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Comparing trunk/nonperiodicVSS/nonperiodicVSS.aux (file contents):
Revision 4003 by kstocke1, Fri Jan 17 19:45:57 2014 UTC vs.
Revision 4004 by kstocke1, Fri Jan 17 22:44:07 2014 UTC

# Line 59 | Line 59
59   \newlabel{eq:Xistick}{{10}{7}}
60   \newlabel{eq:S}{{11}{7}}
61   \newlabel{eq:Xia}{{12}{7}}
62 \newlabel{eq:Xibc}{{13}{7}}
62   \citation{Kuang2012}
63   \citation{Zwanzig}
64   \citation{Zwanzig}
65   \citation{Kuang2010}
66 + \newlabel{eq:Xibc}{{13}{8}}
67   \newlabel{eq:Xieff}{{14}{8}}
68   \newlabel{eq:tau}{{15}{8}}
69 \@writefile{toc}{\contentsline {section}{\numberline {4}Tests and Applications}{8}}
70 \@writefile{toc}{\contentsline {subsection}{\numberline {4.1}Thermal conductivities}{8}}
69   \gdef \LT@i {\LT@entry
70      {1}{69.5093pt}\LT@entry
71      {1}{51.0pt}\LT@entry
# Line 77 | Line 75
75   \citation{Romer2012,Zhang2005}
76   \citation{WagnerKruse}
77   \citation{WagnerKruse}
78 + \@writefile{toc}{\contentsline {section}{\numberline {4}Tests and Applications}{9}}
79 + \@writefile{toc}{\contentsline {subsection}{\numberline {4.1}Thermal conductivities}{9}}
80 + \@writefile{lot}{\contentsline {table}{\numberline {1}{\ignorespaces Calculated thermal conductivity of a crystalline gold nanoparticle of radius 40 \r A. Calculations were performed at 300 K and ambient density. Gold-gold interactions are described by the Quantum Sutton-Chen potential.}}{9}}
81 + \newlabel{table:goldTC}{{1}{9}}
82   \citation{Zhang2005}
83   \citation{Romer2012}
84   \citation{WagnerKruse}
83 \@writefile{lot}{\contentsline {table}{\numberline {1}{\ignorespaces Calculated thermal conductivity of a crystalline gold nanoparticle of radius 40 \r A. Calculations were performed at 300 K and ambient density. Gold-gold interactions are described by the Quantum Sutton-Chen potential.}}{9}}
84 \newlabel{table:goldTC}{{1}{9}}
85   \gdef \LT@ii {\LT@entry
86      {1}{81.01138pt}\LT@entry
87      {1}{51.0pt}\LT@entry
88      {1}{58.6495pt}}
89 + \@writefile{lot}{\contentsline {table}{\numberline {2}{\ignorespaces Calculated thermal conductivity of a cluster of 6912 SPC/E water molecules. Calculations were performed at 300 K and 5 atm.}}{10}}
90 + \newlabel{table:waterTC}{{2}{10}}
91 + \@writefile{toc}{\contentsline {subsection}{\numberline {4.2}Interfacial thermal conductance}{10}}
92   \gdef \LT@iii {\LT@entry
93      {1}{110.31483pt}\LT@entry
94      {1}{71.7394pt}\LT@entry
95      {1}{0.0pt}}
93 \@writefile{lot}{\contentsline {table}{\numberline {2}{\ignorespaces Calculated thermal conductivity of a cluster of 6912 SPC/E water molecules. Calculations were performed at 300 K and 5 atm.}}{10}}
94 \newlabel{table:waterTC}{{2}{10}}
95 \@writefile{toc}{\contentsline {subsection}{\numberline {4.2}Interfacial thermal conductance}{10}}
96 \@writefile{lot}{\contentsline {table}{\numberline {3}{\ignorespaces Calculated interfacial thermal conductance ($G$) values for gold nanoparticles of varying radii solvated in explicit TraPPE-UA hexane. The nanoparticle $G$ values are compared to previous results for a gold slab in TraPPE-UA hexane, revealing increased interfacial thermal conductance for non-planar interfaces.}}{10}}
96   \gdef \LT@iv {\LT@entry
97      {1}{96.74344pt}\LT@entry
98      {1}{92.00313pt}\LT@entry
# Line 101 | Line 100
100      {1}{64.79945pt}\LT@entry
101      {1}{64.79945pt}\LT@entry
102      {1}{64.43709pt}}
103 + \@writefile{lot}{\contentsline {table}{\numberline {3}{\ignorespaces Calculated interfacial thermal conductance ($G$) values for gold nanoparticles of varying radii solvated in explicit TraPPE-UA hexane. The nanoparticle $G$ values are compared to previous results for a Au(111) interface in TraPPE-UA hexane, revealing increased interfacial thermal conductance for non-planar interfaces.}}{11}}
104   \newlabel{table:interfacialconductance}{{3}{11}}
105   \@writefile{toc}{\contentsline {subsection}{\numberline {4.3}Interfacial friction}{11}}
106   \@writefile{lot}{\contentsline {table}{\numberline {4}{\ignorespaces Comparison of rotational friction coefficients under ideal ``slip'' ($\Xi ^{rr}_{\mathit  {slip}}$) and ``stick'' conditions ($\Xi ^{rr}_{\mathit  {stick}}$) and effective rotational friction coefficients ($\Xi ^{rr}_{\mathit  {eff}}$) of gold nanostructures solvated in TraPPE-UA hexane at 230 K. The ellipsoid is oriented with the long axis along the $z$ direction.}}{11}}
107 < \newlabel{table:couple}{{4}{11}}
107 > \newlabel{table:couple}{{4}{12}}
108   \@writefile{toc}{\contentsline {section}{\numberline {5}Discussion}{12}}
109   \bibdata{acs-nonperiodicVSS,nonperiodicVSS}
110   \bibcite{ASHURST:1975tg}{{1}{1975}{{Ashurst and Hoover}}{{Ashurst, and Hoover}}}

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