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The Teenage Winners of Google’s Global Science Fair [PICS]

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Google’s first-ever Global Science Fair showed off advances in chemotherapy and carcinogen research, turbine design and more — all from teenage researchers.

At a packed event this week in Mountain View, California, 15 teens presented their research to a panel of judges that included “father of the Internet” Vint Cerf, Scientific American Editor in Chief Mariette DiChristina and CERN Director General Rolf-Dieter Heurer.

Lauren Hodge won the 13- to 14-year-old age group with her study of the effect of marinades on the level of carcinogens in grilled chicken. Naomi Shah won in the 15- to 16-year-old age group with her study of the inverse relationship between certain environmental factors and a reliance on asthma medications. Shree Bose won the 17- to 18-year-old age group with her study of AMPK’s effect on chemotherapy drugs.

Bose was also the grand prize winner, earning herself a 10-day trip to the Galapagos Islands, an internship at the CERN particle accelerator and a $50,000 scholarship.

Google launched its Global Science Fair earlier this year, asking students to submit their projects online. From that group, 15 finalists competed for top honors.

Check out all the finalists and their projects in the gallery of photos we’ve assembled below.


Welcome to the Google Science Fair




Google held its first-ever science fair in Building 43.


Students at the Door




A group of students get their badges for the science fair.


Google Science Fair Sponsors




The science fair is sponsored by LEGO and National Geographic.


The Elements




The walls of the science fair room were lined with different elements from the periodic table.


Luke Taylor




Taylor's project demonstrated that NXT robots are capable of understanding the natural English language, therefore simplifying the programming of such robots.


A Closer Look at the Robot




This is one of Taylor's robots.


Skanda Koppula




Koppula's project "displayed two algorithms created to successfully collect, process and distribute marine data in order to effectively explore vast areas of the oceans."


An Explanation




Koppula explains his research.


Matthew Morris




Morris's project "concluded that a hydrodynamic keel on a sailboat performs more effectivley and efficiently than a canting keel while traveling both upwind and downwind."


Sailboat




A closer look at Morris's sailboat model.


Christopher Nielsen




Nielsen's project "displayed that an inexpensive webcam stereoscopic system could be developed to track a mobile platform through the development of algorithms."


Close-up




A close-up of a part of Nielsen's system.


Harine Ravichandran




Ravichandran's project "concluded that multilevel inverters can overcome power shortages, or voltage sags, when connected in a single phase circuit."


Vint Cerf




Vint Cerf, one of the fathers of the Internet and Google's chief Internet evangelist, speaks with Ravichandran.


Daniel Arnold




Arnold's project "concluded that by improving the switch design of a track to a spring switch combined with an additional spring, zero train derailments would occur."


Vighnesh Leonardo Shiv




Shiv's project "displayed sinusoidal modeling, onset detection and machine learning algorithms in order to automatically analyze music."


Automatic Music Analysis




This shows some of the data Shiv collected in his research.


Gavin Ovsak




Ovsak's project "concluded that in order to make a turbine work efficiently while submerged under water, the fin shape would have to differ while going against and toward the water. The new fin shape allowed for the turbine to perform at its maximum efficiency."


Turbine Model




A closer look at Ovsak's underwater turbine model.


Ovsak and Vint Cerf




Google VP Vint Cerf questions Ovsak on his project.


Ovsak Explains His Fin Design




Ovsak explains how his fin shape makes submerged turbines more effective.


Michelle Guo





Guo's projected "concluded that metformin and cinnamon, both capable of insulin sensitizing, caused untreated cells to produce twice the amount of

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