-
. The position focuses on developing integrated circuits and hardware systems that merge sensing, signal processing, and inference directly at the analog and RF interface. This approach enables orders-of-magnitude
-
, advanced single-cell approaches, and in vivo behavioral analyses – to dissect the organization and function of sensory circuits. Duties We are seeking a highly motivated Computational Biologist
-
to assess device performance, including timing jitter, dark count rate, detection efficiency, and resonator quality factors Rapidly refine fabrication processes and readout circuit designs based on device
-
-element models of MEMS resonators Design, fabricate, and characterize MEMS resonator devices Integrate resonators into oscillator and electronic circuit platforms and evaluate system-level performance Work
-
neurodevelopment with a focus on how NR2F1 dosage shapes the specification of neuronal lineages and the formation of cortical circuits. NR2F1 is a key transcription factor controlling embryonic neuronal development
-
qualities within Carnegie Mellon University. We are in search of a team member who can effectively interact with a varied population of internal and external partners at a high level of integrity. We
-
of a team member who can effectively interact with a varied population of internal and external partners at a high level of integrity. We are looking for someone who shares our values and who will
-
the backend readout circuitry and system-level packaging. The postdoctoral associate will also work with other researchers at CMU and also industry members of the project to integrate the sensor with
-
. *Numerical expertise with classical simulations of quantum circuits, including tensor-network based approaches. Application Instructions: Candidates are required to submit a Resume or CV and a Research