earth models. Analyze
equivalence and produce smooth models. |
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Calculate the Magnetotelluric
response of 2 dimensional models to compare
with field data. |
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Forward and
inverse modeling of Transient Electromagnetic (TEM) data
from any commercial TEM hardware system. Produce
results in terms of 1 dimensional layered earth
models. Analyze equivalence and produce smooth models. |
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Forward and
inverse modeling of Transient Electromagnetic (TEM) data
from any commercial TEM hardware system. Display
the data and results in 1D, map or profile form.
Analyze equivalence and produce smooth
models. |
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Forward and
Inverse modeling of Magnetic and Gravity data.
Must be able to specify models on 2 dimensions
with control over strike directions and extent. |
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Forward and
Inverse modeling of Magnetic and Gravity data.
Must be able to specify models on 2 dimensions
with control over strike directions and extent.
Need the ability to handle large data sets. |
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Import Seismic
Refraction shot records from commercial seismographs
or standard data files and produce first break picks
for export to refraction processing programs |
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Interpret Seismic
Refraction data in terms of 2 dimensional velocity
or depth models utilizing GRM, Optimum X-Y or Time
Delay methods. |
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Interpret Seismic
Refraction data in terms of 2 dimensional velocity
or depth models utilizing GRM, Optimum X-Y or Time
Delay methods. Additionally import SEG-P1 files and
export static values. |
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Import Ground
Penetrating Radar data from commercial radar
hardware systems, process and interpret
data using interactive color displays. Output color
sections of radar data to a large variety of color
devices. |
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