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<h1 align="center">PSPOLAR</h1>
<a href="#NAME">NAME</a><br>
<a href="#SYNOPSIS">SYNOPSIS</a><br>
<a href="#DESCRIPTION">DESCRIPTION</a><br>
<a href="#ARGUMENTS">ARGUMENTS</a><br>
<a href="#OPTIONS">OPTIONS</a><br>
<a href="#EXAMPLES">EXAMPLES</a><br>
<a href="#SEE ALSO">SEE ALSO</a><br>
<a href="#REFERENCES">REFERENCES</a><br>
<a href="#AUTHORS">AUTHORS</a><br>
<hr>
<h2>NAME
<a name="NAME"></a>
</h2>
<p style="margin-left:11%; margin-top: 1em"><b>pspolar </b>-
Plot polarities on the inferior focal half−sphere on
maps</p>
<h2>SYNOPSIS
<a name="SYNOPSIS"></a>
</h2>
<p style="margin-left:11%; margin-top: 1em">pspolar
<i>files</i> <b>−J</b><i>parameters</i>
<b>−R</b><i>west</i>/<i>east</i>/<i>south</i>/<i>north</i>[<b>r</b>]
<b>−D</b><i>lon</i>/<i>lat</i>
<b>−M</b><i>size</i>
<b>−S</b><i><symbol><size></i> [
<b>−B</b>[<b>p</b>|<b>s</b>]<i>parameters</i> ] [
<b>−C</b><i>lon</i>/<i>lat</i>[/<i>dash_width</i>/<i>pointsize</i>]
] [ <b>−F</b><i>color</i> ] [
<b>−G</b><i>fill</i> ] [ <b>−g</b><i>fill</i> ]
[ <b>−H</b>[<b>i</b>][<i>nrec</i>] ] [ <b>−h</b>
] [ <b>−K</b> ] [ <b>−L</b> ] [ <b>−N</b>
] [ <b>−O</b> ] [ <b>−P</b> ] [
<b>−s</b><i>Half-size</i>[<b>v</b>[[<i>v_width</i>/<i>h_length</i>/<i>h_width</i>/<i>shape</i>]][<b>g</b>[<i>color</i>]][<b>l</b>]
[
<b>−T</b><i>angle</i>/<i>form</i>/<i>justify</i>/<i>fontsize</i>
] [ <b>−t</b><i>pen</i> ] [
<b>−U</b>[<i>just</i>/<i>dx</i>/<i>dy</i>/][<b>c</b>|<i>label</i>]
] [ <b>−V</b> ] [ <b>−W</b><i>pen</i> ] [
<b>−X</b>[<b>a</b>|<b>c</b>|<b>r</b>][<i>x-shift</i>[<b>u</b>]]
] [
<b>−Y</b>[<b>a</b>|<b>c</b>|<b>r</b>][<i>y-shift</i>[<b>u</b>]]
] [ <b>−c</b><i>copies</i> ]</p>
<h2>DESCRIPTION
<a name="DESCRIPTION"></a>
</h2>
<p style="margin-left:11%; margin-top: 1em"><b>pspolar</b>
reads data values from <i>files</i> [or standard input] and
generates <i>PostScript</i> code that will plot stations on
focal mechanisms on a map. The <i>PostScript</i> code is
written to standard output.</p>
<p style="margin-left:11%; margin-top: 1em">Parameters are
expected to be in the following columns <b><br>
1,2,3,4</b></p>
<p style="margin-left:22%;">station_code, azimuth, take-off
angle, polarity</p>
<p style="margin-left:22%; margin-top: 1em">polarity: <br>
- compression can be c,C,u,U,+ <br>
- rarefaction can be d,D,r,R,- <br>
- not defined is anything else</p>
<h2>ARGUMENTS
<a name="ARGUMENTS"></a>
</h2>
<p style="margin-left:11%; margin-top: 1em"><i>files</i>
List one or more file-names. If no files are given, pspolar
will read standard input.</p>
<table width="100%" border="0" rules="none" frame="void"
cellspacing="0" cellpadding="0">
<tr valign="top" align="left">
<td width="11%"></td>
<td width="3%">
<p><b>−J</b></p></td>
<td width="8%"></td>
<td width="78%">
<p>Selects the map projection. Scale is UNIT/degree,
1:xxxxx, or width in UNIT (upper case modifier). UNIT is cm,
inch, or m, depending on the <b><A HREF="gmtdefaults.html#MEASURE_UNIT">MEASURE_UNIT</A></b> setting in
.gmtdefaults4, but this can be overridden on the command
line by appending <b>c</b>, <b>i</b>, or <b>m</b> to the
scale/width value. When central meridian is optional,
default is center of longitude range on <b>−R</b>
option. Default standard parallel is the equator. For map
height, max dimension, or min dimension, append <b>h</b>,
<b>+</b>, or <b>-</b> to the width, respectively.</p></td></tr>
</table>
<p style="margin-left:22%;">More details can be found in
the <b><A HREF="psbasemap.html">psbasemap</A></b> man pages.</p>
<p style="margin-left:22%; margin-top: 1em"><b>CYLINDRICAL
PROJECTIONS:</b></p>
<p style="margin-left:22%; margin-top: 1em"><b>−Jc</b><i>lon0/lat0/scale</i>
(Cassini) <b><br>
−Jcyl_stere</b>/[<i>lon0/</i>[<i>lat0/</i>]]<i>scale</i>
(Cylindrical Stereographic) <b><br>
−Jj</b>[<i>lon0/</i>]<i>scale</i> (Miller) <b><br>
−Jm</b>[<i>lon0</i>/[<i>lat0/</i>]]<i>scale</i>
(Mercator) <b><br>
−Jm</b><i>lon0/lat0/scale</i> (Mercator - Give
meridian and standard parallel) <b><br>
−Jo</b>[<b>a</b>]<i>lon0/lat0/azimuth/scale</i>
(Oblique Mercator - point and azimuth) <b><br>
−Jo</b>[<b>b</b>]<i>lon0/lat0/lon1/lat1/scale</i>
(Oblique Mercator - two points) <b><br>
−Joc</b><i>lon0/lat0/lonp/latp/scale</i> (Oblique
Mercator - point and pole) <b><br>
−Jq</b>[<i>lon0/</i>[<i>lat0/</i>]]<i>scale</i>
(Cylindrical Equidistant) <b><br>
−Jt</b><i>lon0/</i>[<i>lat0/</i>]<i>scale</i> (TM -
Transverse Mercator) <b><br>
−Ju</b><i>zone/scale</i> (UTM - Universal Transverse
Mercator) <b><br>
−Jy</b>[<i>lon0/</i>[<i>lat0/</i>]]<i>scale</i>
(Cylindrical Equal-Area)</p>
<p style="margin-left:22%; margin-top: 1em"><b>CONIC
PROJECTIONS:</b></p>
<p style="margin-left:22%; margin-top: 1em"><b>−Jb</b><i>lon0/lat0/lat1/lat2/scale</i>
(Albers) <b><br>
−Jd</b><i>lon0/lat0/lat1/lat2/scale</i> (Conic
Equidistant) <b><br>
−Jl</b><i>lon0/lat0/lat1/lat2/scale</i> (Lambert Conic
Conformal) <b><br>
−Jpoly</b>/[<i>lon0/</i>[<i>lat0/</i>]]<i>scale</i>
((American) Polyconic)</p>
<p style="margin-left:22%; margin-top: 1em"><b>AZIMUTHAL
PROJECTIONS:</b></p>
<p style="margin-left:22%; margin-top: 1em"><b>−Ja</b><i>lon0/lat0</i>[<i>/horizon</i>]<i>/scale</i>
(Lambert Azimuthal Equal-Area) <b><br>
−Je</b><i>lon0/lat0</i>[<i>/horizon</i>]<i>/scale</i>
(Azimuthal Equidistant) <b><br>
−Jf</b><i>lon0/lat0</i>[<i>/horizon</i>]<i>/scale</i>
(Gnomonic) <b><br>
−Jg</b><i>lon0/lat0</i>[<i>/horizon</i>]<i>/scale</i>
(Orthographic) <b><br>
−Jg</b><i>lon0/lat0/altitude/azimuth/tilt/twist/Width/Height/scale</i>
(General Perspective). <b><br>
−Js</b><i>lon0/lat0</i>[<i>/horizon</i>]<i>/scale</i>
(General Stereographic)</p>
<p style="margin-left:22%; margin-top: 1em"><b>MISCELLANEOUS
PROJECTIONS:</b></p>
<p style="margin-left:22%; margin-top: 1em"><b>−Jh</b>[<i>lon0/</i>]<i>scale</i>
(Hammer) <b><br>
−Ji</b>[<i>lon0/</i>]<i>scale</i> (Sinusoidal) <b><br>
