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kw.\*:("Particule ultrafine")

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Zum Verlauf der Trennkurve des Hydrozyklons im Feinstkornbereich = The hydrocyclone's separation curve in the ultra-fines range = Tracé de la courbe de coupure dans la fraction très fineDUECK, Johann; NEESSE, Thomas.AT. Aufbereitungs-Technik (1990). 2003, Vol 44, Num 7, pp 17-25, issn 1434-9302, 9 p.Article

A thermophoretic precipitator for the representative collection of atmospheric ultrafine particles for microscopic analysisLORENZO, R; KAEGI, R; GEHRIG, R et al.Aerosol science and technology. 2007, Vol 41, Num 10, pp 934-943, issn 0278-6826, 10 p.Article

Field comparison of P-trak and condensation particle countersYIFANG ZHU; NU YU; KUHN, Thomas et al.Aerosol science and technology. 2006, Vol 40, Num 6, pp 422-430, issn 0278-6826, 9 p.Article

Seasonal trends of concentration and size distribution of ultrafine particles near major highways in Los AngelesYIFANG ZHU; HINDS, William C; SI SHEN et al.Aerosol science and technology. 2004, Vol 38, pp 5-13, issn 0278-6826, 9 p., SUP1Article

Photokilling squamous carcinoma cells SCCVII with ultrafine particles of selected metal oxidesIVANKOVIC, Sinisa; GOTIC, Marijan; JURIN, Mislav et al.Journal of sol-gel science and technology. 2003, Vol 27, Num 2, pp 225-233, issn 0928-0707, 9 p.Article

Use of Subcritical CO2 for Production of Ultrafine Particles by Pressure Reduction of Gas-Expanded Organic LiquidsDALVI, Sameer V; MUKHOPADHYAY, Mamata.Industrial & engineering chemistry research. 2009, Vol 48, Num 12, pp 5696-5707, issn 0888-5885, 12 p.Article

Antiangiogenic properties of gold nanoparticlesMUKHERJEE, Priyabrata; BHATTACHARYA, Resham; PING WANG et al.Clinical cancer research. 2005, Vol 11, Num 9, pp 3530-3534, issn 1078-0432, 5 p.Article

Physical and chemical characteristics and volatility of PM in the proximity of a light-duty vehicle freewayKUHN, Thomas; BISWAS, Subhasis; FINE, Philip M et al.Aerosol science and technology. 2005, Vol 39, Num 4, pp 347-357, issn 0278-6826, 11 p.Article

Airborne fine and ultrafine particles near the World Trade Center disaster siteCOHEN, Beverly S; HEIKKINEN, Maire S. A; HAZI, Yair et al.Aerosol science and technology. 2004, Vol 38, Num 4, pp 338-348, issn 0278-6826, 11 p.Article

Thermophoretic sampler and its application in ultrafine particle collectionJIAN WEN; WEXLER, Anthony S.Aerosol science and technology. 2007, Vol 41, Num 6, pp 624-629, issn 0278-6826, 6 p.Article

Nanoparticles and the environmentCHOW, Judith C; WATSON, John G; BISWAS, Pratim et al.Journal of the Air & Waste Management Association (1995). 2005, Vol 55, Num 10, pp 1411-1417, issn 1096-2247, 7 p.Article

Pentagonal configuration in GaP ultrafine particleTANIGAKI, Toshiaki; KIMURA, Yuki; SUZUKI, Hitoshi et al.Journal of the Physical Society of Japan. 2004, Vol 73, Num 5, pp 1375-1376, issn 0031-9015, 2 p.Article

Electrostatic formation of ceramic membranes using CVD ultra-fine particlesYAMAMOTO, H; NOMURA, T; MASUDA, S et al.Journal of electrostatics. 1990, Vol 25, Num 1, pp 125-133, issn 0304-3886Article

Deposition of ultrafine particles at carinal ridges of the upper bronchial airwaysBRODAY, David M.Aerosol science and technology. 2004, Vol 38, Num 10, pp 991-1000, issn 0278-6826, 10 p.Article

Effects of physicochemical properties of ultrafine particles on the performance of an ultrafine Particle concentratorGUPTA, Tarun; DEMOKRITOU, Philip; KOUTRAKIS, Petros et al.Aerosol science and technology. 2004, Vol 38, pp 37-45, issn 0278-6826, 9 p., SUP2Conference Paper

Real-time observation of the transformation of ultrafine atmospheric particle modesXIAOHONG YAO; NGAI TING LAU; MING FANG et al.Aerosol science and technology. 2005, Vol 39, Num 9, pp 831-841, issn 0278-6826, 11 p.Article

Erzeugen feinster fester Partikel durch Desublimation in einer adiabaten expandierenden Gasströmung = Generation of ultrafine solid particles by desublimation in an adiabatically expanding gas streamWAGNER, A; MEWES, D.Chemieingenieurtechnik. 1999, Vol 71, Num 6, pp 598-601, issn 0009-286XArticle

Size effect in Raman spectra of hydrous zirconia particlesMATSUI, K; SUZUKI, H; OHGAI, M et al.Nippon seramikkusu kyokai gakujutsu ronbunshi. 1990, Vol 98, Num 12, pp 1302-1306, issn 0914-5400Article

Turbulent Modeling of the Production of Ultra Fine Aluminum Particles : Scale-UpARISTIZABAL, Felipe; MUNZ, Richard J; BERK, Dimitrios et al.Aerosol science and technology. 2008, Vol 42, Num 7, pp 556-565, issn 0278-6826, 10 p.Article

Deposition of magnetic nanoparticles suspended in the gas phase on a specific target areaJANG, Myoseon; GANG CAO.Environmental science & technology. 2006, Vol 40, Num 21, pp 6730-6737, issn 0013-936X, 8 p.Article

Comparative Testing of a Miniature Diffusion Size Classifier to Assess Airborne Ultrafine Particles Under Field ConditionsMEIER, Reto; CLARK, Katherine; RIEDIKER, Michael et al.Aerosol science and technology (Print). 2013, Vol 47, Num 1-3, pp 22-28, issn 0278-6826, 7 p.Article

Measurement of ultrafine particles: A comparison of two handheld condensation particle countersMATSON, U; EKBERG, L. E; AFSHARI, A et al.Aerosol science and technology. 2004, Vol 38, Num 5, pp 487-495, issn 0278-6826, 9 p.Article

AN ALTERNATIVE VIEWPOINT ON FLOTATION BEHAVIOUR OF ULTRAFINE PARTICLESHEMMINGS CE.1980; INST. MIN. METALL., TRANS., C; ISSN 0371-9553; GBR; DA. 1980-09; VOL. 89; PP. 113-120; BIBL. 10 REF.Article

PROCEDE EXPERIMENTAL POUR LA RECUPERATION DES PARTICULES ULTRAFINES DE LA CASSITERITEVARGAS R; GUTIERREZ G; ZAMBRANA G et al.sdIN: CONGR. MINIER MONDIAL; LIMA; 1974; S.L.; DA. S.D.; PP. (6 P.)Conference Paper

SHEAR FLOCCULATIONWARREN LJ.1981; CHEM. TECHNOL.; ISSN 0009-2703; USA; DA. 1981; VOL. 11; NO 3; PP. 180-185; BIBL. 18 REF.Article

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