Cargando…
Princeton Conference Festschrift 250th Birthday on Critical Problems in Physics
The past century has seen fantastic advances in physics, from the discovery of the electron, x-rays, and radioactivity, to the era of incredible solid state devices, computers, quarks and leptons, and the standard model. But what of the next? Many scientists think we are on the threshold of an even...
Autores principales: | , , |
---|---|
Lenguaje: | eng |
Publicado: |
Princeton Univ. Press
1997
|
Materias: | |
Acceso en línea: | http://cds.cern.ch/record/320773 |
_version_ | 1780890672819077120 |
---|---|
author | Fitch, Val Logsdon Marlow, Daniel R Dementi, Margit A E |
author_facet | Fitch, Val Logsdon Marlow, Daniel R Dementi, Margit A E |
author_sort | Fitch, Val Logsdon |
collection | CERN |
description | The past century has seen fantastic advances in physics, from the discovery of the electron, x-rays, and radioactivity, to the era of incredible solid state devices, computers, quarks and leptons, and the standard model. But what of the next? Many scientists think we are on the threshold of an even more exciting new era in which breakthroughs in a startling variety of directions will produce significant changes in our understanding of the natural world. In this book, a group of eminent scientists define and elaborate on these new directions. Ed Witten and Frank Wilczek discuss string theory and the future of particle physics; Donald Perkins describes the search for neutrino oscillations; Alvin Tollestrup reveals dreams of a muon collider at Fermilab to probe the heart of “elementary” particles; and Robert Palmer anticipates a new generation of particle accelerators. Thibault Damour reviews classical gravitation and the relevant new high-precision experiments; Kip Thorne describes the exciting future for gravitational wave astronomy; and Paul Steinhardt examines the recent breakthroughs in observational cosmology and explains what future experiments might reveal. James Langer explores nonequilibrium statistics and relates it to the origins of complexity; Harry Swinney takes an experimentalist’s view of the emergence of order in seemingly chaotic systems; and John Hopfield describes an extremely unusual dynamical system — the human brain. Bruce Hillman, M. D., discusses the recent developments in imaging techniques that have brought about outstanding advances in medical diagnostics. T.V. Ramakrishnan looks at high-temperature superconductors, which could eventually revolutionize the solid-state technology on which society is already highly dependent. |
id | cern-320773 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 1997 |
publisher | Princeton Univ. Press |
record_format | invenio |
spelling | cern-3207732021-04-22T21:20:11Zhttp://cds.cern.ch/record/320773engFitch, Val LogsdonMarlow, Daniel RDementi, Margit A EPrinceton Conference Festschrift 250th Birthday on Critical Problems in PhysicsOther Fields of PhysicsThe past century has seen fantastic advances in physics, from the discovery of the electron, x-rays, and radioactivity, to the era of incredible solid state devices, computers, quarks and leptons, and the standard model. But what of the next? Many scientists think we are on the threshold of an even more exciting new era in which breakthroughs in a startling variety of directions will produce significant changes in our understanding of the natural world. In this book, a group of eminent scientists define and elaborate on these new directions. Ed Witten and Frank Wilczek discuss string theory and the future of particle physics; Donald Perkins describes the search for neutrino oscillations; Alvin Tollestrup reveals dreams of a muon collider at Fermilab to probe the heart of “elementary” particles; and Robert Palmer anticipates a new generation of particle accelerators. Thibault Damour reviews classical gravitation and the relevant new high-precision experiments; Kip Thorne describes the exciting future for gravitational wave astronomy; and Paul Steinhardt examines the recent breakthroughs in observational cosmology and explains what future experiments might reveal. James Langer explores nonequilibrium statistics and relates it to the origins of complexity; Harry Swinney takes an experimentalist’s view of the emergence of order in seemingly chaotic systems; and John Hopfield describes an extremely unusual dynamical system — the human brain. Bruce Hillman, M. D., discusses the recent developments in imaging techniques that have brought about outstanding advances in medical diagnostics. T.V. Ramakrishnan looks at high-temperature superconductors, which could eventually revolutionize the solid-state technology on which society is already highly dependent.Princeton Univ. Pressoai:cds.cern.ch:3207731997 |
spellingShingle | Other Fields of Physics Fitch, Val Logsdon Marlow, Daniel R Dementi, Margit A E Princeton Conference Festschrift 250th Birthday on Critical Problems in Physics |
title | Princeton Conference Festschrift 250th Birthday on Critical Problems in Physics |
title_full | Princeton Conference Festschrift 250th Birthday on Critical Problems in Physics |
title_fullStr | Princeton Conference Festschrift 250th Birthday on Critical Problems in Physics |
title_full_unstemmed | Princeton Conference Festschrift 250th Birthday on Critical Problems in Physics |
title_short | Princeton Conference Festschrift 250th Birthday on Critical Problems in Physics |
title_sort | princeton conference festschrift 250th birthday on critical problems in physics |
topic | Other Fields of Physics |
url | http://cds.cern.ch/record/320773 |
work_keys_str_mv | AT fitchvallogsdon princetonconferencefestschrift250thbirthdayoncriticalproblemsinphysics AT marlowdanielr princetonconferencefestschrift250thbirthdayoncriticalproblemsinphysics AT dementimargitae princetonconferencefestschrift250thbirthdayoncriticalproblemsinphysics |