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MONITORING OF THE TROPOSPHERICAL AEROSOL USING A SPACELAB BORNE LIDAR SYSTEM.RUPPERSBERG GH; RENGER W.1976; ASTROPHYS. SPACE SCI. LIBRARY; NETHERL.; DA. 1976; VOL. 61; PP. 297-313; BIBL. 1 P. 1/2; (ATMOS. PHYS. SPACELAB. ESLAB SYMP. 11. PROC.; FRASCATI, ITALY; 1976)Conference Paper

ANFORDERUNGEN AN EINE LOKOMOTIVE IN DREHSTROMTECHNIK. = CONDITIONS A EXIGER D'UNE LOCOMOTIVE A COURANT TRIPHASERENGER W; WOLTERS H.1977; E.T.R.; DTSCH.; DA. 1977; VOL. 26; NO 1-2; PP. 25-32 (7P.); ABS. ANGL. FR. ESP.Article

SPACELAB-BORNE LIDAR-SCIENTIFIC OBJECTIVES.FIOCCO G; RENGER W; THOMAS L et al.1976; ASTROPHYS. SPACE SCI. LIBRARY; NETHERL.; DA. 1976; VOL. 61; PP. 237-254; BIBL. 2 REF.; (ATMOS. PHYS. SPACELAB. ESLAB SYMP. 11. PROC.; FRASCATI, ITALY; 1976)Conference Paper

THE USE OF THE AIRBORNE LIDAR SYSTEM "ALEX F1" FOR AEROSOL TRACING IN THE LOWER TROPOSPHEREMOERL P; REINHARDT ME; RENGER W et al.1981; BEITR. PHYS. ATMOS.; ISSN 0005-8173; DEU; DA. 1981; VOL. 54; NO 4; PP. 403-410; ABS. GER/FRE; BIBL. 9 REF.Article

UNTERSUCHUNGEN ZUR ANISOTROPIE MECHANISCHER KENNDATEN MONO- UND BIAXIAL VERSTRECKTER POLYPROPYLEN- UND POLYETHYLENTEREPHTHALAT-FOLIEN = ETUDE SUR L'ANISOTROPIE DES CARACTERISTIQUES MECANIQUES DES FEUILLES ET FILMS EN POLYETHYLENE ET POLYETHYLENETEREPHTALATE ETIRES MONO ET BIAXIALEMENTHINRICHSEN G; WACH D; RENGER W et al.1980; KUNSTSTOFFE; DEU; DA. 1980; VOL. 70; NO 5; PP. 279-284; ABS. ENG/FRE/ESP; BIBL. 7 REF.Article

Evidence of large scale ozone depletion within the arctic polar vortex 94/95 based on airborne LIDAR measurementsWIRTH, M; RENGER, W.Geophysical research letters. 1996, Vol 23, Num 8, pp 813-816, issn 0094-8276Article

Two dimensional stratospheric aerosol distributions during EASOEWIRTH, M; EHRET, G; MÖRL, P et al.Geophysical research letters. 1994, Vol 21, Num 13, pp 1287-1290, issn 0094-8276Article

Airborne remote sensing of tropospheric water vapor with a near-infrared differential absorption lidar systemEHRET, G; KIEMLE, C; RENGER, W et al.Applied optics. 1993, Vol 32, Num 24, pp 4534-4551, issn 0003-6935Article

Definition of the polar vortex edge by LIDAR data of the stratospheric aerosol: a comparison with values of potential vorticityDAMERIS, M; WIRTH, M; RENGER, W et al.Contributions to atmospheric physics. 1995, Vol 68, Num 2, pp 113-119, issn 0303-4186Article

Validation of Contour Advection simulations with airborne lidar measurements of filaments during the Second European Stratospheric Arctic and Midlatitude Experiment (SESAME)FLENTJE, H; RENGER, W; WIRTH, M et al.Journal of geophysical research. 2000, Vol 105, Num D12, pp 15417-15437, issn 0148-0227Article

The influence of multiple scattering on lidar returns by cirrus clouds and an effective inversion algorithm for the extinction coefficientRUPPERSBERG, G. H; KERSCHER, M; NOORMOHAMMADIAN, M et al.Contributions to atmospheric physics. 1997, Vol 70, Num 2, pp 91-107, issn 0303-4186Article

Comparison of cirrus height and optical depth derived from satellite and aircraft measurementsKÄSTNER, M; KRIEBEL, K. T; MEERKÖTTER, R et al.Monthly weather review. 1993, Vol 121, Num 10, pp 2708-2717, issn 0027-0644Article

Detection of cloud-top height from backscattered radiances within the oxygen A band. II, MeasurementsFISCHER, J; CORDES, W; SCHMITZ-PEIFFER, A et al.Journal of applied meteorology (1988). 1991, Vol 30, Num 9, pp 1260-1267, issn 0894-8763Article

Microphysical and optical properties of cirrus and contrails : cloud field study on 13 October 1989GAYET, J.-F; FEBVRE, G; BROGNIEZ, G et al.Journal of the atmospheric sciences. 1996, Vol 53, Num 1, pp 126-138, issn 0022-4928Article

Model-guided Lagrangian observation and simulation of mountain polar stratospheric cloudsWIRTH, M; TSIAS, A; DÖRNBRACK, A et al.Journal of geophysical research. 1999, Vol 104, Num D19, pp 23971-23981, issn 0148-0227Article

Particle microphysics and chemistry in remotely observed mountain polar stratospheric cloudsCARSLAW, K. S; WIRTH, M; TSIAS, A et al.Journal of geophysical research. 1998, Vol 103, Num D5, pp 5785-5796, issn 0148-0227Article

Aircraft-borne detection of stratospheric column amounts of O3, NO2, OClO, ClNO3, HNO3, and aerosols around the arctic vortex (79°N to 39°N) during spring 1993 : 1. Observational dataPFEILSTICKER, K; BLOM, C. E; PLATT, U et al.Journal of geophysical research. 1997, Vol 102, Num D9, pp 10801-10814, issn 0148-0227Article

Increased stratospheric ozone depletion due to mountain-induced atmospheric wavesCARSLAW, K. S; WIRTH, M; PETER, T et al.Nature (London). 1998, Vol 391, Num 6668, pp 675-678, issn 0028-0836Article

HNO3 and PSC measurements from the transall : Sequestering of HNO3 in the winter of 1994/95HÖPFNER, M; BLOM, C. E; FISCHER, H et al.Journal of atmospheric chemistry. 1998, Vol 30, Num 1, pp 61-79, issn 0167-7764Article

Aircraft lidar observations of an enhanced type Ia polar stratospheric clouds during APE-POLECATTSIAS, A; WIRTH, M; VON ZAHN, U et al.Journal of geophysical research. 1999, Vol 104, Num D19, pp 23961-23969, issn 0148-0227Article

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