This is a guide for aligning images.
See the full Advanced Markdown doc for more tips and tricks
<!-- Example #1 - no styling --> | |
Made with ❤ in Switzerland | |
Made with ♥ in Switzerland | |
Made with ♡ in Switzerland | |
Made with ❤️ in Switzerland | |
Made with ♥️ in Switzerland | |
<!-- Example #2 - inline-styled ❤ --> | |
Made with <span style="color: #e25555;">♥</span> in Switzerland | |
Made with <span style="color: #e25555;">♥</span> in Switzerland |
This is a guide for aligning images.
See the full Advanced Markdown doc for more tips and tricks
Cython has two major benefits:
Cython gains most of it's benefit from statically typing arguments. However, statically typing is not required, in fact, regular python code is valid cython (but don't expect much of a speed up). By incrementally adding more type information, the code can speed up by several factors. This gist just provides a very basic usage of cython.
# extracted from http//www.naturalearthdata.com/download/110m/cultural/ne_110m_admin_0_countries.zip | |
# under public domain terms | |
country_bounding_boxes = { | |
'AF': ('Afghanistan', (60.5284298033, 29.318572496, 75.1580277851, 38.4862816432)), | |
'AO': ('Angola', (11.6400960629, -17.9306364885, 24.0799052263, -4.43802336998)), | |
'AL': ('Albania', (19.3044861183, 39.624997667, 21.0200403175, 42.6882473822)), | |
'AE': ('United Arab Emirates', (51.5795186705, 22.4969475367, 56.3968473651, 26.055464179)), | |
'AR': ('Argentina', (-73.4154357571, -55.25, -53.628348965, -21.8323104794)), | |
'AM': ('Armenia', (43.5827458026, 38.7412014837, 46.5057198423, 41.2481285671)), |
People
![]() :bowtie: |
😄 :smile: |
😆 :laughing: |
---|---|---|
😊 :blush: |
😃 :smiley: |
:relaxed: |
😏 :smirk: |
😍 :heart_eyes: |
😘 :kissing_heart: |
😚 :kissing_closed_eyes: |
😳 :flushed: |
😌 :relieved: |
😆 :satisfied: |
😁 :grin: |
😉 :wink: |
😜 :stuck_out_tongue_winking_eye: |
😝 :stuck_out_tongue_closed_eyes: |
😀 :grinning: |
😗 :kissing: |
😙 :kissing_smiling_eyes: |
😛 :stuck_out_tongue: |
import matplotlib,numpy | |
import pylab | |
# A random colormap for matplotlib | |
cmap = matplotlib.colors.ListedColormap ( numpy.random.rand ( 256,3)) | |
pylab.imshow ( Z, cmap = cmap) | |
pylab.show() |