Bob Bondurant School of High Performance Driving 1999 - Jun 2019
Senior Driving Instructor
International Motor Sports Association (Imsa) Jan 2014 - Jul 2018
Bondurant Pace Car Driver and Vip Hotlap Driver
Viking Performance, Inc. Jan 2014 - Jul 2018
Business Development Analyst
Bob Bondurant School of High Performance Driving Apr 2015 - May 2016
Director of Off-Road Training
Bob Bondurant School of High Performance Driving Feb 2013 - Dec 2015
Track Operations Manager
Education:
Truckee Meadows Community College 1992 - 1995
Sierra Nevada College 1991 - 1992
Earl Wooster High School 1988 - 1991
Skills:
Racing Motorsports Event Management Coaching Sponsorship Parts Training Sports Marketing Public Relations Event Planning Advertising Automotive Engineering Public Speaking Social Media Marketing Trade Shows Automotive Aftermarket Sports Automotive Repair Teaching Leadership Development Race Driver Coach Relationship Marketing Drivers Training From New Teen Drivers To Professional Race Car Drivers Track Rental Management Offsite Program Management Professional Driver Precision Driver Vehicle Product Specialist Test Driver and Analyst Communication and Speaking Social Networking Recruiting Military Fundraising
Name / Title
Company / Classification
Phones & Addresses
Austin Robison Owner
SUN GROVES LAWN AND YARD Lawn service
4888 E Westchester Dr, Chandler, AZ 85249 6029095016
Peter Schuyler Shirley - Salt Lake City UT, US Solomon Boulos - Salt Lake City UT, US Jared Moroni Johnson - Orlando FL, US Austin Huff Robison - Salt Lake City UT, US
International Classification:
G06T 15/00 G09G 5/00
US Classification:
345419, 345581
Abstract:
The present invention extends to methods, systems, and computer program products for representing polarized light in computer models. A rendering pipeline receives three dimensional modeling data (e.g., geometric primitives) for rendering a two dimensional image are received. The modeling data includes data representing a light source The light energy from the simulated transmission of particles at each pixel of the two dimensional image is calculated for any particles transmitted in an adjoint direction from a specified view point back to the light source. The light energies from each pixel are summed to calculate the total light energy present at the specified view point. The total light energy can be forwarded to other modules in rendering pipeline to more accurately render the two dimensional image, such as, for example, representing polarized light in the two dimensional image.