-
. Specifically, our core technique is scanning electrochemical cell microscopy (SECCM) , a powerful electrochemical imaging method for probing electrochemical processes at nanoscale sites on complex electrodes. We
-
://www.rowland.harvard.edu/). Our lab's primary focus is on bacterial-encoded domesticated viruses, known as gene transfer agents, that package random sections of the host genome for use in genetic exchange. These virus-like
-
for candidates with interests in multiscale simulations of complex physical phenomena, from the atomistic/electronic scale to mesocopics and beyond. Of particular interest is the development and application
-
data, weather records, and high-resolution air pollution and related environmental exposures data. Motivated by relevant public health and policy questions, the goal is to develop methodologies
-
brain aging and neurodegenerative diseases. We specialize in decoding glycans—complex carbohydrates that decorate our cells and permeate our brain’s extracellular environment. Despite their fundamental
-
apply new approaches to link key metabolic activities in complex microbial communities to specific microbes, genes, and enzymes, to uncover the functions of uncharacterized genes in microbiome sequencing
-
, and/or microscopy. A background in soft materials, complex fluids, or colloidal science is desirable but not strictly required. Special Instructions Please submit a current CV with publications listed
-
position in the Gozzi Lab at the Rowland Institute at Harvard (https://www.rowland.harvard.edu/). Our lab’s primary focus is on bacterial-encoded domesticated viruses, known as gene transfer agents