Low Energy Buildngs

“White and Green”: Comparison of market-based instruments to promote energy efficiency

Environmental Engineering / Cleaner Production / Renewable Energy / Energy Policy / Energy efficiency / Manufacturing Engineering / Energy Policies / Research and Development / Low Energy Buildngs / Climate policy / Cleaner / Energy efficient / Economic Model / Interdisciplinary Engineering / Energy Efficiency / Business as Usual / Modeling and Analysis / Manufacturing Engineering / Energy Policies / Research and Development / Low Energy Buildngs / Climate policy / Cleaner / Energy efficient / Economic Model / Interdisciplinary Engineering / Energy Efficiency / Business as Usual / Modeling and Analysis

Estuarine shoreline processes in a dynamic low-energy system

Geology / Oceanography / Sediment transport / Low Energy Buildngs / Beach erosion / Ocean Dynamics / Sediment Transport / High energy / Ocean Dynamics / Sediment Transport / High energy

Oncoides Tipo Osagia en La Formación La Manga (Oxfordiano) y Su Significado Paleoecológico, Arroyo La Vaina, Mendoza

Geology / Sea Level / Stratification / Carbonate Sedimentology / Low Energy Buildngs / Neuquen Basin / Oxfordian / Sea Water / Sedimentation Rate / Neuquen Basin / Oxfordian / Sea Water / Sedimentation Rate

LECOMP: Low Energy COnsumption Mesh Protocol in WSN

Ambient Intelligence / Low Energy Buildngs / Network Routing / MESH NETWORK / Wireless Sensor Network

Low-energy acoustic plasmons at metal surfaces

Multidisciplinary / Nature / Solid State electronic devices / Superconductors / Low Energy Buildngs / Dielectric Function / Electron Density / Surface Area / Three Dimensional / Surface Plasmon / Electron Energy Loss Spectroscopy / Dielectric Function / Electron Density / Surface Area / Three Dimensional / Surface Plasmon / Electron Energy Loss Spectroscopy

Sediment resuspension across a microtidal, low-energy inner shelf

Earth Sciences / Biological Sciences / Low Energy Buildngs / Shear Stress / Suspended Sediment / Continental shelf / Spatial Variability / Bottom Boundary Layer / Water Depth / Suspended Sediment Concentration / Continental shelf / Spatial Variability / Bottom Boundary Layer / Water Depth / Suspended Sediment Concentration

Dosimetric parameters estimation using PENELOPE Monte-Carlo simulation code: Model 6711 a 125I brachytherapy seed

Monte Carlo Simulation / Monte Carlo / Brachytherapy / Radiation Dosimetry / Parameter estimation / Humans / Low Energy Buildngs / Dose rate / Clinical Sciences / Monte Carlo Method / Applied Radiation / Humans / Low Energy Buildngs / Dose rate / Clinical Sciences / Monte Carlo Method / Applied Radiation
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