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Exploring and Modeling the Magma-Hydrothermal Regime
Exploring and Modeling the Magma-Hydrothermal Regime
Autore Eichelberger John C
Pubbl/distr/stampa Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2020
Descrizione fisica 1 electronic resource (262 p.)
Soggetto topico Research & information: general
Soggetto non controllato la soufrière
guadeloupe
volcanic gas
volcanic unrest
hydrothermal gas
multigas
extensometry
Krafla volcano
geothermal systems
conceptual models
volcanology
magma
hydrothermal
fracking
volcanoes
Kamchatka
igneous petrology
tectonics
heat flow
glaciation
climate
incremental pluton emplacement
contact metamorphism
petrochronology
titanite
zircon
U-Pb dating
thermometry
hydrothermal fluids
incremental intrusion
hydrothermal fluid
microstructure
dissolution
precipitation
textural coarsening
alteration
porosity
eruption
fracture
permeability
dome emplacement
hydrothermal system
RSAM
tremor
gliding spectral lines
White Island
phreatic eruptions
geyser
Uzon
CO2
TOUGH2
modeling
Kirishima volcano group
Ebinokogen Ioyama volcano
geothermal activity
multiple hydrothermal system
magmatic hydrothermal eruption
kick upwelling
Erdenet Cu–Mo deposit
cathodoluminescence
supercritical fluid
transient fluid pressure
magmatic-hydrothermal system
fluid inclusion
magma energy
magma convection
heat flux
geothermal energy
magma–hydrothermal
heat transport
gas and fluid geochemistry
phreatic eruption
volcano monitoring
geophysical imaging
drilling
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910557594203321
Eichelberger John C  
Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2020
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Optoelectronic Nanodevices
Optoelectronic Nanodevices
Autore Stylianakis Minas M
Pubbl/distr/stampa MDPI - Multidisciplinary Digital Publishing Institute, 2020
Descrizione fisica 1 electronic resource (338 p.)
Soggetto non controllato graphene oxide
textured silicon solar cells
high-efficiency
CdTe microdots
piezo-phototronic effect
electromagnetically induced transparency effect
waveguide photons
light output power
hole injection
ternary organic solar cells
UV LEDs
cathodoluminescence
V-pits
quantum confinement effect
nano-grating
metamaterials
Ga2O3
tunneling
transmittance
graphene ink
perovskite solar cells
counter electrode
nucleation layer
Ag film
AlGaN-based ultraviolet light-emitting diode
color-conversion efficiency
PeLEDs
photoelectric performance
photocurrent
charge transfer
double-layer ITO
green LED
liquid crystals
photovoltaics
electrowetting
oxidation
Fowler-Nordheim
field emission
excitation wavelength
functionalization
quantum dots
gold split-ring
cascade effect
erbium
transparent conductive electrode
compact
plasmon resonance
air-processed
FDTD
prism-structured sidewall
sheet resistance
GaN
Ti porous film
stability
flip-chip mini-LED
flexible substrate
actively tunable nanodevices
green LEDs
metasurfaces
antireflective coating (ARC)
NiCo2S4 nanotubes
InN/p-GaN heterojunction
InGaN/GaN superlattice
OAB
graded indium composition
plasmonics
polymer composites
photomultiplication
cold cathode
solvent
solar cells
controllable synthesis
tunable absorbers
interface
graphene
silicon transistor
colorimetry
light extraction
reduced graphene oxide
pinhole pattern
indium nanoparticles (In NPs)
graphene split-ring
organic solar cell
light-emitting diode
organic
plasmonic forward scattering
smooth
subwavelength metal grating
perovskite
photoluminescence
mid infrared
polarization analyzer
transparent electrode
external quantum efficiency
LED
light-emitting diodes
photodetector
p-type InGaN
quantum efficiency
2D perovskite
quantum dot
orthogonal polarization
current spreading
localized surface plasmon
Schottky barrier
ISBN 3-03928-697-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910404090103321
Stylianakis Minas M  
MDPI - Multidisciplinary Digital Publishing Institute, 2020
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui