Zobrazeno 1 - 10
of 51
pro vyhledávání: '"Nichman L"'
Autor:
Patil, S., McFarquhar, G., Wolde, M., Nichman, L., Ranjbar, K., Bliankinshtein, N., Nguyen, C., Roberts, G., Kollias, P., Mages, Z.
Publikováno v:
XXVIII General Assembly of the International Union of Geodesy and Geophysics (IUGG)
Updraft characteristics constrain convective mass flux, hydrometeor growth and precipitation efficiency and contribute to the spatial redistribution of energy, momentum, moisture, and aerosols in the troposphere. The impact of environmental parameter
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8fda60d0f2ea4c9ffdd1faa346578d28
Akademický článek
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Autor:
Yan, C., Nie, W., Vogel, A. L., Dada, L., Lehtipalo, K., Stolzenburg, D., Wagner, R., Rissanen, M. P., Xiao, M., Ahonen, L., Fischer, L., Rose, C., Bianchi, F., Gordon, H., Simon, M., Heinritzi, M., Garmash, O., Roldin, P., Dias, A., Ye, P., Hofbauer, V., Amorim, A., Bauer, P. S., Bergen, A., Bernhammer, A.-K., Breitenlechner, M., Brilke, S., Buchholz, A., Buenrostro Mazon, S., Canagaratna, M. R., Chen, X., Ding, A., Dommen, J., Draper, D. C., Duplissy, J., Frege, C., Heyn, C., Guida, R., Hakala, J., Heikkinen, L., Hoyle, C. R., Jokinen, T., Kangasluoma, J., Kirkby, J., Kontkanen, J., Kürten, A., Lawler, M. J., Mai, H., Mathot, S., Mauldin, R. L., III, Molteni, U., Nichman, L., Nieminen, T., Nowak, J., Ojdanic, A., Onnela, A., Pajunoja, A., Petäjä, T., Piel, F., Quéléver, L. L. J., Sarnela, N., Schallhart, S., Sengupta, K., Sipilä, M., Tomé, A., Tröst, J., Väisänen, O., Wagner, A. C., Ylisirniö, A., Zha, Q., Baltensperger, U., Carslaw, K. S., Curtius, J., Flagan, R. C., Hansel, A., Riipinen, I., Smith, J. N., Virtanen, A., Winkler, P. M., Donahue, N. M., Kerminen, V.-M., Kulmala, M., Ehn, M., Worsnop, D. R.
Atmospheric new-particle formation (NPF) affects climate by contributing to a large fraction of the cloud condensation nuclei (CCN). Highly oxygenated organic molecules (HOMs) drive the early particle growth and therefore substantially influence the
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od________38::31fb1b2c002c4f00e431a04c7b68111d
https://resolver.caltech.edu/CaltechAUTHORS:20200527-142816830
https://resolver.caltech.edu/CaltechAUTHORS:20200527-142816830
The Federal Aviation Administration (FAA) Terminal Area Icing Weather Information for NexGen (TAIWIN) project seeks to develop and improve icing condition nowcasting and forecasting in airport terminal areas, with an emphasis on identifying and discr
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______1674::7ce68809407925261a90488c89e29410
https://nrc-publications.canada.ca/eng/view/object/?id=c3891014-6481-49dd-ac0c-8631e6806c88
https://nrc-publications.canada.ca/eng/view/object/?id=c3891014-6481-49dd-ac0c-8631e6806c88
Autor:
Wolde, Mengistu, Korolev, A., Nichman, L., Heckman, I., Nguyen, C., Bliankinshtein, N., Bastian, M., Brown, A., Bernstein, B. C., DiVito, S., Sims, D. L., Landolt, S. D., Haggerty, J. A.
The In-Cloud ICing and Large-drop Experiment (ICICLE) campaign was a multi-platform and multi-sensor flight program organized and funded by the Federal Aviation Administration (FAA) and conducted by the National Research Council of Canada (NRC), Envi
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______1674::effca3360a212fd492cf21fb069947ed
https://nrc-publications.canada.ca/eng/view/object/?id=9f2978f2-9772-4209-97ef-c6616a2ddc3c
https://nrc-publications.canada.ca/eng/view/object/?id=9f2978f2-9772-4209-97ef-c6616a2ddc3c
Black carbon (BC), as potential ice nucleating particles (INPs) in troposphere, can affect cirrus formation and hence global climate. Yet, the IN ability of BC, internally-mixed BC, and BC-seeded secondary organic aerosol (SOA) remain highly uncertai
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______1674::8b8ecb340122408e6f306b30359c52dd
https://nrc-publications.canada.ca/eng/view/object/?id=81a91946-0064-4110-87fe-9a16fa91eb20
https://nrc-publications.canada.ca/eng/view/object/?id=81a91946-0064-4110-87fe-9a16fa91eb20
Autor:
Zhang, Yue, Wolf, M. J., Koss, A., Shen, X., Nichman, L., Zhang, Z., Gold, A., Jayne, J., Worsnop, D., Onasch, T., Davidovits, P., Surratt, J. D., Kroll, J. H., Cziczo, D. J.
