Dein Suchergebnis zum Thema: Tunnel

Big Science | Max-Planck-Gesellschaft

https://www.mpg.de/21378/big-science

In der Großforschung geht es um die Grundbausteine der Materie, um die Anfänge des Universums, aber auch um die Erschließung neuer Energiequellen. Dafür müssen finanzielle und personelle Ressourcen auf internationaler Ebene gebündelt werden. Planung, Bau und Betrieb von derlei Großprojekten nehmen oft Jahrzehnte in Anspruch.
teuren Teilchenbeschleuniger in einem ringförmigen Tunnel

Big Science | Max-Planck-Gesellschaft

https://www.mpg.de/21378/big-science?page=last

In der Großforschung geht es um die Grundbausteine der Materie, um die Anfänge des Universums, aber auch um die Erschließung neuer Energiequellen. Dafür müssen finanzielle und personelle Ressourcen auf internationaler Ebene gebündelt werden. Planung, Bau und Betrieb von derlei Großprojekten nehmen oft Jahrzehnte in Anspruch.
teuren Teilchenbeschleuniger in einem ringförmigen Tunnel

Big Science | Max-Planck-Gesellschaft

https://www.mpg.de/21378/big-science?c=2191

In der Großforschung geht es um die Grundbausteine der Materie, um die Anfänge des Universums, aber auch um die Erschließung neuer Energiequellen. Dafür müssen finanzielle und personelle Ressourcen auf internationaler Ebene gebündelt werden. Planung, Bau und Betrieb von derlei Großprojekten nehmen oft Jahrzehnte in Anspruch.
teuren Teilchenbeschleuniger in einem ringförmigen Tunnel

Wafer thin electronics | Max-Planck-Gesellschaft

https://www.mpg.de/8202825/graphene-applications

A material cannot get any thinner. Graphene consists of just one layer of carbon atoms. However, that’s not the only reason materials scientists are interested in this material: they’re primarily fascinated by its extraordinary properties. Linjie Zhi and his Partner Group at the Max Planck Institute for Polymer Research are using chemistry to optimize graphene for various applications.
chemically modified building blocks in a kind of tunnel

Electrons ride plasma wave | Max-Planck-Gesellschaft

https://www.mpg.de/12240838/awake-particle-accelerator-plasma-wave?c=12642524

There is a good chance that soon a new door will open to physicists, offering them new insights into the mysteries of the universe. The international AWAKE collaboration has made a breakthrough in its efforts to build a new type of particle accelerator. The experiment, in which electrons surf on a plasma wave, accelerates particles with far less effort than is required with the LHC, for example, or with other particle accelerators used to date. Thus, physicists could bring about particle collisions with significantly more energy than has been possible so far. Studying the traces of these collisions may help scientists to gain new insights into the Big Bang and the structure of matter.
The pathway to new particle accelerators: In the tunnel

Electrons ride plasma wave | Max-Planck-Gesellschaft

https://www.mpg.de/12240838/awake-particle-accelerator-plasma-wave

There is a good chance that soon a new door will open to physicists, offering them new insights into the mysteries of the universe. The international AWAKE collaboration has made a breakthrough in its efforts to build a new type of particle accelerator. The experiment, in which electrons surf on a plasma wave, accelerates particles with far less effort than is required with the LHC, for example, or with other particle accelerators used to date. Thus, physicists could bring about particle collisions with significantly more energy than has been possible so far. Studying the traces of these collisions may help scientists to gain new insights into the Big Bang and the structure of matter.
The pathway to new particle accelerators: In the tunnel