Interstellar Mapping and Acceleration Probe
http://dbpedia.org/resource/Interstellar_Mapping_and_Acceleration_Probe an entity of type: Thing
Die Interstellar Mapping and Acceleration Probe (IMAP) ist eine geplante Raumsonde der US-Raumfahrtbehörde NASA zur Erforschung der Heliosphäre. Der Sonde soll 1,5 Millionen km innerhalb der Erdumlaufbahn, am Lagrange-Punkt L1, um die Sonne kreisen und Interaktionen zwischen dem Sonnenwind und dem interstellaren Medium untersuchen. Der Start ist für das 1. Quartal 2025 geplant. Beteiligt sind die Princeton University und die Johns Hopkins University.
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IMAP (Interstellar Mapping and Acceleration Probe)는 NASA의 태양권 탐사선이다. , 히노데, STEREO, 그리고 가 소속되어 있는 의 일환으로, 목적은 라그랑주 점 1에 위치해서 태양권, 우주선 등을 더 잘 알려주는 것이 목표이다.
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A Interstellar Mapping and Acceleration Probe (IMAP) é uma sonda espacial planejada da agência espacial americana NASA para pesquisas na heliosfera. Planeja-se que a sonda orbite a 1,5 milhão de quilômetros de distância da Terra, no ponto Lagrangiano L1, para que estude as interações entre o vento solar e o meio interestelar. O lançamento da missão está previsto para o quarto trimestre de 2024. A Universidade de Princeton e a Universidade Johns Hopkins estão envolvidas.
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The Interstellar Mapping and Acceleration Probe (IMAP) is a heliophysics mission that will simultaneously investigate two important and coupled science topics in the heliosphere: the acceleration of energetic particles and interaction of the solar wind with the local interstellar medium. These science topics are coupled because particles accelerated in the inner heliosphere play crucial roles in the outer heliospheric interaction. In 2018, NASA selected a team led by David J. McComas of Princeton University to implement the mission, which is currently planned to launch in February 2025. IMAP will be a Sun-tracking spin-stabilized satellite in orbit about the Sun–Earth L1 Lagrange point with a science payload of ten instruments. IMAP will also continuously broadcast real-time in-situ data t
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Interstellar Mapping and Acceleration Probe (Observatoire des relations Soleil-Terre), plus connu sous son acronyme IMAP, est une mission spatiale de l'agence spatiale américaine, la NASA, dont l'objectif est l'étude du vent solaire et du milieu interstellaire local. IMAP est la cinquième mission du programme d'étude des relations Soleil-Terre (Solar Terrestrial Probes). Le lancement du satellite doit intervenir en 2024. Sa durée nominale est de 2 ans mais elle pourra être prolongée. IMAP emporte 10 instruments représentant l'état de l'art dans le domaine de la mesure des particules. Le projet est piloté par le centre de vol spatial Goddard tandis que le satellite est construit par le Laboratoire de Sciences Appliquées de l'université Johns-Hopkins avec des contributions importantes de lab
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Interstellar Mapping and Acceleration Probe
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Interstellar Mapping and Acceleration Probe
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Interstellar Mapping and Acceleration Probe
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IMAP (우주선)
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Interstellar Mapping and Acceleration Probe
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Interstellar Mapping and Acceleration Probe
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Interstellar Mapping and Acceleration Probe
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Artist concept of IMAP imaging the heliospheric boundary.
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Heliosphere research
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IMAP
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Halo orbit
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Solar Terrestrial Probes program
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Die Interstellar Mapping and Acceleration Probe (IMAP) ist eine geplante Raumsonde der US-Raumfahrtbehörde NASA zur Erforschung der Heliosphäre. Der Sonde soll 1,5 Millionen km innerhalb der Erdumlaufbahn, am Lagrange-Punkt L1, um die Sonne kreisen und Interaktionen zwischen dem Sonnenwind und dem interstellaren Medium untersuchen. Der Start ist für das 1. Quartal 2025 geplant. Beteiligt sind die Princeton University und die Johns Hopkins University.
rdf:langString
The Interstellar Mapping and Acceleration Probe (IMAP) is a heliophysics mission that will simultaneously investigate two important and coupled science topics in the heliosphere: the acceleration of energetic particles and interaction of the solar wind with the local interstellar medium. These science topics are coupled because particles accelerated in the inner heliosphere play crucial roles in the outer heliospheric interaction. In 2018, NASA selected a team led by David J. McComas of Princeton University to implement the mission, which is currently planned to launch in February 2025. IMAP will be a Sun-tracking spin-stabilized satellite in orbit about the Sun–Earth L1 Lagrange point with a science payload of ten instruments. IMAP will also continuously broadcast real-time in-situ data that can be used for space weather prediction. It is the fifth mission selected in the Solar Terrestrial Probes program, after TIMED, Hinode, STEREO and MMS.
rdf:langString
Interstellar Mapping and Acceleration Probe (Observatoire des relations Soleil-Terre), plus connu sous son acronyme IMAP, est une mission spatiale de l'agence spatiale américaine, la NASA, dont l'objectif est l'étude du vent solaire et du milieu interstellaire local. IMAP est la cinquième mission du programme d'étude des relations Soleil-Terre (Solar Terrestrial Probes). Le lancement du satellite doit intervenir en 2024. Sa durée nominale est de 2 ans mais elle pourra être prolongée. IMAP emporte 10 instruments représentant l'état de l'art dans le domaine de la mesure des particules. Le projet est piloté par le centre de vol spatial Goddard tandis que le satellite est construit par le Laboratoire de Sciences Appliquées de l'université Johns-Hopkins avec des contributions importantes de laboratoires étrangers pour l'instrumentation.
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IMAP (Interstellar Mapping and Acceleration Probe)는 NASA의 태양권 탐사선이다. , 히노데, STEREO, 그리고 가 소속되어 있는 의 일환으로, 목적은 라그랑주 점 1에 위치해서 태양권, 우주선 등을 더 잘 알려주는 것이 목표이다.
rdf:langString
A Interstellar Mapping and Acceleration Probe (IMAP) é uma sonda espacial planejada da agência espacial americana NASA para pesquisas na heliosfera. Planeja-se que a sonda orbite a 1,5 milhão de quilômetros de distância da Terra, no ponto Lagrangiano L1, para que estude as interações entre o vento solar e o meio interestelar. O lançamento da missão está previsto para o quarto trimestre de 2024. A Universidade de Princeton e a Universidade Johns Hopkins estão envolvidas.
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IMAP
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