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Michael D Gottschalk, 7114 Chucta Rd, Seymour, CT 06483

Michael Gottschalk Phones & Addresses

14 Chucta Rd, Seymour, CT 06483    203-3148562   

Statesville, NC   

Glastonbury, CT   

Hotevilla, AZ   

Work

Company: Pepsico Position: Senior art director

Education

School / High School: Villanova University- Villanova, PA 1988 Specialities: BA in Political Science

Mentions for Michael D Gottschalk

Career records & work history

Lawyers & Attorneys

Michael Gottschalk Photo 1

Michael Gottschalk - Lawyer

ISLN:
906958863
Admitted:
1990
University:
State University of New York at Albany, B.S., 1984
Law School:
University of Virginia, J.D., 1989

Medicine Doctors

Michael E. Gottschalk

Description:
Dr. Gottschalk graduated from the Rosalind Franklin University/ Chicago Medical School in 1984. He works in San Diego, CA and 1 other location and specializes in Pediatric Endocrinology. Dr. Gottschalk is affiliated with Rady Childrens Hospital-San Diego and UCSD Medical Center.

Michael Gottschalk resumes & CV records

Resumes

Michael Gottschalk Photo 16

Michael Gottschalk

Michael Gottschalk Photo 17

Michael Gottschalk

Location:
United States
Michael Gottschalk Photo 18

Michael Gottschalk - Newtown, CT

Work:
PepsiCo
Senior Art Director
SoBe Beverages - Norwalk, CT Jun 2001 to Jan 2008
Art Director/Graphic Designer
Marketing Drive (Match Drive) - Wilton, CT Jun 1996 to 2000
Digital Imaging Specialist
Education:
Villanova University - Villanova, PA 1988 to 1992
BA in Political Science

Publications & IP owners

Us Patents

Gas Turbine Engine Airfoil

US Patent:
2017012, May 4, 2017
Filed:
Mar 30, 2015
Appl. No.:
15/126371
Inventors:
- Farmington CT, US
Michael K. Gottschalk - Glastonbury CT, US
William D. Owen - Windsor CT, US
Edward J. Gallagher - West Hartford CT, US
Darryl Whitlow - Middletown CT, US
Sue-Li Chuang - Glastonbury CT, US
Mani Sadeghi - Glastonbury CT, US
International Classification:
F04D 29/38
F02C 7/36
F02K 3/06
F02C 3/04
Abstract:
In one exemplary embodiment, an airfoil for a turbine engine includes an airfoil that has pressure and suction sides and extends in a radial direction from a 0% span position at an inner flow path location to a 100% span position at an airfoil tip. The airfoil has a curve that corresponds to a relationship between a leading edge dihedral and a span position. The leading edge dihedral has a portion of the curve with a change in dihedral in the range of 90% to 100% span position of greater than 10. A positive dihedral corresponds to suction side-leaning. A negative dihedral corresponds to pressure side-leaning.

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