Cirrus clouds and their effects on earth’s radiative balance are major sources of uncertainties in predicting future climate. These clouds also dehydrate air ascending to the tropopause, thereby reducing water content in the stratosphere. However,
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______1674::6686d0b85e368f9692b5ea6bd0ce81de
https://nrc-publications.canada.ca/eng/view/object/?id=15123839-5481-4ffb-8aa7-2d4840bae6b6
https://nrc-publications.canada.ca/eng/view/object/?id=15123839-5481-4ffb-8aa7-2d4840bae6b6
Autor:
Wagner, R., Yan, C., Lehtipalo, K., Duplissy, J., Nieminen, T., Kangasluoma, J., Ahonen, L. R., Dada, L., Kontkanen, J., Manninen, H. E., Dias, A., Amorim, A., Bauer, P. S., Bergen, A., Bernhammer, A.-K., Bianchi, F., Brilke, S., Mazon, S. B., Chen, X., Draper, D. C., Fischer, L., Frege, C., Fuchs, C., Garmash, O., Gordon, H., Hakala, J., Heikkinen, L., Heinritzi, M., Hofbauer, V., Hoyle, C. R., Kirkby, J., Kürten, A., Kvashnin, A. N., Laurila, T., Lawler, M. J., Mai, H., Makhmutov, V., Mauldin III, R. L., Molteni, U., Nichman, L., Nie, W., Ojdanic, A., Onnela, A., Piel, F., Quéléver, L. L. J., Rissanen, M. P., Sarnela, N., Schallhart, S., Sengupta, K., Simon, M., Stolzenburg, D., Stozhkov, Y., Tröstl, J., Viisanen, Y., Vogel, A. L., Wagner, A. C., Xiao, M., Ye, P., Baltensperger, U., Curtius, J., Donahue, N. M., Flagan, R. C., Gallagher, M., Hansel, A., Smith, J. N., Tomé, A., Winkler, P. M., Worsnop, D., Ehn, M., Sipilä, M., Kerminen, V.-M., Petäjä, T., Kulmala, M.
Publikováno v:
Atmospheric Chemistry and Physics, Vol 17, Pp 15181-15197 (2017)
Wagner, R, Yan, C, Lehtipalo, K, Duplissy, J, Nieminen, T, Kangasluoma, J, Ahonen, L R, Dada, L, Kontkanen, J, Manninen, H E, Dias, A, Amorim, A, Bauer, P S, Bergen, A, Bernhammer, A K, Bianchi, F, Brilke, S, Buenrostro Mazon, S, Chen, X, Draper, D C, Fischer, L, Frege, C, Fuchs, C, Garmash, O, Gordon, H, Hakala, J, Heikkinen, L, Heinritzi, M, Hofbauer, V, Hoyle, C R, Kirkby, J, Kürten, A, Kvashnin, A N, Laurila, T, Lawler, M J, Mai, H, Makhmutov, V, Mauldin, R, Molteni, U, Nichman, L, Nie, W, Ojdanic, A, Onnela, A, Piel, F, Quéléver, L L J, Rissanen, M P, Sarnela, N, Schallhart, S, Sengupta, K, Simon, M, Stolzenburg, D, Stozhkov, Y, Tröstl, J, Viisanen, Y, Vogel, A L, Wagner, A C, Xiao, M, Ye, P, Baltensperger, U, Curtius, J, Donahue, N M, Flagan, R C, Gallagher, M, Hansel, A, Smith, J N, Tomé, A, Winkler, P M, Worsnop, D, Ehn, M, Sipilä, M, Kerminen, V M, Petäjä, T & Kulmala, M 2017, ' The role of ions in new particle formation in the CLOUD chamber ', Atmospheric Chemistry and Physics, vol. 17, no. 24, pp. 15181-15197 . https://doi.org/10.5194/acp-17-15181-2017
