Location History:
- Oak Ridge, TN (US) (2014)
- Philadelphia, TN (US) (1998 - 2016)
Company Filing History:
Years Active: 1998-2016
Title: Lee M Hively: Innovator in Scalar-Longitudinal Wave Technology
Introduction
Lee M Hively is a prominent inventor based in Philadelphia, TN (US), known for her groundbreaking work in the field of scalar-longitudinal waves. With a total of 12 patents to her name, Hively has made significant contributions to technology that harnesses these unique waveforms for various applications.
Latest Patents
Hively's latest patents include innovative systems, apparatuses, and methods for generating and utilizing scalar-longitudinal waves. One of her notable inventions involves a first apparatus designed to transmit and receive scalar-longitudinal waves, featuring a linear first conductor that operates as a linear monopole antenna. This apparatus is complemented by a tubular second conductor and an annular balun, which effectively cancels return current on the outer surface of the second conductor during operation. Another significant patent describes a bifilar coil that transmits and receives scalar-longitudinal waves by propagating electrical current in opposite directions, thereby eliminating any magnetic field interference. Additionally, Hively has developed a computer-based method for analyzing data collected from devices and human conditions, which can forewarn of critical events such as machine failures or health emergencies.
Career Highlights
Throughout her career, Hively has worked with esteemed organizations such as UT-Battelle, Inc. and Lockheed Martin Energy Research Corporation. Her work in these companies has allowed her to explore and develop advanced technologies that leverage her expertise in wave mechanics and data analysis.
Collaborations
Hively has collaborated with notable colleagues, including Robert K Abercrombie and Paul C Gailey, contributing to a rich exchange of ideas and innovations in her field.
Conclusion
Lee M Hively stands out as a pioneering inventor whose work in scalar-longitudinal waves and data analysis has the potential to revolutionize various industries. Her contributions continue to inspire advancements in technology and innovation.