−Jkf</b>[<i>lon0/</i>]<i>scale</i> (Eckert IV) <b><br>
−Jk</b>[<b>s</b>][<i>lon0/</i>]<i>scale</i> (Eckert
VI) <b><br>
−Jn</b>[<i>lon0/</i>]<i>scale</i> (Robinson) <b><br>
−Jr</b>[<i>lon0/</i>]<i>scale</i> (Winkel Tripel)
<b><br>
−Jv</b>[<i>lon0/</i>]<i>scale</i> (Van der Grinten)
<b><br>
−Jw</b>[<i>lon0/</i>]<i>scale</i> (Mollweide)</p>
<p style="margin-left:22%; margin-top: 1em"><b>NON-GEOGRAPHICAL
PROJECTIONS:</b></p>
<p style="margin-left:22%; margin-top: 1em"><b>−Jp</b>[<b>a</b>]<i>scale</i>[<i>/origin</i>][<b>r</b>|<b>z</b>]
(Polar coordinates (theta,r)) <b><br>
−Jx</b><i>x-scale</i>[<b>d</b>|<b>l</b>|<b>p</b><i>pow</i>|<b>t</b>|<b>T</b>][<i>/y-scale</i>[<b>d</b>|<b>l</b>|<b>p</b><i>pow</i>|<b>t</b>|<b>T</b>]]
(Linear, log, and power scaling)</p>
<table width="100%" border="0" rules="none" frame="void"
cellspacing="0" cellpadding="0">
<tr valign="top" align="left">
<td width="11%"></td>
<td width="3%">
<p style="margin-top: 1em"><b>−R</b></p></td>
<td width="8%"></td>
<td width="78%">
<p style="margin-top: 1em"><i>west, east, south,</i> and
<i>north</i> specify the Region of interest, and you may
specify them in decimal degrees or in
[+-]dd:mm[:ss.xxx][W|E|S|N] format. Append <b>r</b> if lower
left and upper right map coordinates are given instead of
w/e/s/n. The two shorthands <b>−Rg</b> and
<b>−Rd</b> stand for global domain (0/360 and
-180/+180 in longitude respectively, with -90/+90 in
latitude). Alternatively, specify the name of an existing
grid file and the <b>−R</b> settings (and grid
spacing, if applicable) are copied from the grid.</p></td></tr>
</table>
<p style="margin-left:11%;"><b>−D</b>
longitude/latitude</p>
<p style="margin-left:22%;">Maps the bubble at given
longitude and latitude point.</p>
<p style="margin-left:11%;"><b>−M</b> size</p>
<p style="margin-left:22%;">Sets the size of the beach ball
to plot polarities in. <i>Size</i> is in inch (unless
<b>c</b>, <b>i</b>, <b>m</b>, or <b>p</b> is appended).</p>
<p style="margin-left:11%;"><b>−S</b><symbol_type><size></p>
<p style="margin-left:22%;">Selects <i>symbol_type</i> and
symbol <i>size</i>. Size is in inch (unless <b>c</b>,
<b>i</b>, <b>m</b>, or <b>p</b> is appended). Choose symbol
type from st(<i>a</i>)r, (<i>c</i>)ircle, (<i>d</i>)iamond,
(<i>h</i>)exagon, (<i>i</i>)nverted triangle,
(<i>p</i>)oint, (<i>s</i>)quare, (<i>t</i>)riangle,
(<i>x</i>)cross.</p>
<h2>OPTIONS
<a name="OPTIONS"></a>
</h2>
<p style="margin-left:11%; margin-top: 1em">No space
between the option flag and the associated arguments.</p>
<table width="100%" border="0" rules="none" frame="void"
cellspacing="0" cellpadding="0">
<tr valign="top" align="left">
<td width="11%"></td>
<td width="3%">
<p><b>−B</b></p></td>
<td width="8%"></td>
<td width="78%">
<p>Sets map boundary annotation and tickmark intervals; see
the <b><A HREF="psbasemap.html">psbasemap</A></b> man page for all the details.</p></td></tr>
<tr valign="top" align="left">
