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Xinyu W Zhang, 451600 Amelia Ct #1126, Plano, TX 75075

Xinyu Zhang Phones & Addresses

1600 Amelia Ct #1126, Plano, TX 75075    972-8836216   

San Diego, CA   

2428 E University Dr #807, Auburn, AL 36830   

Richardson, TX   

23 Newcastle Dr #7, Nashua, NH 03060   

Mentions for Xinyu W Zhang

Xinyu Zhang resumes & CV records

Resumes

Xinyu Zhang Photo 21

Co Founder

Location:
San Diego, CA
Industry:
Computer Software
Work:
36氪36Kr.com Nov 2012 - Apr 2015
Front-End Engineer
Rainy Nov 2012 - Apr 2015
Co Founder
Beijing Thunisoft Corporation Limited Jul 2012 - Nov 2012
Technical Support Engineer
Education:
San Diego State University 2016 - 2018
Masters, Computer Science
Dalian University of Technology 2008 - 2012
Bachelors, Computer Science, Software Engineering
Skills:
Html, Html5, Css, Javascript, Less, Photoshop, Illustrator, Indesign
Xinyu Zhang Photo 22

Xinyu Sayen Zhang

Location:
San Diego, CA
Industry:
Internet
Work:
Http://Kidyuan.com Jun 2015 - Nov 2015
Own Startup Try
Stanford University Sep 2014 - Jun 2015
Me310 Student
University of Sicence and Technology of China (Ustc) Sep 2014 - Feb 2015
Research Assistant
University of Sicence and Technology of China (Ustc) Oct 2014 - Feb 2015
Teaching Assistant
Education:
Uc San Diego 2015 - 2017
Master of Science, Masters, Computer Science
University of Science and Technology of China 2011 - 2015
Bachelor of Engineering, Bachelors, Information Science, Engineering
University of California, Berkeley 2014 - 2014
University of California
Skills:
Couchdb, Artificial Neural Networks, Angularjs, React, After Effects, Web Development, Mobile Application Development, Machine Learning, Front End Engineering, Illustrator, Chrome Extensions, Javascript, Human Computer Interaction, Haskell, Data Mining, Software Defined Networking, Signal Processing, Css
Xinyu Zhang Photo 23

Software Engineer At Sony Computer Entertainment America

Location:
858 Mcmahon St, Starke, FL 32091
Industry:
Computer Software
Work:
Playstation
Software Engineer at Sony Computer Entertainment America
Education:
Wayne State University 2012 - 2014
Master of Science, Masters, Computer Science, Computer Graphics
Xidian University 2008 - 2012
Bachelors, Bachelor of Science, Electronics, Engineering, Communications
Skills:
C++, C, Python, Matlab, Opengl, Glsl, Opencv, Vtk, Data Structures, Algorithms, Computer Graphics, Computer Vision, Data Mining, Windows, Mac Os, Linux, Arch Linux, Ubuntu, Cmake, Visual Studio, Xcode, Qt, Maya, Houdini, Blender, Sketchup, Unity3D, Software Engineering, Software Development, 3D Rendering, Pthreads, Multithreading, Image Processing
Languages:
Mandarin
English
Xinyu Zhang Photo 24

Associate Professor

Location:
San Diego, CA
Industry:
Higher Education
Work:
University of Wisconsin-Madison Aug 2012 - Aug 2017
Assistant Professor
University of California, San Diego - Jacobs School of Engineering Aug 2012 - Aug 2017
Associate Professor
Nec Laboratories America, Inc. May 2011 - Dec 2011
Research Intern
Microsoft May 2010 - Aug 2010
Research Intern
University of Toronto Jun 2007 - Aug 2008
Research Technician
Education:
University of Michigan Jan 1, 2008 - 2012
Doctorates, Doctor of Philosophy
University of Toronto Jan 1, 2005 - 2007
Masters
Harbin Institute of Technology Jan 1, 2001 - 2005
Bachelors, Communications, Engineering, Electronics
Interests:
Ece
Wisc
Xyzhang
Http
Edu/Personal
Html
Xinyu Zhang Photo 25

Xinyu Zhang

Xinyu Zhang Photo 26

Xinyu Zhang

Interests:
Science and Technology
Social Services
Economic Empowerment
Xinyu Zhang Photo 27

Xinyu Zhang

Xinyu Zhang Photo 28

Xinyu Zhang

Location:
United States

Publications & IP owners

Wikipedia

Xinyu Zhang Photo 32

Xinyu Zhang

Xinyu Zhang (born 5 March 1955 in Inner Mongolia Ordos) is a computer software engineer. He was a teacher in the Inner Mongolia Normal University, served ...

Us Patents

Controlled Nanofiber Seeding

US Patent:
2006005, Mar 9, 2006
Filed:
Sep 7, 2004
Appl. No.:
10/936437
Inventors:
Sanjeev Manohar - Dallas TX, US
Xinyu Zhang - Richardson TX, US
Assignee:
Board Of Regents, The University Of Texas System - Austin TX
International Classification:
A61K 9/70
US Classification:
424443000
Abstract:
The present invention includes compositions and methods for the controlled formation of nano and micropolymers in a single-step that includes a structural substrate, an oxidatively reactive monomer and an oxidant to form a polymer that takes the morphology of the structural substrate.

Novel Nanocomposite For Sustainability Of Infrastructure

US Patent:
2011022, Sep 15, 2011
Filed:
Mar 1, 2011
Appl. No.:
13/038205
Inventors:
Jialai Wang - Tuscaloosa AL, US
Xinyu Zhang - Auburn AL, US
Assignee:
AUBURN UNIVERSITY, OFFICE OF TECHNOLOGY TRANSFER - Auburn AL
The University of Alabama Office for Technology Transfer - Tuscaloosa AL
International Classification:
B01J 19/10
B05D 7/00
B82Y 40/00
US Classification:
427457, 427215, 977890
Abstract:
A nanocomposite has significant social, economic and environmental benefits. By having high tensile strength and high toughness, a large number of opportunities of applying fly ashes are opened up. Besides replacing ordinary Portland cement, the nanocomposite is able to be used as an inorganic adhesive/resin to make fiber reinforced inorganic composites. The composite is fire resistant and has no volatile organic compounds. Due to its multifunctional character, the nanocomposite is able to be used as a sensing element in intelligent structures, corrosion protection coating for concrete and steel structures and even electronic devices.

Ozone And Other Reactive Gas Generator Cell And System

US Patent:
5932180, Aug 3, 1999
Filed:
Jun 9, 1997
Appl. No.:
8/871088
Inventors:
Xinyu Zhang - Malden MA
Vitaly Berkman - Brookline MA
Donald Smith - Belmont MA
Assignee:
Applied Science and Technology, Inc. - Woburn MA
International Classification:
B01J 1908
US Classification:
42218607
Abstract:
A reactive gas generator cell includes a high voltage assembly having a high voltage electrode plate and a low voltage assembly having a low voltage electrode plate. Each of the high and low voltage assemblies may include a cover plate and a channel plate. A welded metallic seal may join the high voltage assembly and the low voltage assembly to create a permanently sealed chamber between the assemblies. A refractory metal surface, which may be a tungsten surface, is disposed on at least one of the low voltage electrode plate and the high voltage electrode plate. A dielectric barrier is disposed between the high voltage electrode plate and the low voltage electrode plate. A discharge region for confining a reactive gas is defined, at least in part, by the refractory metal surface and a surface of the dielectric barrier. A spacer, which may be formed from a refractory material, may be positioned between the surface of the dielectric barrier and the refractory metal surface to define a predetermined gap.

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