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whose cross sections can be factorized in terms of gluon and sea-quark TMD distributions. These observables are directly relevant to current and future experiments at the LHC, including forward particle
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of mineralogical characterization of materials (pictorial and others) to the understanding of rock surfaces. The use of hyperspectral imaging, which is non-invasive and non-destructive, is central to current
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ESA's TGO CaSSIS, NASA MRO HiRISE and CTX, complemented with insights gained using numerical modelling and analogue field studies on Earth. The results of the project would be relevant both for current
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details, the following tasks will be carried out in parallel: 1. The PhD student will extend the current database (see, J. Chem. Theory Comput.2025, 21, 8010−8033) by obtaining highly-accurate reference