<td width="11%"></td>
<td width="3%">
<p><b>−C</b></p></td>
<td width="8%"></td>
<td width="78%">
<p>Offsets focal mechanisms to the latitude and longitude
specified in the last two columns of the input file.</p></td></tr>
</table>
<p style="margin-left:11%;"><b>−E</b> fill</p>
<p style="margin-left:22%;">Selects filling of symbols for
stations in extensive quadrants. Set the shade (0−255)
or color (r/g/b) [Default is 250/250/250]. If
<b>−E</b><i>fill</i> is the same as
<b>−F</b><i>fill</i>, use <b>−e</b> to
outline.</p>
<p style="margin-left:11%;"><b>−e</b>[pen]</p>
<p style="margin-left:22%;">Outline symbols in extensive
quadrants using <i>pen</i> or the default pen (see
<b>−W</b>).</p>
<table width="100%" border="0" rules="none" frame="void"
cellspacing="0" cellpadding="0">
<tr valign="top" align="left">
<td width="11%"></td>
<td width="9%">
<p><b>−F</b><i>fill</i></p></td>
<td width="2%"></td>
<td width="78%">
<p>Sets background color of the beach ball. Default is no
fill.</p> </td></tr>
</table>
<p style="margin-left:11%;"><b>−f</b>[pen]</p>
<p style="margin-left:22%;">Outline the beach ball using
<i>pen</i> or the default pen (see <b>−W</b>).</p>
<table width="100%" border="0" rules="none" frame="void"
cellspacing="0" cellpadding="0">
<tr valign="top" align="left">
<td width="11%"></td>
<td width="9%">
<p><b>−G</b><i>fill</i></p></td>
<td width="2%"></td>
<td width="78%">
<p>Selects filling of symbols for stations in compressional
quadrants. Set the shade (0−255) or color (r/g/b)
[Default is 0/0/0].</p></td></tr>
</table>
<p style="margin-left:11%;"><b>−g</b>[pen]</p>
<p style="margin-left:22%;">Outline symbols in
compressional quadrants using <i>pen</i> or the default pen
(see <b>−W</b>).</p>
<table width="100%" border="0" rules="none" frame="void"
cellspacing="0" cellpadding="0">
<tr valign="top" align="left">
<td width="11%"></td>
<td width="3%">
<p><b>−H</b></p></td>
<td width="8%"></td>
<td width="78%">
<p>Input file(s) has header record(s). If used, the default
number of header records is <b><A HREF="gmtdefaults.html#N_HEADER_RECS">N_HEADER_RECS</A></b>. Use
<b>−Hi</b> if only input data should have header
records [Default will write out header records if the input
data have them]. Blank lines and lines starting with # are
always skipped.</p></td></tr>
<tr valign="top" align="left">
<td width="11%"></td>
<td width="3%">
<p><b>−h</b></p></td>
<td width="8%"></td>
<td width="78%">
<p>Use special format derived from HYPO71 output</p></td></tr>
<tr valign="top" align="left">
<td width="11%"></td>
<td width="3%">
<p><b>−K</b></p></td>
<td width="8%"></td>
<td width="78%">
<p>More <i>PostScript</i> code will be appended later
[Default terminates the plot system].</p></td></tr>
<tr valign="top" align="left">
<td width="11%"></td>
<td width="3%">
<p><b>−N</b></p></td>
<td width="8%"></td>
<td width="78%">
<p>Does <b>NOT</b> skip symbols that fall outside map
