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Mode excitation Monte Carlo simulations of mesoscopically large membranes
Oded Farago
Department of Biomedical Engineering
Research output
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Contribution to journal
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Article
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peer-review
22
Scopus citations
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Dive into the research topics of 'Mode excitation Monte Carlo simulations of mesoscopically large membranes'. Together they form a unique fingerprint.
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Keyphrases
Monte Carlo Simulation
100%
Relaxation Time
100%
Mode Excitation
100%
Order of Magnitude
50%
Lipids
50%
Monte Carlo
50%
Solvent-free
50%
Thermal Fluctuations
50%
Fast Excitation
50%
Long Wavelength
50%
Linear Size
50%
Slow Relaxation
50%
Bilayer Lipid Membrane
50%
Molecular Simulation
50%
Bending Mode
50%
Monte Carlo Algorithm
50%
Fast Relaxation
50%
Coarse-grained Model
50%
Mathematics
Monte Carlo
100%
relaxation time τ
100%
Grained Model
50%
Membrane Bilayer
50%
Monte Carlo Algorithm
50%
Thermal Wavelength
50%
Chemistry
Monte Carlo Method
100%
Relaxation
100%
Bilayer Membrane
33%
Engineering
Relaxation Time
100%
Thermal Fluctuation
50%
Linear Size
50%
Biochemistry, Genetics and Molecular Biology
Lipid
100%
Bilayer Membrane
100%