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41por Matsumoto-Takahashi, Emilie Louise Akiko, Iwagami, Moritoshi, Oyoshi, Kei, Sasaki, Yoshinobu, Hongvanthong, Bouasy, Kano, Shigeyuki“…Earth observation satellite data (forested area, land surface temperature, and precipitation) were obtained from the Japan Aerospace Exploration Agency (JAXA). Structured equation modeling (SEM) was conducted to clarify the relationship between the malaria incidence and Earth observation satellite data. …”
Publicado 2023
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42por Qin, Yuanwei, Xiao, Xiangming, Dong, Jinwei, Zhang, Geli, Roy, Partha Sarathi, Joshi, Pawan Kumar, Gilani, Hammad, Murthy, Manchiraju Sri Ramachandra, Jin, Cui, Wang, Jie, Zhang, Yao, Chen, Bangqian, Menarguez, Michael Angelo, Biradar, Chandrashekhar M., Bajgain, Rajen, Li, Xiangping, Dai, Shengqi, Hou, Ying, Xin, Fengfei, Moore III, Berrien“…PALSARMOD50 m F/NF map showed good spatial and areal agreements with selected forest maps generated by the Japan Aerospace Exploration Agency (JAXA F/NF), European Space Agency (ESA F/NF), Boston University (MCD12Q1 F/NF), Food and Agricultural Organization (FAO FRA), and University of Maryland (Landsat forests), but relatively large differences and uncertainties in tropical forests and evergreen and deciduous forests.…”
Publicado 2016
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43Impact of Spaceflight and Artificial Gravity on the Mouse Retina: Biochemical and Proteomic Analysispor Mao, Xiao W., Byrum, Stephanie, Nishiyama, Nina C., Pecaut, Michael J., Sridharan, Vijayalakshmi, Boerma, Marjan, Tackett, Alan J., Shiba, Dai, Shirakawa, Masaki, Takahashi, Satoru, Delp, Michael D.“…The animals were housed in the mouse Habitat Cage Unit (HCU) in the Japan Aerospace Exploration Agency (JAXA) “Kibo” facility on the ISS. The flight mice lived either under an ambient microgravity condition (µg) or in a centrifugal habitat unit that produced 1 g artificial gravity (µg + 1 g). …”
Publicado 2018
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44por Brosius, Nevin, Livesay, Jason, Karpinski, Zachary, Singiser, Robert, SanSoucie, Michael, Phillips, Brandon, Narayanan, Ranga“…It was also shown, in the context of future space-based experimentation on the Electrostatic Levitation Furnace (ELF), a setup on the International Space Station (ISS) operated by Japan Aerospace Exploration Agency (JAXA), that while the shadow array method in which droplet behavior is visualized would be challenging to identify the n = 3 resonance, the normal mode n = 4 was predicted to be more easily identifiable. …”
Publicado 2023
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45por Singh, Manmeet, Acharya, Nachiketa, Jamshidi, Sajad, Jiao, Junfeng, Yang, Zong-Liang, Coudert, Marc, Baumer, Zach, Niyogi, Dev“…We apply this for the development of a high-resolution gridded precipitation product (300 m) from a relatively coarse (10 km) satellite-based product (JAXA GsMAP). The high-resolution gridded precipitation datasets is compared against insitu observations for past heavy rain events over Austin, Texas, and shows marked improvement relative to the coarser datasets relative to cubic interpolation as a baseline. …”
Publicado 2023
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46por Potiszil, Christian, Yamanaka, Masahiro, Sakaguchi, Chie, Ota, Tsutomu, Kitagawa, Hiroshi, Kunihiro, Tak, Tanaka, Ryoji, Kobayashi, Katsura, Nakamura, Eizo“…To better understand the origin and evolution of organic matter, the Japan Aerospace Exploration Agency (JAXA) sent the Hayabusa2 spacecraft to collect and return material from the near-earth asteroid Ryugu. …”
Publicado 2023
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47por Yao, Panpan, Lu, Hui, Shi, Jiancheng, Zhao, Tianjie, Yang, Kun, Cosh, Michael H., Gianotti, Daniel J. Short, Entekhabi, Dara“…NNsm also compares well with in situ SSM observations, and outperforms AMSR-E/2 standard SSM products from JAXA and LPRM. This global observation-driven dataset spans nearly two decades at present, and is extendable through the ongoing AMSR2 and upcoming AMSR3 missions for long-term studies of climate extremes, trends, and decadal variability.…”