border [Default plots points inside border only].</p></td></tr>
<tr valign="top" align="left">
<td width="11%"></td>
<td width="3%">
<p><b>−O</b></p></td>
<td width="8%"></td>
<td width="78%">
<p>Selects Overlay plot mode [Default initializes a new
plot system].</p></td></tr>
<tr valign="top" align="left">
<td width="11%"></td>
<td width="3%">
<p><b>−P</b></p></td>
<td width="8%"></td>
<td width="78%">
<p>Selects Portrait plotting mode [Default is Landscape,
see <b><A HREF="gmtdefaults.html">gmtdefaults</A></b> to change this].</p></td></tr>
</table>
<p style="margin-left:11%;"><b>−s</b><i>half−size/[</i><b>V</b><i>[v_width/h_length/h_width/shape]][</i><b>G</b><i>r/g/b][</i><b>L</b><i>]</i></p>
<p style="margin-left:22%;">Plots S polarity azimuth. <br>
S polarity is in last column. It may be a vector (<b>V</b>
option) or a segment. Give
half−size,v_width,h_length,h_width in inch (unless
<b>c</b>, <b>i</b>, <b>m</b>, or <b>p</b> is appended).
[<b>L</b>] option is for outline.</p>
<p style="margin-left:11%;"><b>−T</b><i>angle/form/justify/fontsize
in points</i></p>
<p style="margin-left:22%;">To write station code. [Default
is 0.0/0/5/12].</p>
<table width="100%" border="0" rules="none" frame="void"
cellspacing="0" cellpadding="0">
<tr valign="top" align="left">
<td width="11%"></td>
<td width="9%">
<p><b>−t</b> pen</p></td>
<td width="2%"></td>
<td width="78%">
<p>Set pen color to write station code. Default uses the
default pen (see <b>−W</b>).</p></td></tr>
<tr valign="top" align="left">
<td width="11%"></td>
<td width="9%">
<p><b>−U</b></p></td>
<td width="2%"></td>
<td width="78%">
<p>Draw Unix System time stamp on plot. By adding
<i>just/dx/dy/</i>, the user may specify the justification
of the stamp and where the stamp should fall on the page
relative to lower left corner of the plot. For example,
BL/0/0 will align the lower left corner of the time stamp
with the lower left corner of the plot. Optionally, append a
<i>label</i>, or <b>c</b> (which will plot the command
string.). The <b><A HREF="GMT.html">GMT</A></b> parameters <b><A HREF="gmtdefaults.html#UNIX_TIME">UNIX_TIME</A></b>,
<b><A HREF="gmtdefaults.html#UNIX_TIME_POS">UNIX_TIME_POS</A></b>, and <b><A HREF="gmtdefaults.html#UNIX_TIME_FORMAT">UNIX_TIME_FORMAT</A></b> can affect
the appearance; see the <b><A HREF="gmtdefaults.html">gmtdefaults</A></b> man page for
details. The time string will be in the locale set by the
environment variable <b>TZ</b> (generally local time).</p></td></tr>
<tr valign="top" align="left">
<td width="11%"></td>
<td width="9%">
<p><b>−V</b></p></td>
<td width="2%"></td>
<td width="78%">
<p>Selects verbose mode, which will send progress reports
to stderr [Default runs "silently"].</p></td></tr>
<tr valign="top" align="left">
<td width="11%"></td>
<td width="9%">
<p><b>−W</b></p></td>
<td width="2%"></td>
<td width="78%">
<p>Set current pen attributes</p></td></tr>
</table>
