0 0 0 0 ]]>Maximum Altitude: ]]> Altitude range: ]]> Minimum Altitude: ]]> North-South range degrees: ]]> East-West range degrees: ]]> North-South range: ]]> East-West range: ]]> Bounderies Lon/Lat: (]]>, ) (, ]]> 0 0 normal #normalPlacemark highlight #highlightPlacemark 30 on 250 #blinkOn off 500 #blinkOff Waypoints 1 0 ]]>
Number of Waypoints: ]]>
Maximum Altitude: ]]>
Altitude range: ]]>
Minimum Altitude: ]]>
North-South range degrees: ]]>
East-West range degrees: ]]>
North-South range: ]]>
East-West range: ]]>
Bounderies Lon/Lat: (]]>, ) (,
]]>
Way point Bounderies The bounding box for the waypoints defining the minimum, maximum longitudes, latitudes of the Waypoint geo-region. 0 60 25 #BoundingBoxPolygonStyle 1 1 relativeToGround ,, ,, ,, ,, ,, Camera Views Compass Views on Waypoints geo-region 0 0 Eye alt 50.000 Km 0 #viewStyle 50000000 0 0 Eye alt 1.000 Km 0 #viewStyle 1000000 0 0 Eye alt 25 Km 0 #viewStyle 25000 0 0 North 0 #viewStyle 66 0 North-East 0 #viewStyle 66 45 East 0 #viewStyle 66 90 South-East 0 #viewStyle 66 135 South 0 #viewStyle 66 180 South-West 0 #viewStyle 66 225 West 0 #viewStyle 66 270 North-West 0 #viewStyle 66 315
Tracks 1 0 Folder with Tracks Legma c6ffffff 97 colorpercentage.png Routes 1 0 Folder with Routes GUI and Credits 1 0 99 ffffffff Targetting 1 greencrosshairs.png Logo c6ffffff 98 cws.png Geographical Boundery Box This bounding box defining the minimum, maximum longitudes, latitudes for the total way, track and route points of this project. 0 45 #BoundingBoxPolygonStyle 1 1 relativeToGround ,, ,, ,, ,, ,, Camera Views Compass Views on all total geo-region 0 0 Eye alt 50.000 Km 0 #viewStyle 50000000 0 0 Eye alt 5.000 Km 0 #viewStyle 5000000 0 0 Eye alt 2.500 Km 0 #viewStyle 2500000 0 0 Eye alt 1.000 Km 0 #viewStyle 1000000 0 0 Eye alt 100 Km 0 #viewStyle 100000 0 0 Eye alt 50 Km 0 #viewStyle 50000 0 0 Eye alt 25 Km 0 #viewStyle 25000 0 0 Eye alt 10 Km 0 #viewStyle 10000 0 0 Eye alt 5 Km 0 #viewStyle 5000 0 0 Eye alt Km 0 #viewStyle 1000 0 0 North 0 #viewStyle 66 0 North-East 0 #viewStyle 66 45 East 0 #viewStyle 66 90 South-East 0 #viewStyle 66 135 South 0 #viewStyle 66 180 South-West 0 #viewStyle 66 225 West 0 #viewStyle 66 270 North-West 0 #viewStyle 66 315 Credits and Copyrights
				
	 Script: William A Slabbekoorn - Nov 2005
	 				
    __   
   / _)      _        __   _    _  __ 
   |(_ \\ /||_) //_\ ||_)||_) ||_ ||_)
   \__) || ||__)|| | || \||__)||_ || \
	 
	
	 
	This file was created with KmlGpxGmlTransform.hta, 
	a XSLT transformation application using MSXML3/4/5.
	It transforms a GPX versions 1.0 or 1.1 XML formats to
	Google Earth's KML 2.0 file format while validating against
	a Cybarber created XSD Schema. (Nov. 2005 status).
	http://members.home.nl/cybarber/geomatters/kml.xsd
	  
	The GPX input file contains Waypoints, Trackpoints and Routepoints.
	The KML file has way/track/route point Placemarks and a track/route path placemark.
	For each track/route a Bounding box and camera view points are shown.
	