Publicado 2021
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48por Potier, Luc, Duchaine, Florent, Cuenot, Bénédicte, Saucereau, Didier, Pichillou, Julien“…A smooth and a longitudinally ribbed combustor configuration from JAXA are simulated. The coupling strategy ensures a rapid convergence for a limited additional cost compared to a fluid-only simulation, and the wall heat fluxes display a healthy trend compared to the experimental measurements. …”
Publicado 2022
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49por Tack, Pieter, De Pauw, Ella, Tkalcec, Beverley, Lindner, Miles, Bazi, Benjamin, Vekemans, Bart, Brenker, Frank, Di Michiel, Marco, Uesugi, Masayuki, Yurimoto, Hisayoshi, Nakamura, Tomoki, Amano, Kana, Matsumoto, Megumi, Fujioka, Yuri, Enokido, Yuma, Nakashima, Daisuke, Noguchi, Takaaki, Okazaki, Ryuji, Yabuta, Hikaru, Naraoka, Hiroshi, Sakamoto, Kanako, Tachibana, Shogo, Yada, Toru, Nishimura, Masahiro, Nakato, Aiko, Miyazaki, Akiko, Yogata, Kasumi, Abe, Masanao, Okada, Tatsuaki, Usui, Tomohiro, Yoshikawa, Makoto, Saiki, Takanao, Tanaka, Satoshi, Terui, Fuyuto, Nakazawa, Satoru, Watanabe, Sei-Ichiro, Tsuda, Yuichi, Vincze, Laszlo“…Samples were collected in two phases from two sites on asteroid Ryugu and safely returned to Earth by JAXA’s asteroid explorer Hayabusa2, during which time the collected material was stored and maintained free from terrestrial influences, including exposure to Earth’s atmosphere. …”
Publicado 2022
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50por Shurshakov, Vyacheslav A., Tolochek, Raisa V., Kartsev, Ivan S., Petrov, Vladislav M., Nikolaev, Igor V., Moskalyova, Svetlana I., Lyagushin, Vladimir I.“…Originally the spherical phantom was installed in the star board crew cabin of the ISS Service Module, then in the Piers-1, MIM-2 and MIM-1 modules of the ISS Russian segment, and finally in JAXA Kibo module. Total duration of the detector exposure is more than 1700 days in 8 sessions. …”
Publicado 2014
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51por Orsini, S., Livi, S. A., Lichtenegger, H., Barabash, S., Milillo, A., De Angelis, E., Phillips, M., Laky, G., Wieser, M., Olivieri, A., Plainaki, C., Ho, G., Killen, R. M., Slavin, J. A., Wurz, P., Berthelier, J.-J., Dandouras, I., Kallio, E., McKenna-Lawlor, S., Szalai, S., Torkar, K., Vaisberg, O., Allegrini, F., Daglis, I. A., Dong, C., Escoubet, C. P., Fatemi, S., Fränz, M., Ivanovski, S., Krupp, N., Lammer, H., Leblanc, François, Mangano, V., Mura, A., Nilsson, H., Raines, J. M., Rispoli, R., Sarantos, M., Smith, H. T., Szego, K., Aronica, A., Camozzi, F., Di Lellis, A. M., Fremuth, G., Giner, F., Gurnee, R., Hayes, J., Jeszenszky, H., Tominetti, F., Trantham, B., Balaz, J., Baumjohann, W., Brienza, D., Bührke, U., Bush, M. D., Cantatore, M., Cibella, S., Colasanti, L., Cremonese, G., Cremonesi, L., D’Alessandro, M., Delcourt, D., Delva, M., Desai, M., Fama, M., Ferris, M., Fischer, H., Gaggero, A., Gamborino, D., Garnier, P., Gibson, W. C., Goldstein, R., Grande, M., Grishin, V., Haggerty, D., Holmström, M., Horvath, I., Hsieh, K.-C., Jacques, A., Johnson, R. E., Kazakov, A., Kecskemety, K., Krüger, H., Kürbisch, C., Lazzarotto, F., Leblanc, Frederic, Leichtfried, M., Leoni, R., Loose, A., Maschietti, D., Massetti, S., Mattioli, F., Miller, G., Moissenko, D., Morbidini, A., Noschese, R., Nuccilli, F., Nunez, C., Paschalidis, N., Persyn, S., Piazza, D., Oja, M., Ryno, J., Schmidt, W., Scheer, J. A., Shestakov, A., Shuvalov, S., Seki, K., Selci, S., Smith, K., Sordini, R., Svensson, J., Szalai, L., Toublanc, D., Urdiales, C., Varsani, A., Vertolli, N., Wallner, R., Wahlstroem, P., Wilson, P., Zampieri, S.“…The ESA-JAXA BepiColombo mission to Mercury will provide simultaneous measurements from two spacecraft, offering an unprecedented opportunity to investigate magnetospheric and exospheric particle dynamics at Mercury as well as their interactions with solar wind, solar radiation, and interplanetary dust. …”
Publicado 2021
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