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Research into propulsion concepts capable of operating efficiently across multiple flight environments.
Independent research investigating how plasma confinement geometry influences plasma longevity, stability, and future propulsion applications.
CAD-designed propulsion architecture exploring a levitated dipole plasma confinement configuration for future advanced propulsion applications.
Exploring technologies that could make large-scale space operations more feasible.
Innovative vehicle concepts that bridge atmospheric and orbital flight.
Short conversations with aerospace leaders sharing advice, career lessons, and insights for the next generation.
Service projects, mission experiences, and reflections completed alongside fellow Notre Dame students.
The foundation of my journey and the support system behind my growth.
My Catholic faith and commitment to serving others.
Academic journey, engineering interests, and future studies.
Running, soccer, endurance sports, and lessons learned through competition.
Mechanical design leadership and competitive robotics experience.
Aerospace club, leadership, and community involvement.
Cross country, soccer, track, and athletic achievements.
Head of community service, admissions representative, and tutoring.
Academic achievement and leadership recognition.
Design projects, engineering prototypes, and patent-pending innovations.