Kettering, OH, United States of America

Amanda O'Connell


Average Co-Inventor Count = 2.5

ph-index = 1

Forward Citations = 11(Granted Patents)


Location History:

  • Kettering, OH (US) (2013 - 2015)
  • Jersey City, NJ (US) (2019)

Company Filing History:

goldMedal3 out of 832,718 
Other
 patents

Years Active: 2013-2019

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3 patents (USPTO):Explore Patents

Title: Innovator Spotlight: Amanda O'Connell from Kettering, OH

Introduction: Amanda O'Connell is a notable inventor based in Kettering, Ohio. With a strong focus on educational tools and innovative systems, she holds three patents that highlight her creativity and dedication to improving learning experiences.

Latest Patents: Among her latest inventions is the "Multiple Vector Tension Displacement System." This invention is designed to adjust to the wearer's size, allowing for optimal tension displacement during use. Another significant patent is the "Polygonal Device for Kinesthetic Learners," which aims to assist students who thrive on hands-on learning. This polygonal device can represent various two-dimensional polygons, allowing users to manipulate its angles and sides for interactive learning experiences. The device includes non-detachable legs and supports a range of shapes, from triangles to kites.

Career Highlights: Amanda has made remarkable contributions to the field of educational tools through her inventive spirit. Her ability to create practical designs showcases her understanding of both technology and pedagogy. With each patent, Amanda continues to build a legacy that supports the learning process.

Collaborations: Throughout her professional journey, Amanda has worked alongside talented colleagues like Shannon Driskell and Stephen Jaymes Becker. Their collaborative efforts likely contribute to the innovative outcomes of their projects.

Conclusion: Amanda O'Connell represents a new wave of inventors who are making a difference in the educational landscape. Her patents reflect a commitment to enhancing learning for students through engaging and functional designs. As her career progresses, her contributions will inspire future innovations in educational tools and systems.

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