Location History:
- Albany, NY (US) (2002)
- Slingerlands, NY (US) (2003 - 2007)
Company Filing History:
Years Active: 2002-2007
Title: Christine J Phillips: Innovator in Chemical Design and Anti-Foam Solutions
Introduction
Christine J Phillips is a notable inventor based in Slingerlands, NY (US). She has made significant contributions to the field of chemical design and anti-foam compositions, holding a total of four patents. Her work has been instrumental in advancing technologies that enhance the efficiency of chemical processes.
Latest Patents
One of her latest patents is titled "Method and apparatus for designing and locating chemical structures." This invention relates to a method, system, apparatus, and storage medium for designing and locating chemical structures. The apparatus includes a user-accessible chemical design and query tool that features a user interface with an interactive host and a database storing graphical representations of chemical design structures. The user interface guides users in selecting a chemical design structure and submitting it to a provider system. Another significant patent is for an "Anti-foam composition," which is designed for use in laundry detergents. This composition allows the anti-foam active ingredient to be released slowly throughout the wash and rinse cycles, improving the overall effectiveness of the detergent.
Career Highlights
Christine is currently employed at General Electric Company, where she continues to innovate and develop new solutions in her field. Her work at GE has allowed her to collaborate with other talented professionals and contribute to groundbreaking projects.
Collaborations
Some of her notable coworkers include Susan Adams Nye and Robert James Perry. Their collaborative efforts have further enhanced the impact of their innovations in the industry.
Conclusion
Christine J Phillips exemplifies the spirit of innovation in the chemical engineering field. Her patents and contributions reflect her commitment to advancing technology and improving product efficiency.