<--- Back to Details
First PageDocument Content
Crystallography / Mineralogy / Condensed matter physics / Materials science / Snow / Crystal growth / Crystal / Snowflake / Ice crystals / Chemistry / Matter / Meteorology
Date: 2009-10-09 11:17:55
Crystallography
Mineralogy
Condensed matter physics
Materials science
Snow
Crystal growth
Crystal
Snowflake
Ice crystals
Chemistry
Matter
Meteorology

Aerodynamic Stability and the Growth of Triangular Snow Crystals K. G. Libbrecht and H. M. Arnold Department of Physics, California Institute of Technology Pasadena, California[removed]Keywords: Crystal growth, crystal mo

Add to Reading List

Source URL: www.its.caltech.edu

Download Document from Source Website

File Size: 2,51 MB

Share Document on Facebook

Similar Documents

INSTYTUT TECHNOLOGII MATERIA£ÓW ELEKTRONICZNYCH Institute of Electronic Materials Technology – Warsaw International Forum on Science and Technology of Crystal Growth March, Sendai, Japan  JAN CZOCHRALSKI AC

INSTYTUT TECHNOLOGII MATERIA£ÓW ELEKTRONICZNYCH Institute of Electronic Materials Technology – Warsaw International Forum on Science and Technology of Crystal Growth March, Sendai, Japan JAN CZOCHRALSKI AC

DocID: 1uYUf - View Document

A THERMAL ELASTIC MODEL FOR DIRECTIONAL CRYSTAL GROWTH WITH WEAK ANISOTROPY JINBIAO WU∗ , C. SEAN BOHUN† , AND HUAXIONG HUANG‡ Abstract. In this paper we present a semi-analytical thermal stress solution for direct

A THERMAL ELASTIC MODEL FOR DIRECTIONAL CRYSTAL GROWTH WITH WEAK ANISOTROPY JINBIAO WU∗ , C. SEAN BOHUN† , AND HUAXIONG HUANG‡ Abstract. In this paper we present a semi-analytical thermal stress solution for direct

DocID: 1uGFD - View Document

Predicting material parameters for intrinsic point defect diffusion in Silicon Crystal Growth Michael Griebel1, Lukas Jager2 and Axel Voigt3 1  Institut für Angewandte Mathematik, Universität Bonn, Wegelerstr. 6, 53115

Predicting material parameters for intrinsic point defect diffusion in Silicon Crystal Growth Michael Griebel1, Lukas Jager2 and Axel Voigt3 1 Institut für Angewandte Mathematik, Universität Bonn, Wegelerstr. 6, 53115

DocID: 1uxmG - View Document

Crystal Growth 101 Solutions for Crystal Growth Table of Contents Pages

Crystal Growth 101 Solutions for Crystal Growth Table of Contents Pages

DocID: 1sSqz - View Document

Computing the crystal growth rate by the interface pinning method Ulf R. Pedersen, Felix Hummel, and Christoph Dellago Citation: The Journal of Chemical Physics 142, ); doi:  View online: htt

Computing the crystal growth rate by the interface pinning method Ulf R. Pedersen, Felix Hummel, and Christoph Dellago Citation: The Journal of Chemical Physics 142, ); doi: View online: htt

DocID: 1rVOI - View Document