Hartbeespoort, South Africa

Louis J Kapp


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 8(Granted Patents)


Company Filing History:


Years Active: 1996

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1 patent (USPTO):Explore Patents

Title: Louis J Kapp: Innovator in Heavy Material Concentration Measurement

Introduction

Louis J Kapp is a notable inventor based in Hartbeespoort, South Africa. He has made significant contributions to the field of measurement technology, particularly in determining the concentration of incombustible materials in coal. His innovative approach combines advanced radiation techniques to enhance accuracy in measurement.

Latest Patents

Kapp holds a patent for a method and apparatus designed to determine the concentration of incombustible material in coal. This method involves irradiating a predetermined volume of coal with gamma rays from two different sources, one emitting low energy and the other emitting higher energy. The back-scattered radiation is detected, and an analogue signal is generated for each detected ray. These signals are then converted into digital signals, allowing for the analysis of the concentration of incombustible material through a processed frequency spectrum. This patent showcases Kapp's expertise in utilizing radiation for practical applications in material science.

Career Highlights

Kapp is associated with the Atomic Energy Corporation of South Africa Limited, where he has applied his knowledge and skills in the field of nuclear technology. His work has contributed to advancements in measurement techniques that are crucial for various industrial applications.

Collaborations

Throughout his career, Kapp has collaborated with esteemed colleagues such as Gordon I Procter and Edward S Wesolinski. These collaborations have likely enriched his research and development efforts, leading to innovative solutions in his field.

Conclusion

Louis J Kapp's contributions to the measurement of incombustible materials reflect his dedication to innovation and technology. His patent demonstrates a significant advancement in the field, showcasing the potential for improved accuracy in material concentration measurement.

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