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Advances in Molecular Simulation
Advances in Molecular Simulation
Pubbl/distr/stampa Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Descrizione fisica 1 electronic resource (288 pages)
Soggetto topico Technology
Soggetto non controllato molecular dynamics simulation
osmosis
water transport
nanochannel
carbon nanotube
graphene
osmolyte
compartment
rhodopsins
spectral properties of rhodopsins
spectral tuning in rhodopsins
engineering of red-shifted rhodopsins
photobiology
biological photosensors
molecular modeling
multiscale
coarse graining
Monte Carlo simulation
force fields
neural network
many body interactions
sampling
local sampling
local free energy landscape
generalized solvation free energy
molecular solvation theory
three-dimensional reference interaction site model
Kovalenko-Hirata closure
biomolecular simulation
multiple time step MD
protein-ligand binding
biomolecular solvation
antibody
epitope
molecular dynamics
mutation
toll-like receptor
GPU programming
DNA damage
proton transport
drag reduction
surfactant molecules
self-assembly
coarse-grained molecular simulation
numerical method
laser-matter interaction
time-dependent Schrödinger equation
time-dependent unitary transformation method
strong-field ionization
Kramers-Henneberger frame
hairy nanoparticles
adsorption on nanoparticles
nanocarriers
computer simulations
COVID-19
SARS-CoV-2
PF-07321332
α-ketoamide
3CL protease
main protease
DFT
CASTEP
aiMD
ab initio molecular dynamics
phase transition
polymorphism
Janus particles
phase transitions
gemini
force field
parametrisation
antimicrobial
membranes
colloids with competing interactions
periodic microphases
confinement
Monte Carlo
atomistic simulation
molecular simulation
hard sphere
extreme conditions
nanocomposites
cluster
crystallization
atomic structure
packing
semi-flexible polymers
order parameter
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910557587203321
Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Introduction to modeling convection in planets and stars : magnetic field, density stratification, rotation / / Gary A. Glatzmaier
Introduction to modeling convection in planets and stars : magnetic field, density stratification, rotation / / Gary A. Glatzmaier
Autore Glatzmaier Gary A. <1949->
Edizione [Course Book]
Pubbl/distr/stampa Princeton : , : Princeton University Press, , [2014]
Descrizione fisica 1 online resource (343 p.)
Disciplina 523.4
Collana Princeton Series in Astrophysics
Princeton series in astrophysics
Soggetto topico Convection (Astrophysics) - Computer simulation
Convection (Astrophysics) - Mathematical models
Planets - Atmospheres
Stars - Atmospheres
Soggetto non controllato 2.5D spherical-shell
3D cartesian box
3D spherical-shell
Adams-Bashforth time integration scheme
Boussinesq approximation
ChebyshevІourier method
CrankЎicolson scheme
Fourier expansions
Fourier mode
Fourier transforms
Galerkin method
Nusselt number
Poisson equation
Prandtl number
Rayleigh number
RayleighЂnard convection
Reynolds number
RungeЋutta scheme
advection
anelastic approximation
anelastic model
arbitrary background field
aspect ratio
boundary conditions
boundary layers
cartesian box geometry
computer analysis
computer code
computer graphics
computer simulations
conservation equations
convection
coordinate mapping
critical Rayleigh number
density stratification
diffusion
dispersion relation
double-diffusive convection
energy
entropy
finite-amplitude simulations
finite-difference method
fluid dynamics
fluid flow
fluid velocity
horizontal background field
infinite Prandtl number
internal gravity waves
kinetic energy spectrum
linear code
linear dispersion relation
linear equations
linear model
linear stability analysis
linear stability problem
magnetic field generation
magnetic field
magneto-gravity waves
magnetoconvection
magnetohydrodynamic equations
magnetohydrodynamics
mantle convection
marginal stability
mass
momentum
nonlinear code
nonlinear convection
nonlinear evolution
nonlinear simulations
nonlinear terms
nonuniform grid
numerical code
numerical method
numerical model
oscillating instability
parallel code
parallel processing
postprocessing code
predictor-corrector scheme
pressure
rotation
salt-fingering instability
semi-implicit scheme
semiconvection instability
spatial discretization
spatial resolution
spectral method
spectral space
spherical harmonic expansions
staircase profile
temperature profile
temperature
thermal convection
thermal diffusion
thermal stratification
time integration schemes
vorticity-streamfunction formulation
vorticity
wave energy
ISBN 0-691-14172-X
1-4008-4890-3
Classificazione US 3500
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto part I. The fundamentals -- part II. Additional numerical methods -- part III. Additional physics.
