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Effect of pore geometry on the compressibility of a confined simple fluid
Christopher D. Dobrzanski
, Max A. Maximov
,
Gennady Y. Gor
Chemical and Materials Engineering
Research output
:
Contribution to journal
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Article
›
peer-review
30
Scopus citations
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Dive into the research topics of 'Effect of pore geometry on the compressibility of a confined simple fluid'. Together they form a unique fingerprint.
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Keyphrases
High Temperature
100%
Pore Size
100%
Pore Geometry
100%
Compressibility
100%
Nanopore
100%
Fluid Bulk Modulus
100%
Simple Fluids
100%
Spherical Pore
100%
Cylindrical Pore
100%
Nanoporous
50%
Nanoporous Media
50%
Molecular Simulation
50%
Monte Carlo
50%
Elastic Properties
50%
Elastic Modulus
50%
Confined Fluids
50%
Ultrasonic Experiment
50%
Monte Carlo Simulation
50%
Fluid-saturated
50%
Liquid Argon
50%
Linear Function
50%
Vapor Pressure
50%
Effective Medium Theory
50%
Grand Canonical Ensemble
50%
Isothermal Compressibility
50%
Normal Boiling Point
50%
Compression Modulus
50%
Silica Pores
50%
Material Science
Pore Size
100%
Compressibility
100%
Nanopore
100%
Nanoporous Material
50%
Molecular Simulation
50%
Silicon Dioxide
50%
Elastic Moduli
50%
Elastic Property
50%