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JOB TITLE
Post Doctorate Fellow

LOCATION
Worcester

DEPARTMENT NAME
Electrical & Computer Engineering NFR – JM

DIVISION NAME
Worcester Polytechnic Institute – WPI

JOB DESCRIPTION SUMMARY
The Post Doctorate Fellow in Computational Bio-electromagnetics will support a joint 5-year project with Massachusetts General Hospital and work on neuronal modeling under the effect of brain stimulation. Excellent software skills are required.

WPI is a diverse campus of learners passionate about creating an inclusive workplace that promotes and values diversity. We are looking for candidates who can support our commitment to equity, diversity, and inclusion.

JOB DESCRIPTION

FLSA STATUS
United States of America (Exempt)

WPI is an Equal Opportunity Employer that actively seeks to increase the diversity of its workplace. All qualified candidates will receive consideration for employment without regard to race, color, age, religion, sex, sexual orientation, gender identity, national origin, veteran status, or disability. It seeks individuals with diverse backgrounds and experiences who will contribute to a culture of

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JOB TITLE
Remote Adjunct Teaching Professor – Systems Engineering

LOCATION
Worcester

DEPARTMENT NAME
Graduate Studies – Instructors – JM

DIVISION NAME
Worcester Polytechnic Institute – WPI

JOB DESCRIPTION SUMMARY
Worcester Polytechnic Institute is seeking part-time adjunct faculty to teach graduate courses in Systems Engineering in an online/asynchronous delivery format. Schedule may vary, depending on need. Start dates will vary by course and semester.

Although Systems Engineering courses are delivered online, and this is a 100% remote position, all applicants must be US-based.

JOB DESCRIPTION

Adjunct Teaching Professor will teach Systems Engineering graduate courses, primarily in an online, asynchronous delivery method. Although this is a 100% remote position, all applicants must be US-based.

Courses will draw from WPI’s current curriculum in Systems Engineering, as well as new topics of interest: https://www.wpi.edu/academics/online/study/systems-engineering-ms

Ideal applicant will hold an advanced degree, preferably a PhD, in an engineering discipline with significant practical experience in the relevant area. Successful graduate-level teaching experience is

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JOB TITLE
Remote Adjunct Teaching Professor – Power Systems Engineering

LOCATION
Worcester

DEPARTMENT NAME
Graduate Studies – Instructors – JM

DIVISION NAME
Worcester Polytechnic Institute – WPI

JOB DESCRIPTION SUMMARY
Worcester Polytechnic Institute is seeking part-time adjunct faculty to teach graduate courses in Power Systems Engineering in an online/asynchronous delivery format. Schedule may vary, depending on need. Start dates will vary by course and semester.

This is a 100% remote position. Although Power Systems Engineering courses are delivered online, all applicants must be US-based.

JOB DESCRIPTION

Adjunct Teaching Professor will teach Power Systems Engineering graduate courses, primarily in an online, asynchronous delivery method. All applicants must be US-based.

Specific courses needed from WPI’s curriculum in Power Systems Engineering: https://www.wpi.edu/academics/online/study/power-systems-engineering-meng.

Ideal applicant will hold an advanced degree, preferably a PhD, in Electrical Engineering/Power Systems Engineering or related discipline with significant practical experience in the relevant area. Successful graduate-level teaching experience is preferred.

Required Documents:

Cover Letter Resume

Optional

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With multiple grants and research infrastructure provided by the U.S. National Science Foundation, researchers have shown that a newly developed material, niobium phosphide, can conduct electricity better than copper in films that are only a few atoms thick. These films can also be created and deposited at sufficiently low temperatures for compatibility with modern computer chip fabrication — and may help make future electronics more powerful and energy efficient.

So far, the best conductor candidates to outperform copper in nanoelectronics have had only exact crystalline structures, meaning they require very high temperatures to be formed. These new niobium phosphide films are the first examples of noncrystalline materials that become better conductors as they get thinner. The research is led by Standford University and results were published in Science.

“We are breaking a fundamental bottleneck of traditional materials like copper,” says Asir Intisar Khan, a postdoctoral researcher at Stanford University and an author on the research paper. “Our niobium phosphide conductors show that it’s possible to send faster, more efficient signals through ultrathin wires. This could improve the energy efficiency of future chips, and even small gains add up when many chips are used, such as in the massive data centers that store and process information today.”