Ping An
Senior User Experience Designer
Pershing
Senior User Experience Designer
The Metropolitan Museum of Art 2016 - 2017
Researcher of Medialab
The Metropolitan Museum of Art Jun 2016 - Aug 2016
Media Lab Internship
Zlabs Aug 2010 - Aug 2015
Senior User Experience Designer, Data Visulization Developer
Education:
Nyu Tisch Art and Public Policy 2015 - 2017
Masters, Master of Political Science, Telecommunications
New York University 2015 - 2017
Masters, Master of Political Science
Guangzhou Academy of Fine Arts 2006 - 2010
Bachelors, Visual Communications, Design
New York University 1964 - 1965
Masters, Master of Political Science
Skills:
Html Project Management Mobile Applications Project Planning Java Social Media Research Strategic Planning User Experience Design Graphic Design Adobe Creative Suite Teamwork User Interface Design Education User Experience Usability Testing Wireframing Responsive Web Design Product Design Branding and Identity Art Direction Microsoft Office Css Invision Customer Service Storytelling Data Science Ux Research Sketch App Prototyping Experience Design Human Computer Interaction Interaction Design Information Architecture User Centered Design Machine Learning Data Visualization Data Analysis Software As A Service Communication Design Thinking Problem Solving Visual Design Design Systems Diversity and Inclusion Physical Computing Service Design Motion Design Design Principles Front End Design Photoshop Powerpoint Leadership Microsoft Excel Microsoft Word Public Speaking Team Leadership Windows Adobe Illustrator
Wentworth Institute of Technology
Staff Accountant
Citizens Financial Group, Inc. Jan 2008 - Jan 2011
Staff Accountant
State Street Sep 2007 - Dec 2007
Intern
Education:
University of Massachusetts Boston 2005 - 2007
Bachelors, Accounting
Skills:
Accounting Microsoft Office Oracle Essbase Eai Mainframe Problem Solving Analytical Skills
Shanghai Jiaotong University and Euromed Management
Sep 2012 to Dec 2012 InternChina Construction Bank, Neijiang Branch Neijiang Jun 2012 to Aug 2012 InternBIA of Junior Achievement
2010 to 2011 Project MemberYouth League Committee of Shanghai University
Sep 2009 to Jul 2010 Department Member
Education:
University of Connecticut, School of Business Stamford, CT 2013 to 2014 MSc in Financial Risk ManagementShanghai University, School of Economics 2009 to 2013 BA in Finance
Skills:
Microsoft Office such as Word, Excel, Powerpoint, Eviews, VBA. Native mandarin speaker. CFA-level 1 candidate.
Lawyers & Attorneys
Ying Hui He
License Records
Ying He
License #:
31592 - Active
Issued Date:
Nov 8, 2013
Renew Date:
Dec 1, 2015
Expiration Date:
Nov 30, 2017
Type:
Certified Public Accountant
Name / Title
Company / Classification
Phones & Addresses
Ying Jiao He
SINYEEBELL BEAUTY, INC
82-49 Broadway, Elmhurst, NY 11373
Ying Hui He
LAW OFFICE OF YINGHUI HE, PC
265 Canal St SUITE 411, New York, NY 10013
Ying Hui He
ATLANTIC REALTY 88, INC
265 Canal St SUITE 411, New York, NY 10013
Ying H. He Owner
Hui Ying Legal Services Office
265 Canal St, New York, NY 10013 2122261198
Ying He Director
Deer Consumer Products, Inc
Us Patents
Sensors Based On Negative Capacitance Field Effect Transistors
- Armonk NY, US Jianshi Tang - Elmsford NY, US Ning Li - White Plains NY, US Ying He - Yorktown Heights NY, US
International Classification:
G01N 27/22 G01N 31/22 G01N 27/414
Abstract:
Chemical sensors and methods of forming and making the same include an input terminal and an output terminal. A negative capacitance structure is configured to control a current passing horizontally from the input terminal to the output terminal, and has a first and second metal layer that are arranged vertically with respect to one another, and a ferroelectric layer positioned between the first and second metal layers. An electrode is in electrical contact with the negative capacitance structure, and is configured to change potential, to exceed a threshold, thereby triggering a discontinuous polarization change in the negative capacitance structure.
Nanostructure Featuring Nano-Topography With Optimized Electrical & Biochemical Properties
- Armonk NY, US Hariklia Deligianni - Alpine NJ, US Damon B. Farmer - White Plains NY, US Andrei Fustochenko - New City NY, US Ying He - Champaign IL, US Emily R. Kinser - Poughkeepsie NY, US Yu Luo - Hopewell Junction NY, US Roy Yu - Poughkeepsie NY, US
International Classification:
H01L 21/308 B81C 1/00 G03F 7/00
Abstract:
A method for forming a nanostructure includes coating an exposed surface of a base layer with a patterning layer. The method further includes forming a pattern in the patterning layer including nano-patterned non-random openings, such that a bottom portion of the non-random openings provides direct access to the exposed surface of the base layer. The method also includes depositing a material in the non-random openings in the patterning layer, such that the material contacts the exposed surface to produce repeating individually articulated nano-scale features. The method includes removing remaining portions of the patterning layer. The method further includes forming an encapsulation layer on exposed surfaces of the repeating individually articulated nanoscale features and the exposed surface of the base layer.
Ultrasensitive Sensor Based On A Piezoelectric Transistor
Chemical sensors include a functionalized electrode configured to change surface potential in the presence of an analyte. A piezoelectric element is connected to the functionalized electrode. A piezoresistive element is in contact with the piezoelectric element.
Ultrasensitive Sensor Based On A Piezoelectric Transistor
Methods of using and making chemical sensors include exposing a functionalized electrode to a substance to be tested. The functionalized electrode is electrically connected to a sensor having a piezoelectric element and a piezoresistive element. A voltage on the functionalized electrode controls a resistance of the piezoresistive element. A current is measured passing through the piezoresistive element. The presence of the analyte is determined based on the measured current.
Ultrasensitive Sensor Based On A Piezoelectric Transistor
Chemical sensors and methods of using and making the same include a functionalized electrode configured to change surface potential in the presence of an analyte. A piezoelectric element is connected to the functionalized electrode and is configured to change in volume in accordance with the surface potential of the functionalized electrode. A piezoresistive element is in contact with the piezoelectric element and is configured to change in resistance in accordance with the volume of the piezoelectric element.
Sensors Based On Negative Capacitance Field Effect Transistors
- Armonk NY, US Jianshi Tang - Elmsford NY, US Ning Li - White Plains NY, US Ying He - Yorktown Heights NY, US
International Classification:
G01N 27/22 G01N 27/414 G01N 31/22
Abstract:
Chemical sensors and methods of forming and making the same include a semiconductor substrate having an input terminal and an output terminal. A negative capacitance structure is positioned on the semiconductor substrate and is configured to control a current passing from the input terminal to the output terminal. A functionalized electrode is in electrical contact with the negative capacitance structure and is configured to change surface potential in the presence of an analyte, such that a phase change in the negative capacitance structure is triggered when the surface potential exceeds a threshold.
Youtube
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