10 Tuloksia löytyi "Tiedosto:X_factor_map.png".

Tiedosto:X factor map.png

DescriptionX factor map.png English: X factor world map Date 2009 Source File:The X Factor world map.png Author GNU Free Documentation License. Permission...


Tiedosto:The X Factor world map.png

AnemoneProjectors 1425×625×8 (32932 bytes) Map showing countries with ''[[The X Factor (TV series)|The X Factor]]'' Dark blue indicates a country with its...


Tiedosto:X Factor world map.png

Herzegovina, Serbia, Montenegro and Macedonia have a regional X Factor show too, called X Factor Adria. English determination method or standard: SHA-1...


Tiedosto:Arnold's Cat Map animation (74px, zoomed, labelled).gif

size[1]*factor),\ Image.AFFINE,\ (1/float(factor),0,0,0,1/float(factor),0) ),\ (0,0) ) return newImage def saveImages(im, iteration): im.save("Catmap%04d.png"%iteration)...


Tiedosto:Arnold's Cat Map animation (74px, labelled).gif

size[1]*factor),\ Image.AFFINE,\ (1/float(factor),0,0,0,1/float(factor),0) ),\ (0,0) ) return newImage def saveImages(im, iteration): im.save("Catmap%04d.png"%iteration)...


Tiedosto:SCAARED Mind Map - X Mind.png

Commons Attribution 4.0 truetrue English Mind map for the SCAARED created in X Mind showing the factor structure of the scale, corresponding items, and...


Tiedosto:Arnold's Cat Map animation (74px).gif

size[1]*factor),\ Image.AFFINE,\ (1/float(factor),0,0,0,1/float(factor),0) ),\ (0,0) ) return newImage def saveImages(im, iteration): im.save("Catmap%04d.png"%iteration)...


Tiedosto:World 200ma 7.png

com/hersfeldtn/koppenpasta "lang.png" and "sea.png" uses scaling factor 25, that produces 1600x800 map "koppen.png" uses scaling factor 1 Data from simu: PaleoDEM...


Tiedosto:Monopole 3d radiation pattern 1.5 wavelength.png

strength positive x = r.*sin(theta).*cos(phi); #maps grid onto radiation surface y = r.*sin(theta).*sin(phi); z = r.*cos(theta); surfl(x,y,z); #creates a...


Tiedosto:Monopole 3d radiation pattern 0.7 wavelength.png

strength positive x = r.*sin(theta).*cos(phi); #maps grid onto radiation surface y = r.*sin(theta).*sin(phi); z = r.*cos(theta); surfl(x,y,z); #creates a...