Total aerosol effect: radiative forcing or radiative flux perturbation?
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Approaches to Observe Anthropogenic Aerosol-Cloud InteractionsEvaluations of tropospheric aerosol properties simulated by the community earth system model with a sectional aerosol microphysics schemeAnthropogenic aerosols and the distribution of past large-scale precipitation change.Strong constraints on aerosol-cloud interactions from volcanic eruptions.Changes in the optical properties of benzo[a]pyrene-coated aerosols upon heterogeneous reactions with NO2 and NO3.Forty-year (1971-2010) semiquantitative observations of visibility-cloud-precipitation in Korea and its implication for aerosol effects on regional climate.Quantifying sources of inter-model diversity in the cloud albedo effectA simple model of global aerosol indirect effectsNonlinear climate response to regional brightening of tropical marine stratocumulusBayesian estimation of climate sensitivity based on a simple climate model fitted to observations of hemispheric temperatures and global ocean heat contentDependence of climate forcing and response on the altitude of black carbon aerosolsQuantifying components of aerosol-cloud-radiation interactions in climate modelsEvaluating adjusted forcing and model spread for historical and future scenarios in the CMIP5 generation of climate modelsCloud Adjustment and its Role in CO2 Radiative Forcing and Climate Sensitivity: A ReviewPrecipitation, radiative forcing and global temperature changeDimming over the oceans: Transient anthropogenic aerosol plumes in the twentieth centuryDroplet nucleation: Physically-based parameterizations and comparative evaluationEffective radiative forcing from historical land use changeImpact of preindustrial to present-day changes in short-lived pollutant emissions on atmospheric composition and climate forcingThe roles of aerosol direct and indirect effects in past and future climate changeAerosol effects on cirrus through ice nucleation in the Community Atmosphere Model CAM5 with a statistical cirrus schemeWhy does knowledge of past aerosol forcing matter for future climate change?Disentangling greenhouse warming and aerosol cooling to reveal Earth’s climate sensitivityDetermination of Earth’s Transient and Equilibrium Climate Sensitivities from Observations Over the Twentieth Century: Strong Dependence on Assumed ForcingObserving and Modeling Earth’s Energy FlowsConfronting the “Indian summer monsoon response to black carbon aerosol” with the uncertainty in its radiative forcing and beyondRadiative forcing due to major aerosol emitting sectors in China and IndiaMeasurements of regional-scale aerosol impacts on cloud microphysics over the East China Sea: Possible influences of warm sea surface temperature over the Kuroshio ocean current
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P2860
Total aerosol effect: radiative forcing or radiative flux perturbation?
description
im April 2010 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована у квітні 2010
@uk
name
Total aerosol effect: radiative forcing or radiative flux perturbation?
@en
Total aerosol effect: radiative forcing or radiative flux perturbation?
@nl
type
label
Total aerosol effect: radiative forcing or radiative flux perturbation?
@en
Total aerosol effect: radiative forcing or radiative flux perturbation?
@nl
prefLabel
Total aerosol effect: radiative forcing or radiative flux perturbation?
@en
Total aerosol effect: radiative forcing or radiative flux perturbation?
@nl
P2093
P50
P356
P1476
Total aerosol effect: radiative forcing or radiative flux perturbation?
@en
P2093
P304
P356
10.5194/ACP-10-3235-2010
P407
P577
2010-04-06T00:00:00Z