Zobrazeno 1 - 10
of 115
pro vyhledávání: '"T W Wilson"'
Autor:
T P Mangan, J D Atkinson, J W Neuberg, D O'Sullivan, T W Wilson, T F Whale, L Neve, N S Umo, T L Malkin, B J Murray
Publikováno v:
PLoS ONE, Vol 12, Iss 1, p e0169720 (2017)
Fine particles of ash emitted during volcanic eruptions may sporadically influence cloud properties on a regional or global scale as well as influencing the dynamics of volcanic clouds and the subsequent dispersion of volcanic aerosol and gases. It h
Externí odkaz:
https://doaj.org/article/13da44cbf98143cebf7428fd5fb9d2ae
Autor:
P. Boonyakitanont, B. Gabrielson, I. Belyaeva, P. Olikkal, J. Songsiri, Y. P. Wang, T. W. Wilson, V. D. Calhoun, J. M. Stephen, T. Adali
Publikováno v:
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference. 2022
This paper proposes an independent component analysis (ICA)-based framework for exploring associations between neural signals measured with magnetoencephalography (MEG) and non-neuroimaging data of healthy subjects. Our proposed framework contains me
Autor:
A. R. Blount, S. M. Olson, D. L. Francis, C. L. Mackowiak, H. K. Ober, J. H. Freeman, K. H. Quesenberry, R. D. Barnett, T. W. Wilson, R. W. Gornto
Publikováno v:
EDIS, Vol 2013, Iss 11 (2013)
A. R. Blount, S. M. Olson, D. L. Francis, C. L. Mackowiak, H. K. Ober, J. H. Freeman, K. H. Quesenberry, R. D. Barnett, T. W. Wilson, and R. W. Gornto
Externí odkaz:
https://doaj.org/article/8028d97796f8407fade92568c43b6c16
Autor:
Martine Lizotte, Pablo Elizondo, C. Chou, Allan K. Bertram, Joannie Charette, Luis A. Ladino, Michel Gosselin, Victoria E. Irish, Benjamin J. Murray, Elena Polishchuk, Lisa A. Miller, Jessie Chen, Jonathan P. D. Abbatt, T. W. Wilson
Publikováno v:
Atmospheric Chemistry and Physics, Vol 17, Pp 10583-10595 (2017)
Atmospheric Chemistry and Physics
Atmospheric Chemistry and Physics
The sea-surface microlayer and bulk seawater can contain ice-nucleating particles (INPs) and these INPs can be emitted into the atmosphere. Our current understanding of the properties, concentrations, and spatial and temporal distributions of INPs in
Autor:
P. J. DeMott, O. Möhler, D. J. Cziczo, N. Hiranuma, M. D. Petters, S. S. Petters, F. Belosi, H. G. Bingemer, S. D. Brooks, C. Budke, M. Burkert-Kohn, K. N. Collier, A. Danielczok, O. Eppers, L. Felgitsch, S. Garimella, H. Grothe, P. Herenz, T. C. J. Hill, K. Höhler, Z. A. Kanji, A. Kiselev, T. Koop, T. B. Kristensen, K. Krüger, G. Kulkarni, E. J. T. Levin, B. J. Murray, A. Nicosia, D. O'Sullivan, A. Peckhaus, M. J. Polen, H. C. Price, N. Reicher, D. A. Rothenberg, Y. Rudich, G. Santachiara, T. Schiebel, J. Schrod, T. M. Seifried, F. Stratmann, R. C. Sullivan, K. J. Suski, M. Szakáll, H. P. Taylor, R. Ullrich, J. Vergara-Temprado, R. Wagner, T. F. Whale, D. Weber, A. Welti, T. W. Wilson, M. J. Wolf, J. Zenker
Publikováno v:
Atmospheric measurement techniques, 11, 6231-6257
Atmospheric Measurement Techniques
Atmospheric Measurement Techniques, Vol 11, Pp 6231-6257 (2018)
Atmospheric measurement techniques
11 (2018): 6231–6257. doi:10.5194/amt-11-6231-2018
