Yahoo Suche Web Suche

Suchergebnisse

  1. Suchergebnisse:
  1. Curtis Gove Callan Jr. (born October 11, 1942) is an American theoretical physicist and the James S. McDonnell Distinguished University Professor of Physics at Princeton University. He has conducted research in gauge theory, string theory, instantons, black holes, strong interactions, and many other topics. He was awarded the Sakurai ...

  2. Curtis Gove Callan (* 11. Oktober 1942 in North Adams, Massachusetts) ist ein US-amerikanischer Physiker und Professor an der Princeton University . Inhaltsverzeichnis. 1 Leben und Werk. 2 Schriften. 3 Literatur. 4 Weblinks. 5 Einzelnachweise. Leben und Werk. Den Bachelor of Science erlangte er 1961 am Haverford College.

  3. Curtis Callan is a distinguished professor of physics at Princeton, who works on quantum field theory, string theory, quantum gravity, and theoretical biology. He has published papers on topics such as gene regulation, antibody diversity, and information flow in transcriptional control.

  4. www.cosmos-indirekt.de › Physik-Schule › Curtis_CallanCurtis Callan – Physik-Schule

    13. Mai 2024 · Curtis Gove Callan (* 11. Oktober 1942 in North Adams, Massachusetts) ist ein US-amerikanischer Physiker und Professor an der Princeton University. Leben und Werk. Den Bachelor of Science erlangte er 1961 am Haverford College.

  5. Curtis Gove Callan Jr., the James S. McDonnell Distinguished University Professor of Physics and a theoretical physicist with a record of distinguished service to the University, transferred to emeritus status on July 1, 2024. Curtis arrived in Princeton in the fall of 1961 to pursue a Ph.D. in physics.

  6. Search for supersymmetry with VBF tagging in the single lepton final state at s equal to 13 TeV using the CMS detector at LHC

  7. Curtis Callan is a theoretical physicist with broad interests in quantum field theory and statistical physics. He is currently working on problems in biology, with a focus on gene regulation: how it works mechanistically, how it manages to achieve rather precise results in the face of noise, and how it evolved (and evolves).