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Contact

Lehrstuhl für
Multiscale Simulation of Particulate Systems

Cauerstraße 3
91058 Erlangen, Germany Tel.: +49 (0)9131 85-70502 Fax: +49 (0)9131 85-70518
Friedrich-Alexander-Universität Erlangen-Nürnberg
Cluster of Excellence Engineering of Advanced Materials
Department Chemie- und Bioingenieurwesen
NVIDIA Cuda Research Center

Scholz, Dr. Christian

Dr. Christian Scholz

Research Projects
  • Chaos
  • Particle-Particle Interactions
  • Self-Organized Structures in Granular Media
Phone

09131 85-20868 (-20315)

Mail

christian.scholz@fau.de

Room

02.314

Personal Website

http://www.christianscholz.org

Publications
  • Christian Scholz
  • Anton Ldov
  • Thorsten Pöschel
  • Michael Engel
  • Hartmut Löwen

Surfactants and Rotelles in Active Chiral Fluids

Science Advances

(in print)

 
  • Christian Scholz
  • Michael Engel
  • Thorsten Pöschel

Rotating robots move collectively and self-organize

Nature Communications 9, 931

(2018)

 
  • Christian Scholz
  • Thorsten Pöschel

Erratum to: Actively Rotating Granular Particles manufactured by Rapid Prototyping

Revista Cubana de Física 34, 69

(2017)

 
  • Christian Scholz
  • Thorsten Pöschel

Velocity distribution of a homogeneously driven two-dimensional granular gas

Physical Review Letters 118, 198003

(2017)

 
  • Christian Scholz
  • Sean D Silva
  • Thorsten Pöschel

Ratcheting and tumbling motion of Vibrots

New Journal of Physics 18, 123001

(2016)

 
  • Christian Scholz
  • Achim Sack
  • Michael Heckel
  • Thorsten Pöschel

Inexpensive Mie scattering experiment for the classroom manufactured by 3D printing

European Journal of Physics 37, 055305

(2016)

 
  • Christian Scholz
  • Thorsten Pöschel

Actively rotating granular particles manufactured by rapid prototyping

Revista Cubana de Física 33, 37-38

(2016)

 
  • Christian Scholz
  • Gerd Schröder-Turk
  • Klaus Mecke

Pattern-fluid interpretation of chemical turbulence

Physical Review E 91, 042907

(2015)

 
  • Christian Scholz
  • Frank Wirner
  • Michael A. Klatt
  • Daniel Hirneise
  • Gerd E. Schröder-Turk
  • Klaus Mecke
  • Clemens Bechinger

Direct relations between morphology and transport in Boolean models

Physical Review E 92, 043023

(2015)

 
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