info:cnr-pdr/source/autori:DeMott, Paul J.; Moehler, Ottmar; Cziczo, Daniel J.; Hiranuma, Naruki; Petters, Markus D.; Petters, Sarah S.; Belosi, Franco; Bingemer, Heinz G.; Brooks, Sarah D.; Budke, Carsten; Burkert-Kohn, Monika; Collier, Kristen N.; Danielczok, Anja; Eppers, Oliver; Felgitsch, Laura; Garimella, Sarvesh; Grothe, Hinrich; Herenz, Paul; Hill, Thomas C. J.; Hoehler, Kristina; Kanji, Zamin A.; Kiselev, Alexei; Koop, Thomas; Kristensen, Thomas B.; Krueger, Konstantin; Kulkarni, Gourihar; Levin, Ezra J. T.; Murray, Benjamin J.; Nicosia, Alessia; O'Sullivan, Daniel; Peckhaus, Andreas; Polen, Michael J.; Price, Hannah C.; Reicher, Naama; Rothenberg, Daniel A.; Rudich, Yinon; Santachiara, Gianni; Schiebel, Thea; Schrod, Jann; Seifried, Teresa M.; Stratmann, Frank; Sullivan, Ryan C.; Suski, Kaitlyn J.; Szakall, Miklos; Taylor, Hans P.; Ullrich, Romy; Vergara-Temprado, Jesus; Wagner, Robert; Whale, Thomas F.; Weber, Daniel; Welti, Andre; Wilson, Theodore W.; Wolf, Martin J.; Zenker, Jake/titolo:The Fifth International Workshop on Ice Nucleation phase 2 (FIN-02): laboratory intercomparison of ice nucleation measurements/doi:10.5194%2Famt-11-6231-2018/rivista:Atmospheric measurement techniques (Print)/anno:2018/pagina_da:6231/pagina_a:6257/intervallo_pagine:6231–6257/volume:11
Atmospheric Measurement Techniques
Atmospheric Measurement Techniques, Vol 11, Pp 6231-6257 (2018)
Atmospheric measurement techniques
11 (2018): 6231–6257. doi:10.5194/amt-11-6231-2018
info:cnr-pdr/source/autori:DeMott, Paul J.; Moehler, Ottmar; Cziczo, Daniel J.; Hiranuma, Naruki; Petters, Markus D.; Petters, Sarah S.; Belosi, Franco; Bingemer, Heinz G.; Brooks, Sarah D.; Budke, Carsten; Burkert-Kohn, Monika; Collier, Kristen N.; Danielczok, Anja; Eppers, Oliver; Felgitsch, Laura; Garimella, Sarvesh; Grothe, Hinrich; Herenz, Paul; Hill, Thomas C. J.; Hoehler, Kristina; Kanji, Zamin A.; Kiselev, Alexei; Koop, Thomas; Kristensen, Thomas B.; Krueger, Konstantin; Kulkarni, Gourihar; Levin, Ezra J. T.; Murray, Benjamin J.; Nicosia, Alessia; O'Sullivan, Daniel; Peckhaus, Andreas; Polen, Michael J.; Price, Hannah C.; Reicher, Naama; Rothenberg, Daniel A.; Rudich, Yinon; Santachiara, Gianni; Schiebel, Thea; Schrod, Jann; Seifried, Teresa M.; Stratmann, Frank; Sullivan, Ryan C.; Suski, Kaitlyn J.; Szakall, Miklos; Taylor, Hans P.; Ullrich, Romy; Vergara-Temprado, Jesus; Wagner, Robert; Whale, Thomas F.; Weber, Daniel; Welti, Andre; Wilson, Theodore W.; Wolf, Martin J.; Zenker, Jake/titolo:The Fifth International Workshop on Ice Nucleation phase 2 (FIN-02): laboratory intercomparison of ice nucleation measurements/doi:10.5194%2Famt-11-6231-2018/rivista:Atmospheric measurement techniques (Print)/anno:2018/pagina_da:6231/pagina_a:6257/intervallo_pagine:6231–6257/volume:11
The second phase of the Fifth International Ice Nucleation Workshop (FIN-02) involved the gathering of a large number of researchers at the Karlsruhe Institute of Technology's Aerosol Interactions and Dynamics of the Atmosphere (AIDA) facility to pro
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::de245a11a45d0118891232409a3f26eb
https://doi.org/10.5194/amt-2018-191
https://doi.org/10.5194/amt-2018-191
Autor:
H. C. Price, K. J. Baustian, J. B. McQuaid, A. Blyth, K. N. Bower, T. Choularton, R. J. Cotton, Z. Cui, P. R. Field, M. Gallagher, R. Hawker, A. Merrington, A. Miltenberger, R. R. Neely III, S. T. Parker, P. D. Rosenberg, J. W. Taylor, J. Trembath, J. Vergara-Temprado, T. F. Whale, T. W. Wilson, G. Young, B. J. Murray