Record Nr. UNINA-9910790630403321
Glatzmaier Gary A. <1949->  
Princeton : , : Princeton University Press, , [2014]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Introduction to modeling convection in planets and stars : magnetic field, density stratification, rotation / / Gary A. Glatzmaier
Introduction to modeling convection in planets and stars : magnetic field, density stratification, rotation / / Gary A. Glatzmaier
Autore Glatzmaier Gary A. <1949->
Edizione [Course Book]
Pubbl/distr/stampa Princeton : , : Princeton University Press, , [2014]
Descrizione fisica 1 online resource (343 p.)
Disciplina 523.4
Collana Princeton Series in Astrophysics
Princeton series in astrophysics
Soggetto topico Convection (Astrophysics) - Computer simulation
Convection (Astrophysics) - Mathematical models
Planets - Atmospheres
Stars - Atmospheres
Soggetto non controllato 2.5D spherical-shell
3D cartesian box
3D spherical-shell
Adams-Bashforth time integration scheme
Boussinesq approximation
ChebyshevІourier method
CrankЎicolson scheme
Fourier expansions
Fourier mode
Fourier transforms
Galerkin method
Nusselt number
Poisson equation
Prandtl number
Rayleigh number
RayleighЂnard convection
Reynolds number
RungeЋutta scheme
advection
anelastic approximation
anelastic model
arbitrary background field
aspect ratio
boundary conditions
boundary layers
cartesian box geometry
computer analysis
computer code
computer graphics
computer simulations
conservation equations
convection
coordinate mapping
critical Rayleigh number
density stratification
diffusion
dispersion relation
double-diffusive convection
energy
entropy
finite-amplitude simulations
finite-difference method
fluid dynamics
fluid flow
fluid velocity
horizontal background field
infinite Prandtl number
internal gravity waves
kinetic energy spectrum
linear code
linear dispersion relation
linear equations
linear model
linear stability analysis
linear stability problem
magnetic field generation
magnetic field
magneto-gravity waves
magnetoconvection
magnetohydrodynamic equations
magnetohydrodynamics
mantle convection
marginal stability
mass
momentum
nonlinear code
nonlinear convection
nonlinear evolution
nonlinear simulations
nonlinear terms
nonuniform grid
numerical code
numerical method
numerical model
oscillating instability
parallel code
parallel processing
postprocessing code
predictor-corrector scheme
pressure
rotation
salt-fingering instability
semi-implicit scheme
semiconvection instability
spatial discretization
spatial resolution
spectral method
spectral space
spherical harmonic expansions
staircase profile
temperature profile
temperature
thermal convection
thermal diffusion
thermal stratification
time integration schemes
vorticity-streamfunction formulation
vorticity
wave energy
ISBN 0-691-14172-X
1-4008-4890-3
Classificazione US 3500
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto part I. The fundamentals -- part II. Additional numerical methods -- part III. Additional physics.
Record Nr. UNINA-9910828146303321
Glatzmaier Gary A. <1949->  
Princeton : , : Princeton University Press, , [2014]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Water Flow, Solute and Heat Transfer in Groundwater
Water Flow, Solute and Heat Transfer in Groundwater
Autore Yakirevich Alexander
Pubbl/distr/stampa Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Descrizione fisica 1 electronic resource (236 p.)
Soggetto topico Research & information: general
Soggetto non controllato artificial ground freezing method
groundwater flow
temperature field
freezing wall
effective hydraulic conductivity
fractured media
gravitational force
numerical method
rock penetration
colloid size
colloid transport
underground water-sealed oil storage cavern
seawater intrusion
island tidal environment
vertical water curtain system
multi-physical field coupling
scenario-based projections
HYDRUS 1-D
aridity index
water balance
grassland
root water stress
groundwater protection
wellhead protection area (WHPA)
uncertainty analysis
soil moisture
groundwater recharge
evapotranspiration
vadose zone
soil hydraulic property
climate
NAPL
volume averaging
upscaling
mass transfer
fractured aquitard
groundwater pollution
microbial community’s diversity
dehalogenation
tribromoneopentyl alcohol
1-bromo-1-chloroethane
geothermal water reservoir
well spacing
direct geothermal district heating system
indirect geothermal district heating system
multiobjective optimization
technical and economic evaluation
Richards’-equation
simulation
algebraic multigrid
preconditioner
residual saturation
porous media
permeability
entrapped air
two-phase flow
ascending relief well
groundwater
seepage
sand-tank
modeling
Dupuit formula
Dupuit-Thiem formula
porous and fractured media
contaminant transport
heat transfer
parameters
colloids
microbial community
field and laboratory studies
mathematical modeling
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910557730203321
Yakirevich Alexander  
Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui