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will focus on understanding and quantifying controls on the mobilisation, concentration and trapping of lithium to form pegmatite ore bodies. The project will utilise high-pressure high
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suitable candidate: proven affinity for food system transformation; curiosity about complex societal change processes; a proactive attitude and good time management skills; good interpersonal and stakeholder
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the information stored in our genome. Especially in germ cells and early embryos, where transcription is absent, regulation of translation is crucial for controlling protein levels and guiding development. In
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the Earth's crust as a function of variables such as composition, temperature, pressure and oxygen fugacity. The candidate will focus on understanding and quantifying controls on the mobilisation, concentration
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for controlling protein levels and guiding development. In the Ruijtenberg lab, we study these mechanisms using a combination of genome-wide sequencing and single-molecule imaging approaches, aiming to understand
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facilitating the retention and transformation of seagrass-exuded DOM and POM into mineral-associated organic matter (MAOM), a process which can facilitate long-term carbon storage. Thus, MPB may enhance MAOM