Publikováno v:
Journal of Geophysical Research: Atmospheres
Desert dust is one of the most important atmospheric ice‐nucleating aerosol species around the globe. However, there have been very few measurements of ice‐nucleating particle (INP) concentrations in dusty air close to desert sources. In this stu
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=dedup_wf_001::ab9284f5b0a749f2f4f8de799cd1cb12
Publikováno v:
Chemical Science
Heterogeneous nucleation of ice from aqueous solutions is an important yet poorly understood process in multiple fields, not least the atmospheric sciences where it impacts the formation and properties of clouds. In the atmosphere ice-nucleating part
Autor:
J. D. Atkinson, Thomas F. Whale, Daniel O'Sullivan, K. J. Baustian, D. A. Workneh, George John Morris, T. W. Wilson, Benjamin J. Murray, Nsikanabasi Silas Umo
Publikováno v:
Atmospheric Measurement Techniques, Vol 8, Iss 6, Pp 2437-2447 (2015)
Atmospheric Measurement Techniques, 8 (6)
Atmospheric Measurement Techniques, 8 (6)
In many clouds, the formation of ice requires the presence of particles capable of nucleating ice. Ice-nucleating particles (INPs) are rare in comparison to cloud condensation nuclei. However, the fact that only a small fraction of aerosol particles
Autor:
T P, Mangan, J D, Atkinson, J W, Neuberg, D, O'Sullivan, T W, Wilson, T F, Whale, L, Neve, N S, Umo, T L, Malkin, B J, Murray
Publikováno v:
PLoS ONE
Fine particles of ash emitted during volcanic eruptions may sporadically influence cloud properties on a regional or global scale as well as influencing the dynamics of volcanic clouds and the subsequent dispersion of volcanic aerosol and gases. It h
Autor:
Frank Sagan, Michael Rösch, Jens Voigtländer, Gregory Lee Kok, Amélie Kirchgäßner, Thomas Bjerring Kristensen, T. W. Wilson, Daniel J. Cziczo, Sarvesh Garimella, Luis A. Ladino, Jon Abbatt, K. Ignatius, Daniel Rothenberg, Russell S. Ladkin, James Dorsey, Frank Stratmann, Olaf Stetzer, Gourihar Kulkarni, Ulrike Lohmann, Leonid Nichman, Heike Wex, André Welti
Publikováno v:
Garimella, S, Kristensen, T B, Ignatius, K, Welti, A, Voigtländer, J, Kulkarni, G R, Sagan, F, Kok, G L, Dorsey, J, Nichman, L, Rothenberg, D, Rösch, M, Kirchgäßner, A, Ladkin, R, Wex, H, Wilson, T W, Ladino, L A, Abbatt, J P D, Stetzer, O, Lohmann, U, Stratmann, F & Cziczo, D J 2016, ' The SPectrometer for Ice Nuclei (SPIN): An instrument to investigate ice nucleation ', Atmospheric Measurement Techniques, vol. 9, pp. 2781-2795 . https://doi.org/10.5194/amt-9-2781-2016
Atmospheric Measurement Techniques, Vol 9, Iss 7, Pp 2781-2795 (2016)
Copernicus Publications
Atmospheric Measurement Techniques, 9 (7)
Atmospheric Measurement Techniques, Vol 9, Iss 7, Pp 2781-2795 (2016)
Copernicus Publications
Atmospheric Measurement Techniques, 9 (7)
The SPectrometer for Ice Nuclei (SPIN) is a commercially available ice nucleating particle (INP) counter manufactured by Droplet Measurement Technologies in Boulder, CO. The SPIN is a continuous flow diffusion chamber with parallel plate geometry bas
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::36a9ef7d37f8e6e170cf9297638f7d2b