MaxwellX builds from published work.
MaxwellX is a new company built from an old tradition: fields, force, geometry, measurement, and exploration.
Mentioning a researcher, institution, or paper reflects scientific lineage and public citation. It creates no affiliation, endorsement, partnership, or approval.
People and work categories
James Clerk Maxwell
Electromagnetic field theory.
Hendrik Casimir
Vacuum-boundary force.
Steven Lamoreaux
Experimental Casimir force measurement.
Jeremy Munday, Calum Shelden, and collaborators
3D nanostructure Casimir force control.
Federico Capasso, V. Adrian Parsegian, Jeremy Munday
Repulsive Casimir-Lifshitz force in fluid systems.
Wilson, Delsing, Nori, Johansson, and collaborators
Dynamic Casimir effect in superconducting circuits.
Lähteenmäki, Paraoanu, Hassel, Hakonen
Josephson metamaterial dynamic Casimir experiment.
Pendry, Schurig, Smith
Transformation optics and electromagnetic field control.
Michael Levin and bioelectricity researchers
Bioelectricity, patterning, and regeneration.
Min Zhao and electrotaxis researchers
Electric fields and directed cell migration.
Light-driven micro/nanomotor researchers
Interface-centered design of microscale motion.
NSF NNCI and shared-facility networks
Access paths for nanoscale fabrication and characterization.
---
John Harvey Karam, MD
Physician-scientist, UCSF professor, diabetes researcher, master clinician, educator, and humanitarian.
Dr. Karam’s work helped shape modern understanding of insulin resistance, glucagon physiology, diabetes genetics, and clinical diabetes education. His example also shapes MaxwellX’s human standard: humility before knowledge, respect for every person, and science in service of those who need it. Christopher names Dr. Karam, his uncle, as a role model for MaxwellX.