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Finding Hidden Tomb Of Genghis Khan Using Non-Invasive Technologies

According to legend, Genghis Khan lies buried somewhere beneath the dusty steppe of Northeastern Mongolia, entombed in a spot so secretive that anyone who made the mistake of encountering his funeral procession was executed on the spot.

Once he was below ground, his men brought in horses to trample evidence of his grave, and just to be absolutely sure he would never be found, they diverted a river to flow over their leader's final resting place.

What Khan and his followers couldn't have envisioned was that nearly 800 years after his death, scientists at UC San Diego's Center for Interdisciplinary Science in Art, Architecture and Archaeology (CISA3) would be able to locate his tomb using advanced visualization technologies whose origins can be traced back to the time of the Mongolian emperor himself.

"As outrageous as it might sound, we're looking for the tomb of Genghis Khan," says Dr. Albert Yu-Min Lin, an affiliated researcher for CISA3. "Genghis Khan was one of the most exceptional men in all of history, but his life is too often dismissed as being that of a bloodthirsty warrior. Few people in the West know about his legacy — that he united warring tribes of Mongolia and merged them into one, that he introduced the East to the West making explorations like those of Marco Polo possible, that he tried to create a central world currency, that he introduced a written language to the Mongol people and created bridges that we still use today within the realm of international relations...

Lin and several colleagues — including Professor Maurizio Seracini, the director of CISA3 and the man behind the search for Leonardo da Vinci's lost "Battle of Anghiari" painting — are hoping to use advanced visualization and analytical technologies available at the California Institute for Telecommunications and Information Technology (Calit2) to pinpoint Khan's tomb and conduct a non-invasive archaeological analysis of the area where he is believed to be buried.
Read entire article at Science News Daily