0000000000560596

AUTHOR

J.m. Moreno

showing 9 related works from this author

Aerosol Lidar Intercomparison in the Framework of SPALINET—The Spanish Lidar Network: Methodology and Results

2009

Abstract—A group of eight Spanish lidars was formed in order to extend the European Aerosol Research Lidar Network–Advanced Sustainable Observation System (EARLINET-ASOS)project. This study presents intercomparisons at the hardware and software levels. Results of the system intercomparisons are based on range-square-corrected signals in cases where the lidars viewed the same atmospheres. Comparisons were also made for aeros backscatter coefficients at 1064 nm (2 systems) and 532 nm (all systems), and for extinction coefficients at 532 nm (2 systems). In total, three field campaigns were carried out between 2006 and 2007. Comparisons were limited to the highest layer found before the free tr…

AerosolsLidarXarxes de telecomunicacionsTeledetecció:Enginyeria de la telecomunicació::Telemàtica i xarxes d'ordinadors [Àrees temàtiques de la UPC]BackscatterMeteorologyPlanetary boundary layerSignal theory (Telecommunication)Inversion (meteorology)Atmospheric modelGeofísicaAerosolTroposphereSenyal Teoria del (Telecomunicació)Boundary layerNetwork performance (Telecomunication)LidarGeneral Earth and Planetary SciencesEnvironmental scienceElectrical and Electronic Engineering:Enginyeria de la telecomunicació::Processament del senyal::Processament del senyal en les telecomunicacions [Àrees temàtiques de la UPC]Remote sensingIEEE Transactions on Geoscience and Remote Sensing
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One-dimensional iron(III) and two-dimensional iron(III)nickel(II) cyanide-bridged ferromagnetic arrays from hexacyanoferrate(III) and [Ni(cyclam)]2+ …

1999

Abstract The X-ray structures and magnetic properties of a iron(III) linear chain and a honeycomb-like layered iron(III)-nickel(II) cyanide-bridged compound are reported. The former contains alternating iron sites and unexpected ferromagnetic behaviour, justified on the basis of the axial distortion from regular octahedral geometry of one of the iron ions. The latter is metamagnetic with ferromagnetic intralayers and antiferromagnetic interlayers interactions with a Neel temperature, TN= 7.7 K. The field-induced transition from an antiferro- to a ferromagnetic state takes place at Hc= 5000 G. The antiferromagnetic ordered phase exhibits spin-canting and long range ferromagnetic ordering at …

Condensed matter physics010405 organic chemistrychemistry.chemical_elementCrystal structure010402 general chemistryCondensed Matter Physics01 natural sciencesMagnetic susceptibility0104 chemical sciencesCondensed Matter::Materials Sciencechemistry.chemical_compoundNickelCrystallographyFerromagnetismchemistryCyclamAntiferromagnetismCondensed Matter::Strongly Correlated ElectronsNéel temperatureSpin canting
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CCDC 694344: Experimental Crystal Structure Determination

2010

Related Article: J.Suarez-Varela, J.M.Moreno, I.B.Maimoun, F.Lloret, J.Mrozinski, R.Kivekas, E.Colacio|2009|Cryst.Growth Des.|9|4102|doi:10.1021/cg9003438

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameterscatena-(bis((rac-557121214-hexamethyl-14811-tetraazacyclotetradecane)-(dicyanamide-N)-copper(ii)) hexakis(mu~2~-dicyanamide-NN'')-tetraaqua-bis(dicyanamide-N)-tri-manganese(ii) hexahydrate)Experimental 3D Coordinates
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CCDC 694345: Experimental Crystal Structure Determination

2010

Related Article: J.Suarez-Varela, J.M.Moreno, I.B.Maimoun, F.Lloret, J.Mrozinski, R.Kivekas, E.Colacio|2009|Cryst.Growth Des.|9|4102|doi:10.1021/cg9003438

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameterscatena-(tris(mu~2~-dicyanamide-NN'')-(rac-557121214-hexamethyl-14811-tetraazacyclotetradecane)-(dicyanamide-N')-copper(ii)-manganese(ii))Experimental 3D Coordinates
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CCDC 119191: Experimental Crystal Structure Determination

1999

Related Article: E.Colacio, J.M.Dominguez-Vera, M.Ghazi, R.Kivekas, F.Lloret, J.M.Moreno, H.Stoeckli-Evans|1999|Chem.Commun.||987|doi:10.1039/a902041a

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameterscatena-(hexakis(mu~2~-Cyano)-hexacyano-tris(14811-tetra-azacyclotetradecane)-di-iron(iii)-tri-nickel(ii) hydrate)Experimental 3D Coordinates
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CCDC 119192: Experimental Crystal Structure Determination

1999

Related Article: E.Colacio, J.M.Dominguez-Vera, M.Ghazi, R.Kivekas, F.Lloret, J.M.Moreno, H.Stoeckli-Evans|1999|Chem.Commun.||987|doi:10.1039/a902041a

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameterscatena(hexakis(mu~2~-Cyano)-hexacyano-tris(14811-tetra-azacyclotetradecane)-di-iron(iii)-tri-nickel(ii) dodecahydrate)Experimental 3D Coordinates
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CCDC 172232: Experimental Crystal Structure Determination

2001

Related Article: E.Colacio, M.Ghazi, H.Stoeckli-Evans, F.Lloret, J.M.Moreno, C.Perez|2001|Inorg.Chem.|40|4876|doi:10.1021/ic0103446

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameterscatena-(bis(mu2-Cyano)-tetracyano-(14811-tetra-azacyclotetradecane)-iron(iii)-zinc(ii) bis(mu2-cyano)-tetracyano-bis(14811-tetra-azacyclotetradecane)-iron(iii)-di-zinc(ii) ethanol solvate hydrate)Experimental 3D Coordinates
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CCDC 172231: Experimental Crystal Structure Determination

2001

Related Article: E.Colacio, M.Ghazi, H.Stoeckli-Evans, F.Lloret, J.M.Moreno, C.Perez|2001|Inorg.Chem.|40|4876|doi:10.1021/ic0103446

Space GroupCrystallographyCrystal SystemCrystal Structurecatena-(hexakis(mu~2~-Cyano)-hexacyano-tris(dl-557121214-hexamethyl-14812-tetra-azacyclotetradecane)-di-iron(iii)-tri-nickel(ii) tridecahydrate)Cell ParametersExperimental 3D Coordinates
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CCDC 694346: Experimental Crystal Structure Determination

2010

Related Article: J.Suarez-Varela, J.M.Moreno, I.B.Maimoun, F.Lloret, J.Mrozinski, R.Kivekas, E.Colacio|2009|Cryst.Growth Des.|9|4102|doi:10.1021/cg9003438

Space GroupCrystallographycatena-(bis((rac-557121214-hexamethyl-14811-tetraazacyclotetradecane)-(dicyanamide-N)-copper(ii)) octakis(mu~2~-dicyanamide-NN'')-diaqua-tri-iron(ii) trihydrate)Crystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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