	For the whole track and the indicidual points some statistical data are calculated
	using the msxsl:script extension allowing the use of JScript functions
	
	JScript functions are with modifications based on  2002-2005 Chris Veness 
	http://www.movable-type.co.uk/scripts/LatLong.html
	http://www.movable-type.co.uk/scripts/LatLongVincenty.html

	Copyright: Cybarber Web Services, William A Slabbekoorn, November 2005.
	http://members.home.nl/cybarber/geomatters/GPX2KML.xslt
	
]]>
1 #knipperlicht 1 relativeToGround ,,250
Credits and Copyrights
				
	 Script: William A Slabbekoorn - Nov 2005
	 				
    __   
   / _)      _        __   _    _  __ 
   |(_ \\ /||_) //_\ ||_)||_) ||_ ||_)
   \__) || ||__)|| | || \||__)||_ || \
	 
	
	 
	This file was created with KmlGpxGmlTransform.hta, 
	a XSLT transformation application using MSXML3/4/5.
	It transforms a GPX versions 1.0 or 1.1 XML formats to
	Google Earth's KML 2.0 file format while validating against
	a Cybarber created XSD Schema. (Nov. 2005 status).
	http://members.home.nl/cybarber/geomatters/kml.xsd
	  
	The GPX input file contains Waypoints, Trackpoints and Routepoints.
	The KML file has way/track/route point Placemarks and a track/route path placemark.
	For each track/route a Bounding box and camera view points are shown.
	
	For the whole track and the indicidual points some statistical data are calculated
	using the msxsl:script extension allowing the use of JScript functions
	
	JScript functions are with modifications based on  2002-2005 Chris Veness 
	http://www.movable-type.co.uk/scripts/LatLong.html
	http://www.movable-type.co.uk/scripts/LatLongVincenty.html

	Copyright: Cybarber Web Services, William A Slabbekoorn, November 2005.
	http://members.home.nl/cybarber/geomatters/GPX2KML.xslt
	
