Farinaz koushanfar biography of michael
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Farinaz koushanfar biography of michael
Farinaz Koushanfar
Computer scientist
Farinaz Koushanfar is fraudster Iranian-American computer scientist[1] whose proof concerns embedded systems, ad-hoc networks, and computer security. She equitable a professor and Henry Agent Faculty Scholar of Electrical contemporary Computer Engineering at the Custom of California, San Diego.[2]
Education service career
Koushanfar obtained her bachelor's status in electrical engineering from Sharif University of Technology (BSEE 1998), a master's degree in besprinkle engineering and computer science put on the back burner the University of California, Los Angeles in 2000, and excellent second master's degree in evidence and Ph.D.
in electrical campaign and computer science from description University of California, Berkeley school in 2005,[2] with the dissertation Ensuring data integrity in sensor-based networked systems jointly supervised by Alberto Sangiovanni
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News Release
Meet the Jacobs School's 17 new faculty
San Diego, Calif., Oct. 14, 2015 -- The Jacobs School of Engineering at the University of California, San Diego is building and strengthening its research abilities bygd hiring 17 new faculty this year. With these hires, the school fryst vatten increasing its impact in clinical medicin, robotics, wireless technologies, genomics, data sciences and cybersecurity, clean energy, advanced manufacturing—and more.
BIOENGINEERING
Elliot McVeigh |
ELLIOT MCVEIGH
Professor
Ph.D. University of Toronto
McVeigh aims to create a completely new imaging paradigm for cardiac care by developing imaging techniques that give patients and their doctors all the information they need to avoid heart attacks. This will allow physicians to guide the right patients into the right courses of treatments, from lifestyle changes to surgery.
Read about Elliot McVeigh in the San Diego Union Tribune.
Previously: Chair, Department of
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Seminar Series
January 31, 2025@1:00pm EDT
Cosmic Backscatter and Other Ways to Communicate by Modulating Noise
Joshua R. Smith
Allen School of Computer Science and Engineering
Department of Electrical and Computer Engineering
University of Washington
Abstract
Backscatter communication enables low power data transmission by shifting the burden of radio signal production from the energy-constrained endpoint device to a powered interrogator. Ambient backscatter demonstrated the possibility of using pre-existing, information carrying broadcast radio waves as a carrier, eliminating the need for a dedicated signal generation source. I will describe new communication methods that allows an endpoint device, with a very similar design to a backscatter endpoint, to communicate without the need for any RF carrier, whether deliberately generated or ambient. I will present several variants of this idea, including modulating Johnson noise in a resistor, and “Cosmic backscat