Difference between revisions of "User:Julajupa10"

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Juan's interest include soccer as he is an avid FC Bayern Munich fan, admiring and delving into the inspiration behind architectural design, watching and following the high speed world of Formula 1, and traveling to strange and unique place whenever the opportunity arises. A fun fact about Juan is that he is trilingual being fluent in English, Spanish, and German.
 
Juan's interest include soccer as he is an avid FC Bayern Munich fan, admiring and delving into the inspiration behind architectural design, watching and following the high speed world of Formula 1, and traveling to strange and unique place whenever the opportunity arises. A fun fact about Juan is that he is trilingual being fluent in English, Spanish, and German.
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As a future Engineer, Juan seeks to find solutions to the Grand Challenges for Engineering. One article related to the Grand Challenges is:
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[http://jacobsschool.ucsd.edu/news/news_releases/release.sfe?id=735 Nanowires May Boost Solar Cell Efficiency], Daniel Kane, 13 May 2008, accessed 21 September 2017 (Economical Solar Energy).

Revision as of 04:44, 22 September 2017

Juan Rodriguez-Benitez

Juan David Enrique Rodriguez-Benitez (born 3 November 1999) is a current undergraduate student at Duke University. He graduated from Franklin Academy High school in Wake Forest, NC before enrolling in the Pratt school of Engineering at Duke University with the intent of majoring in mechanical engineering, while maintaining a pre-health track.

Juan's interest include soccer as he is an avid FC Bayern Munich fan, admiring and delving into the inspiration behind architectural design, watching and following the high speed world of Formula 1, and traveling to strange and unique place whenever the opportunity arises. A fun fact about Juan is that he is trilingual being fluent in English, Spanish, and German.

As a future Engineer, Juan seeks to find solutions to the Grand Challenges for Engineering. One article related to the Grand Challenges is: Nanowires May Boost Solar Cell Efficiency, Daniel Kane, 13 May 2008, accessed 21 September 2017 (Economical Solar Energy).