]]>
1 #exampleStyleMap 1 relativeToGround ,,250
1 at Altitiude : 1 #waypointstyle 0 clampedToGround ,, 0 0 0 Track 1 Track Date: ]]> Track points: ]]> Track length: ]]> Starting Time: ]]> Finish Time: ]]> Track duration: ]]> Track speed: ]]> Track Pace: ]]> Cumulative Height: ]]> Maximum Altitude: ]]> Altitude range: ]]> Minimum Altitude: ]]> North-South degrees: ]]> East-West degrees: ]]> North-South range: ]]> East-West range: ]]> Bounderies Lon/Lat: (]]>, ) (, ]]> Track Bounderies 1 The bounding box for the track defining the minimum, maximum longitudes, latitudes of the the track region. 60 25 #BoundingBoxPolygonStyle 1 1 relativeToGround ,, ,, ,, ,, ,, Camera Views 1 0 Compass Views on Tracks geo-region Eye alt 50.000 Km #viewStyle 50000000 0 0 Eye alt 1.000 Km #viewStyle 1000000 0 0 Eye alt 25 Km #viewStyle 25000 0 0 North #viewStyle 66 0 North-East #viewStyle 66 45 East #viewStyle 66 90 South-East #viewStyle 66 135 South #viewStyle 66 180 South-West #viewStyle 66 225 West #viewStyle 66 270 North-West #viewStyle 66 315 Points 0 Path 1 #trackpathLineStyle 1 clampedToGround 0 0 0 0 0 0 0 0 1 Start at Date: ]]>Time: ]]> Longitude: ]]>Latitude: ]]> Altitude: ]]>Bearing:]]> Time From: ]]>Dist From: ]]> Time to Next:]]>Dist to Next:]]> Up hill: ]]>Down hill: ]]> Slope: ]]>Angle: ]]> Vert speed:]]>Speed: ]]>
XSLT 2005 Wim A Slabbekoorn. All rights reserved.
]]>
#trackrouteSpecialPointStyle
Finish point at Date: ]]>Time: ]]> Longitude: ]]>Latitude: ]]> Altitude: ]]>Bearing:]]> Time From: ]]>Dist From: ]]> Time to Next:]]>Dist to Next:]]> Up hill: ]]>Down hill: ]]> Slope: ]]>Angle: ]]> Vert speed:]]>Speed: ]]>
XSLT 2005 Wim A Slabbekoorn. All rights reserved.
]]>
#trackrouteSpecialPointStyle
Point of at Longitude: ]]>Latitude: ]]> Altitude: ]]>Bearing:]]> Time From: ]]>Dist From: ]]> Time To Next: ]]>Dist to Next:]]> Up hill: ]]>Down hill: ]]> Slope: ]]>Angle: ]]> Vert speed:]]>Speed: ]]>
XSLT 2005 Wim A Slabbekoorn. All rights reserved.
]]>
#trackPointStyle
,, 0 ,, 0
,, 0 0 0 Route 1 1 Route points: ]]> Route length: ]]> Cumulative Height: ]]> Maximum Altitude: ]]> Altitude range: ]]> Minimum Altitude: ]]> North-South degrees: ]]> East-West degrees: ]]> North-South range: ]]> East-West range: ]]> Bounderies Lon/Lat: (]]>, ) (, ]]> Route Bounderies The bounding box for the Route defining the minimum, maximum longitudes, latitudes of the the track region. 60 25 1 #BoundingBoxPolygonStyle 1 1 relativeToGround ,, ,, ,, ,, ,, Camera Views Compass Views on Routes geo-region Eye alt 50.000 Km #viewStyle 50000000 0 0 Eye alt 1.000 Km #viewStyle 1000000 0 0 Eye alt 25 Km #viewStyle 25000 0 0 North #viewStyle 66 0 North-East #viewStyle 66 45 East #viewStyle 66 90 South-East #viewStyle 66 135 South #viewStyle 66 180 South-West #viewStyle 66 225 West #viewStyle 66 270 North-West #viewStyle 66 315 Points 0 Path 1 #routepathLineStyle 1 clampedToGround 0 0 0 0 0 Start: Date: ]]>Time: ]]> Altitude: ]]>Bearing:]]> Climbed: ]]>Distance to Next: ]]> Up hill: ]]>Speed: ]]> Slope: ]]>Angle: ]]> Vert speed:]]>
XSLT 2005 Wim A Slabbekoorn. All rights reserved.
]]>
#trackrouteSpecialPointStyle
Finish point at Date: ]]>Time: ]]> Altitude]]>Bearing:]]> Climbed: ]]>Distance to Next: ]]> Up hill: ]]>Speed: ]]> Slope: ]]>Angle: ]]> Vert speed:]]>
XSLT 2005 Wim A Slabbekoorn. All rights reserved.
]]>
#trackrouteSpecialPointStyle
Point of at Date: ]]>Time: ]]> Altitude]]>Bearing:]]> Climbed: ]]>Distance to Next: ]]> Up hill: ]]>Speed: ]]> Slope: ]]>Angle: ]]> Vert speed:]]>
XSLT 2005 Wim A Slabbekoorn. All rights reserved.
]]>
#routePointStyle
,, 0 ,, 0
,, 0 Filename: Author: See more detail about this GPS map at: ]]> where you will find photos, descriptive text, references, related links and alternate file formats. ]]> Related Website: ]]> ]]> Email: @ mime-type=" " ]]> File created: Search engine Keywords: Geographical boundaries: Minumum Latitude: ]]>Minimum Longitude: ]]>Maximum Latitude: ]]>Maximum Longitude: ]]>]]> Filename: Author: Email: <a href="mailto: " target="_blank"> </a> See more detail about this GPS map at: ]]> where you will find photos, descriptive text, references, related links and alternate file formats. ]]> symbolsgpx.png root://icons/palette-3.png 0 64 32 32 ,, ,, 0 0 6371000 0?klim:klim=0; return klim.toFixed(1); } function downhillMeters(elev1, elev2) { var down = elev2 - elev1; down<0?down:down=0; return down.toFixed(1); } //Spherical law of cosines for great-circle distances of two points function distCosineLaw (lon1,lat1,lon2,lat2) { var ratio = Math.PI / 180; var R = 6371000; lon1 *= ratio lat1 *= ratio lon2 *= ratio lat2 *= ratio var d =( Math.acos( Math.sin(lat1) * Math.sin(lat2) + Math.cos(lat1) * Math.cos(lat2) * Math.cos(lon2 - lon1) ) * R).toFixed(0) ; return d; } function bearing (lon1, lat1, lon2, lat2) { var y = Math.sin(lon2 - lon1) * Math.cos(lat2); var x = Math.cos(lat1) * Math.sin(lat2) - Math.sin(lat1) * Math.cos(lat2) * Math.cos(lon2 - lon1); return Math.atan2(y, x); } function bearingDeg (lon1, lat1, lon2, lat2) { var ratio = Math.PI / 180; lon1 *= ratio lat1 *= ratio lon2 *= ratio lat2 *= ratio var y = Math.sin(lon2 - lon1) * Math.cos(lat2); var x = Math.cos(lat1) * Math.sin(lat2) - Math.sin(lat1) * Math.cos(lat2) * Math.cos(lon2 - lon1); var result = Math.floor(Math.atan2(y, x) * 180 / Math.PI); result<0?result = 360 + result:result; return result } function radToBrng (rad) { return radToDegMinSec((rad+2*Math.PI) % (2*Math.PI)); } function radToDegMinSec(rad) { return ((rad<0?'-':"") + _dms(rad)); } function _dms(rad) { var d = Math.abs(rad * 180 / Math.PI); var deg = Math.floor(d); var min = Math.floor((d-deg)*60); var sec = Math.round((d-deg-min/60)*3600); // add leading zeros if required if (deg<100) deg = '0' + deg; if (deg<10) deg = '0' + deg; if (min<10) min = '0' + min; if (sec<10) sec = '0' + sec; return deg + '\u00B0' + min + '\u2032' + sec + '\u2033'; } ]]>