Location History:
- Jackson, NJ (US) (1982)
- Santa Cruz, CA (US) (1993)
- San Luis Obispo, CA (US) (1983 - 1995)
- Bay City, MI (US) (1998)
- Gordonsville, VA (US) (2003)
Company Filing History:
Years Active: 1982-2003
Title: Innovations and Contributions of James K Palmer
Introduction
James K Palmer is a notable inventor based in San Luis Obispo, California. He holds a total of 14 patents, showcasing his significant contributions to various fields of technology and innovation. His work reflects a commitment to advancing methods and devices that enhance functionality and efficiency.
Latest Patents
Among his latest patents is a method for injection and stacking of analytes in high-conductivity samples. This invention provides a technique for injecting and stacking analytes in high salt samples, utilizing both pressure injection and electrokinetic injection. The ability to stack analytes with electrokinetic injection allows for the translation of high-salt stacking from the capillary to the microchip format. Another innovative creation is the wind-operated sliding sail toy, which features a flying toy design with a first and second guideline support. This toy includes a body member that operates aerodynamically, which may consist of a frame and sail or a composite sail frameless structure. The design allows for flexibility in its construction, with support elements that can be secured to maintain the desired orientation.
Career Highlights
Throughout his career, James K Palmer has worked with various companies, including Montedoro-Whitney Corporation. His experience in these organizations has contributed to his development as an inventor and innovator.
Collaborations
James has collaborated with notable individuals such as James C Long and Charles E Kinzer. These partnerships have likely enriched his work and expanded the scope of his inventions.
Conclusion
James K Palmer's contributions to innovation through his patents and collaborations highlight his role as a significant figure in the field of invention. His work continues to influence advancements in technology and design.