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Chemistry / Entropy / Statistical mechanics / Second law of thermodynamics / Thermodynamic equilibrium / Temperature / Ludwig Boltzmann / Boltzmann entropy / Thermodynamic limit / Physics / Thermodynamic entropy / Thermodynamics


CHAPTER 16 Statistical Mechanical Modeling and Its Application to Nanosystems Keivan Esfarjani and G. Ali Mansoori
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Document Date: 2004-08-10 08:28:30


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City

Chicago / /

Country

United States / /

Currency

USD / /

Facility

University of Illinois at Chicago / /

IndustryTerm

energy levels / bottom-up technology / macroscopic systems / correct interparticle potential energy model / differential energy increase / large systems / inhomogeneous systems / mechanical energy / energy conversion devices / nonextensive systems / closed systems / biophysical systems / nano/small systems / chemical equilibriums / open pure systems / cosmic and nano systems / large tools / energy-states / internal energy resulting / energy exchanges / potential energy / interatomic and intermolecular potential energy functions / energy contents / certain small systems / energy scales / machinery / energy conversion systems / chemical potential / them applicable to small systems / thermal energy / anomalous systems / macroscopic physical systems / oil / nanoscale systems / nite systems / manufacturing paradigms / energy content / physical and chemical processes / energy / /

Organization

Nanosystems Keivan Esfarjani and G. Ali Mansoori Department of Chemical Engineering / University of Illinois at Chicago / /

Person

Rudolph Claussius / Ludwig Boltzmann / Gq / Michael Rieth / Kelvin / G. Ali Mansoori / /

ProgrammingLanguage

T / /

ProvinceOrState

Illinois / /

Technology

Thermodynamics / bottom-up technology / simulation / /

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