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8篇 您的检索式:作者名="Pietschnig"
    题名 作者 年代 出处 被引量
1Finger, sex, and side differences in fingertip size and lack of association with image-based digit ratio(2D: 4D) measurements 显示文摘Voracek M Pietschnig J Oeckher M 2008Percept Mot Skills2008,107,2:1
2Mozart effect–Shmozart effect: A meta-analysis显示文摘Jakob Pietschnig Martin Voracek Anton K. Formann 2010Intelligence2010,,3:1
3Structure and Catalytic Properties of MgO-supported Vanadium Oxide in the Selective Oxidation of Cyclohexane显示文摘Aboelfetoh E F Fechtelkord M Pietschnig R 2010J Mol Catal A:Chem2010,318,12:1
4Lead and mercury in breast milk显示文摘Gundacker C Pietschnig B Wittmann KJ 2002Pediatrics2002,110,5:1
5An investigation of weight bias against women andits associations with individual difference factors显示文摘Swami V Pietschnig J Stieger S Tovee M J VoracekM 2010Body Image2010,7,:1
6Mozart effect-Shmozart effect: A meta-analysis显示文摘Pietschnig J Voracek M Formarm AK 2010Intelligence2010,38,3:1
7The Relationship between Model Biases in East Asian Summer Monsoon Rainfall and Land Evaporation显示文摘The East Asian Summer Monsoon(EASM)provides the majority of annual rainfall to countries in East Asia.Although state-of-the-art models broadly project increased EASM rainfall,the spread of projections is large and simulations of present-day rainfall show significant climatological biases.Systematic evapotranspiration biases occur locally over East Asia,and globally over land,in simulations both with and without a coupled ocean.This study explores the relationship between evapotranspiration and EASM precipitation biases.First,idealized model simulations are presented in which the parameterization of land evaporation is modified,while sea surface temperature is fixed.The results suggest a feedback whereby excessive evapotranspiration over East Asia results in cooling of land,a weakened monsoon low,and a shift of rainfall from the Philippine Sea to China,further fueling evapotranspiration.Cross-model regressions against evapotranspiration over China indicate a similar pattern of behavior in Atmospheric Model Intercomparison Project(AMIP)simulations.Possible causes of this pattern are investigated.The feedback is not explained by an overly intense global hydrological cycle or by differences in radiative processes.Analysis of land-only simulations indicates that evapotranspiration biases are present even when models are forced with prescribed rainfall.These are strengthened when coupled to the atmosphere,suggesting a role for land-model errors in driving atmospheric biases.Coupled atmosphere-ocean models are shown to have similar evapotranspiration biases to those in AMIP over China,but different precipitation biases,including a northward shift in the ITCZ over the Pacific and Atlantic Oceans.Ruth GEEN Marianne PIETSCHNIG Shubhi AGRAWAL Dipanjan DEY FHugo LAMBERT Geoffrey KVALLIS 2023Advances in Atmospheric Sciences2023,40,11:1
8显示文摘Helluy X Pietschnig R Sebald A 2003Solid State Nucl Magn Reson2003,24,4:1
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