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SPHEREx satellite. Likewise, data analysis on the dust lifecycle, dust composition in nearby galaxies, ice formation and evolution, Zodiacal dust, and the connections between dust and gas are possible with
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can be measured to understand spot coverage and spot evolution and simultaneous observations of flares from the X-ray to radio can lead to deep insight into flare emission mechanisms, flare energy
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. Description: Research opportunities exist within the applied Earth sciences and applications of Earth remote sensing to employ data from the upcoming NISAR mission (https://nisar.jpl.nasa.gov/) to develop and
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Database (Nanograindb; in development). These three databases will enable the study and interpretation of spectral signatures from carbon in the interstellar medium—including molecular clouds, planetary
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the best opportunity to understand the origin, evolution, and processes of the solar system. This opportunity is to join Dr. Yang Liu at JPL to study surface and interior processes of the parent bodies from
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contribute to the development of new knowledge and technologies that could help astronauts safely travel to the moon and beyond by participating in and leading spaceflight-relevant research. In this project
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their evolution through time. To that end we are seeking an NPP applicant to develop methodologies to invert for time-evolving basal friction from massive volumes of surface flow observations
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, methods development for new observables and support for new space missions. The team includes several JPL scientists, a group of postdocs with diverse backgrounds and several university collaborators
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feedbacks and the uncertainty in the NASA GISS Earth System model and provide information about future changes particularly with respect to the evolution of the marine and terrestrial sinks. Research
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independent technologies are in development. We have pioneered an epoxy replication technique that enabled the manufacture of the lightweight, high throughput optics that flew on ASCA and Suzaku. We