Wagner, R, Yan, C, Lehtipalo, K, Duplissy, J, Nieminen, T V M, Kangasluoma, J, Ahonen, L, Dada, L, Kontkanen, J, Manninen, H, Dias, A, Amorim, A, Bauer, P, Bergen, A, Bernhammer, A-K, Bianchi, F, Brilke, S, Buenrostro Mazon, S, Chen, X, Draper, D, Fischer, L, Frege, C, Fuchs, C, Garmash, O, Gordon, H, Hakala, J, Heikkinen, L, Heinritzi, M, Hofbauer, V, Hoyle, C, Kirkby, J, Kurten, A, Kvashin, A, Laurila, T, Lawler, M, Mai, H, Makhmutov, V, Mauldin, R, Molteni, U, Nichman, L, Nie, W, Ojdanic, A, Onnela, A, Piel, F, Quelever, L, Rissanen, M, Sarnela, N, Schallhart, S, Sengupta, K, Simon, M, Stolzenburg, D, Stozhkov, Y, Trostl, J, Viisanen, Y, Vogel, A, Wagner, A, Xiao, M, Ye, P, Baltensperger, U, Curtius, J, Donahue, N M, Flagan, R, Gallagher, M, Hansel, A, Smith, J, Tome, A, Winkler, P, Worsnop, D, Ehn, M, Sipila, M, Kerminen, V-M, Petaja, T & Kulmala, M 2017, ' The role of ions in new-particle formation in the CLOUD chamber ', Atmospheric Chemistry and Physics, vol. 17, no. 24, pp. 15181–15197 . https://doi.org/10.5194/acp-2017-536
Atmospheric Chemistry and Physics
Wagner, R, Yan, C, Lehtipalo, K, Duplissy, J, Nieminen, T, Kangasluoma, J, Ahonen, L R, Dada, L, Kontkanen, J, Manninen, H E, Dias, A, Amorim, A, Bauer, P S, Bergen, A, Bernhammer, A K, Bianchi, F, Brilke, S, Buenrostro Mazon, S, Chen, X, Draper, D C, Fischer, L, Frege, C, Fuchs, C, Garmash, O, Gordon, H, Hakala, J, Heikkinen, L, Heinritzi, M, Hofbauer, V, Hoyle, C R, Kirkby, J, Kürten, A, Kvashnin, A N, Laurila, T, Lawler, M J, Mai, H, Makhmutov, V, Mauldin, R, Molteni, U, Nichman, L, Nie, W, Ojdanic, A, Onnela, A, Piel, F, Quéléver, L L J, Rissanen, M P, Sarnela, N, Schallhart, S, Sengupta, K, Simon, M, Stolzenburg, D, Stozhkov, Y, Tröstl, J, Viisanen, Y, Vogel, A L, Wagner, A C, Xiao, M, Ye, P, Baltensperger, U, Curtius, J, Donahue, N M, Flagan, R C, Gallagher, M, Hansel, A, Smith, J N, Tomé, A, Winkler, P M, Worsnop, D, Ehn, M, Sipilä, M, Kerminen, V M, Petäjä, T & Kulmala, M 2017, ' The role of ions in new particle formation in the CLOUD chamber ', Atmospheric Chemistry and Physics, vol. 17, no. 24, pp. 15181-15197 . https://doi.org/10.5194/acp-17-15181-2017
Wagner, R, Yan, C, Lehtipalo, K, Duplissy, J, Nieminen, T V M, Kangasluoma, J, Ahonen, L, Dada, L, Kontkanen, J, Manninen, H, Dias, A, Amorim, A, Bauer, P, Bergen, A, Bernhammer, A-K, Bianchi, F, Brilke, S, Buenrostro Mazon, S, Chen, X, Draper, D, Fischer, L, Frege, C, Fuchs, C, Garmash, O, Gordon, H, Hakala, J, Heikkinen, L, Heinritzi, M, Hofbauer, V, Hoyle, C, Kirkby, J, Kurten, A, Kvashin, A, Laurila, T, Lawler, M, Mai, H, Makhmutov, V, Mauldin, R, Molteni, U, Nichman, L, Nie, W, Ojdanic, A, Onnela, A, Piel, F, Quelever, L, Rissanen, M, Sarnela, N, Schallhart, S, Sengupta, K, Simon, M, Stolzenburg, D, Stozhkov, Y, Trostl, J, Viisanen, Y, Vogel, A, Wagner, A, Xiao, M, Ye, P, Baltensperger, U, Curtius, J, Donahue, N M, Flagan, R, Gallagher, M, Hansel, A, Smith, J, Tome, A, Winkler, P, Worsnop, D, Ehn, M, Sipila, M, Kerminen, V-M, Petaja, T & Kulmala, M 2017, ' The role of ions in new-particle formation in the CLOUD chamber ', Atmospheric Chemistry and Physics, vol. 17, no. 24, pp. 15181–15197 . https://doi.org/10.5194/acp-2017-536
Atmospheric Chemistry and Physics
The formation of secondary particles in the atmosphere accounts for more than half of global cloud condensation nuclei. Experiments at the CERN CLOUD (Cosmics Leaving OUtdoor Droplets) chamber have underlined the importance of ions for new particle f
Akademický článek
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