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Publikováno v:
In International Journal of Gastronomy and Food Science June 2024 36
Autor:
Kudriashov, V., Martin-Neira, M., Lia, E., Michalski, J., Kant, P., Trofimowicz, D., Belloni, M., Jankovic, P., Waller, P., Brandt, M.
Publikováno v:
Journal of Astronomical Instrumentation, 2021, Vol. 10, No. 03, 2150010
Black hole imaging challenges the 3rd generation space VLBI, the Very Long Baseline Interferometry, to operate on a 500 GHz band. The coherent integration time needed here is 450 s though the available space oscillators cannot offer more than 10 s. S
Externí odkaz:
http://arxiv.org/abs/2106.12316
Autor:
Kudriashov, V., Martin-Neira, M., Barat, I., Iglesias, P. Martin, Daganzo-Eusebio, E., Alagha, N., Valenta, V.
Publikováno v:
Chinese Journal of Space Science, 2019, Vol. 39, Issue 2, pages 250-266
The concept for space interferometry from Polar or Equatorial Circular Medium Earth Orbits (the PECMEO concept) is a promising way to acquire the image of the "shadow" of the event horizon of Sagittarius A* with an angular resolution of circa 5 micro
Externí odkaz:
http://arxiv.org/abs/2105.06901
Autor:
Kudriashov, V., Martin-Neira, M., Roelofs, F., Falcke, H., Brinkerink, C., Baryshev, A., Hogerheijde, M., Young, A., Pourshaghaghi, H., Klein-Wolt, M., Moscibrodzka, M., Davelaar, J., Barat, I., Duesmann, B., Valenta, V., Armengol, J. M. Perdigues, De Wilde, D., Iglesias, P. Martin, Alagha, N., Van Der Vorst, M.
Publikováno v:
Chinese Journal of Space Science, 2021, Vol. 41, Issue 2, pages 211-233
Submillimeter interferometry has the potential to image supermassive black holes on event horizon scales, providing tests of the theory of general relativity and increasing our understanding of black hole accretion processes. The Event Horizon Telesc
Externí odkaz:
http://arxiv.org/abs/2105.06882
Autor:
Wilson, R. J. A.
Publikováno v:
Gnomon, 1987 Jan 01. 59(5), 433-437.
Externí odkaz:
https://www.jstor.org/stable/27689622
Autor:
Shrikhande S; Swiss Tropical and Public Health Institute, Allschwil, Switzerland.; University of Basel, Basel, Switzerland.; Department of Environment, Climate Change and Health, World Health Organization, Avenue Appia 20, Geneva, 1202, Switzerland., Wolf J; Department of Environment, Climate Change and Health, World Health Organization, Avenue Appia 20, Geneva, 1202, Switzerland. wolfj@who.int., Vert C; Department of Environment, Climate Change and Health, World Health Organization, Avenue Appia 20, Geneva, 1202, Switzerland., Egorova A; Department of Environment, Climate Change and Health, World Health Organization, Avenue Appia 20, Geneva, 1202, Switzerland., Neira M; Department of Environment, Climate Change and Health, World Health Organization, Avenue Appia 20, Geneva, 1202, Switzerland., Prüss A; Department of Environment, Climate Change and Health, World Health Organization, Avenue Appia 20, Geneva, 1202, Switzerland.
Publikováno v:
Environmental health : a global access science source [Environ Health] 2024 Oct 22; Vol. 23 (1), pp. 88. Date of Electronic Publication: 2024 Oct 22.
Autor:
Erice, Alejo, Neira, M. Inmaculada, Vargas-Prada, Sergio, Chiaraviglio, Ana, Gutiérrez-Guisado, Javier, Rodríguez de Oya, Ricardo
Publikováno v:
In Enfermedades infecciosas y microbiologia clinica (English ed.) June-July 2018 36(6):336-341
Autor:
Erice, Alejo, Neira, M. Inmaculada, Vargas-Prada, Sergio, Chiaraviglio, Ana, Gutiérrez-Guisado, Javier, Rodríguez de Oya, Ricardo
Publikováno v:
In Enfermedades Infecciosas y Microbiologia Clinica June-July 2018 36(6):336-341
During the Eddy Experiment, two synchronous GPS receivers were flown at 1 km altitude to collect L1 signals and their reflections from the sea surface for assessment of altimetric precision and accuracy. Wind speed (U10) was around 10 m/s, and SWH up
Externí odkaz:
http://arxiv.org/abs/physics/0406025