-
encouraged to apply. Our laboratory develops and applies NMR methods - particularly solid-state NMR - to reveal molecular composition, structure, interactions, and chemical modifications in complex biological
-
interactions) and protein engineering to dissect how antibodies engage Fc receptors and drive protective versus pathogenic effector function. The successful candidate will help shape their own project direction
-
successful candidate will lead the design, operation, and characterization of high-enthalpy reacting-flow systems for methane pyrolysis and floating-catalyst chemical vapor deposition. Relevant reactor
-
patient–AI interaction design, focusing on how systems such as LLM-based tools, decision support systems, and adaptive health technologies are integrated into clinical workflows and/or patient’s lives
-
, synthetic biology, genetic screening, and computational biology. Projects are designed to be tailored to the scholar’s interests, and additional details can be discussed following initial inquiry. About the
-
these microbiological and cellular measurements with molecular-level and atomic-level studies of bacterial systems, including through close interactions with researchers using solid-state NMR spectroscopy and
-
an AI-enabled instructional coaching initiative, which advances a broader agenda of AI for high-stakes social interactions. This work is motivated by a challenge pervasive in early childhood and beyond
-
the precise gene activity and cell-cell interaction between the developing embryo and maternal endometrium. This work addresses a critical factor in human reproduction, as implantation failure remains a major
-
responsibilities Research leadership. Co-design and co-lead research projects, from study conception through dissemination. Technical development. Advance methods such as retrieval-augmented generation, source