I started this blog for discussing technical ideas and to share my view on different topics.
Wednesday, February 3, 2016
Tuesday, November 24, 2015
Tuesday, March 4, 2014
Monday, December 16, 2013
Thursday, November 21, 2013
Monday, November 18, 2013
Thursday, October 24, 2013
Wednesday, September 11, 2013
Monday, July 15, 2013
Wednesday, February 20, 2013
Tuesday, August 21, 2012
10 ways to speed up Windows 7
Wednesday, May 9, 2012
Wednesday, March 7, 2012
Monday, January 2, 2012
Clothing Giant H&M Defends ‘Perfect’ Virtual Models
Also “completely virtual” are the models at the center of H&M’s swimsuit and lingerie online campaigns, the Swedish-based retailer confirmed.
“It’s not a real body; it is completely virtual and made by the computer,” H&M press officer Hacan Andersson told Swedish newspaper Aftonbladet in an article questioning the company’s picture-perfect online models.
Thursday, December 22, 2011
Tuesday, November 29, 2011
Connect your things to the Internet - IoT
http://www.greenwavereality.com/
http://www.kickstarter.com/projects/supermechanical/twine-listen-to-your-world-talk-to-the-internet
Thursday, October 13, 2011
UI enviornment comparision
http://www.shinedraw.com/image-manipulation/javafx-vs-flash-vs-silverlight/
http://www.3djam.com/rozz/demo/speed_demo.aspx
http://www.youtube.com/watch?v=gqjidzjkMM0
Thursday, October 6, 2011
Quasicrystal - Nobel Prize
JERUSALEM (AP) — When Israeli scientist Dan Shechtman claimed to have stumbled upon a new crystalline chemical structure that seemed to violate the laws of nature, colleagues mocked him, insulted him and exiled him from his research group.After years in the scientific wilderness, though, he was proved right. And on Wednesday, he received the ultimate vindication: the Nobel Prize in chemistry.
The lesson?
"A good scientist is a humble and listening scientist and not one that is sure 100 percent in what he read in the textbooks," Shechtman said.
http://en.wikipedia.org/wiki/Quasicrystal
Quasiperiodical structures had been known well before the 20th-century. For example, tiles in a medieval Islamic mosque in Isfahan, Iran, are arranged in a quasicrystalline pattern.[6] In 1961, Hao Wang asked the question of whether determining if a set of tiles admits a tiling of the plane is an algorithmically unsolvable problem or not. He conjectured that it is solvable, relying on the hypothesis that any set of tiles which can tile the plane can do it periodically (hence it would suffice to try to tile bigger and bigger patterns until obtaining one that tiles periodically). But his student, Robert Berger, constructed two years later a set of some 20,000 square tiles (now called Wang tiles) which can tile the plane but not in a periodic fashion.