<p style="margin-left:22%;">[Defaults: width = 1, color =
0/0/0, texture = solid].</p>
<table width="100%" border="0" rules="none" frame="void"
cellspacing="0" cellpadding="0">
<tr valign="top" align="left">
<td width="11%"></td>
<td width="7%">
<p style="margin-top: 1em"><b>−X −Y</b></p></td>
<td width="4%"></td>
<td width="78%">
<p style="margin-top: 1em">Shift plot origin relative to
the current origin by (<i>x-shift,y-shift</i>) and
optionally append the length unit (<b>c</b>, <b>i</b>,
<b>m</b>, <b>p</b>). You can prepend <b>a</b> to shift the
origin back to the original position after plotting, or
prepend <b>r</b> [Default] to reset the current origin to
the new location. If <b>−O</b> is used then the
default (<i>x-shift,y-shift</i>) is (0,0), otherwise it is
(r1i, r1i) or (r2.5c, r2.5c). Alternatively, give <b>c</b>
to align the center coordinate (x or y) of the plot with the
center of the page based on current page size.</p></td></tr>
<tr valign="top" align="left">
<td width="11%"></td>
<td width="7%">
<p><b>−:</b></p></td>
<td width="4%"></td>
<td width="78%">
<p>Toggles between (longitude,latitude) and
(latitude,longitude) input and/or output. [Default is
(longitude,latitude)]. Append <b>i</b> to select input only
or <b>o</b> to select output only. [Default affects
both].</p> </td></tr>
<tr valign="top" align="left">
<td width="11%"></td>
<td width="7%">
<p><b>−c</b></p></td>
<td width="4%"></td>
<td width="78%">
<p>Specifies the number of plot copies. [Default is 1].</p></td></tr>
</table>
<h2>EXAMPLES
<a name="EXAMPLES"></a>
</h2>
<p style="margin-left:11%; margin-top: 1em"><b>pspolar
−R</b> 239/240/34/35.2 <b>−JM</b> 8 <b>−N
−Sc</b> 0.4 <b>−H</b> 1 <b>−D</b>
239.5/34.5 <b>−M</b> 5 <<END>! test.ps <br>
stat azim ih pol <br>
0481 11 147 c <br>
6185 247 120 d <br>
0485 288 114 + <br>
0490 223 112 - <br>
0487 212 109 . <br>
END <br>
or <b><br>
pspolar −R</b> 239/240/34/35.2 <b>−JM</b> 8
<b>−N −Sc</b> 0.4 <b>−H</b> 1
<b>−D</b> 239.5/34.5 <b>−M</b> 5 <b>−h</b>
<<END>! test.ps <br>
Date Or. time stat azim ih <br>
910223 1 22 0481 11 147 ipu0 <br>
910223 1 22 6185 247 120 ipd0 <br>
910223 1 22 0485 288 114 epu0 <br>
910223 1 22 0490 223 112 epd0 <br>
910223 1 22 0487 212 109 epu0 <br>
END</p>
<h2>SEE ALSO
<a name="SEE ALSO"></a>
</h2>
<p style="margin-left:11%; margin-top: 1em"><i><A HREF="GMT.html">GMT</A></i>(1),
<i><A HREF="psbasemap.html">psbasemap</A></i>(1), <i><A HREF="psxy.html">psxy</A></i>(1)</p>
<h2>REFERENCES
<a name="REFERENCES"></a>
</h2>
<p style="margin-left:11%; margin-top: 1em">Bomford, G.,
Geodesy, 4th ed., Oxford University Press, 1980. <br>
Aki, K. and P. Richards, Quantitative Seismology, Freeman,
1980.</p>
<h2>AUTHORS
<a name="AUTHORS"></a>
</h2>
<p style="margin-left:11%; margin-top: 1em">Genevieve Patau
<br>
Seismology Dept. <br>
Institut de Physique du Globe de Paris <br>
(patau@ipgp.jussieu.fr)</p>
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