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Postdoctoral In Metallurgy Materials Jobs in Bothell, WA

Materials Engineer

Bellevue, WA · On-site

$52 - $85/hr

Materials Engineer Position Description: Protingent Staffing has an exciting contract Materials ... in high temperature systems * A thorough understanding of metallurgy including welding and heat ...

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Postdoctoral In Metallurgy Materials information

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$27.9K

$66K

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How much do postdoctoral in metallurgy materials jobs pay per year?

As of Aug 22, 2026, the average yearly pay for postdoctoral in metallurgy materials in Bothell, WA is $65,980.00, according to ZipRecruiter salary data. Most workers in this role earn between $54,800.00 and $74,300.00 per year, depending on experience, location, and employer.

What does a postdoctoral researcher in metallurgy and materials do?

A Postdoctoral Researcher in Metallurgy and Materials conducts advanced research on the properties, structure, and performance of metals and materials. They design and carry out experiments, analyze data, and publish their findings in scientific journals. These researchers often collaborate with academic, governmental, or industrial partners to develop new materials or improve existing ones for various applications. In addition, they may mentor graduate students and contribute to grant writing and project management.

What are the key skills and qualifications needed to thrive as a postdoctoral researcher in metallurgy and materials?

To thrive as a Postdoctoral Researcher in Metallurgy and Materials, you need a PhD in materials science, metallurgy, or a closely related field, with strong expertise in experimental methods and data analysis. Familiarity with advanced characterization tools such as SEM, TEM, XRD, and relevant computational modeling software is commonly required. Critical thinking, problem-solving, and effective scientific communication are essential soft skills for collaboration and dissemination of research findings. These competencies are vital for advancing innovative research, publishing results, and contributing meaningfully to scientific progress in materials engineering.

What are the most common challenges faced by postdoctoral researchers in metallurgy materials, and how can they be addressed?

Postdoctoral researchers in metallurgy materials often encounter challenges such as designing and conducting complex experiments, managing multiple research projects simultaneously, and securing research funding. Balancing independent work with collaborative efforts in interdisciplinary teams is also common. Effective time management, clear communication with supervisors and collaborators, and staying up-to-date with recent advancements in the field can help overcome these obstacles. Additionally, seeking mentorship and participating in professional development opportunities can support career growth and skill development.

What job categories do people searching Postdoctoral In Metallurgy Materials jobs in Bothell, WA look for?

The top searched job categories for Postdoctoral In Metallurgy Materials jobs in Bothell, WA are:

Infographic showing various Postdoctoral In Metallurgy Materials job openings in Bothell, WA as of August 2026, with employment types broken down into 82% Full Time, 13% Part Time, 1% Temporary, 3% Contract, and 1% Nights. Highlights an 94% Physical, 1% Hybrid, and 5% Remote job distribution, with an average salary of $65,980 per year, or $31.7 per hour.

Postdoctoral Scholar - Aeronautics & Astronautics (Space/Electric Propulsion)

University of Washington

Seattle, WA • On-site

$6.4K/mo

Full-time

Re-posted 11 days ago


University Of Washington School Of Medicine rating

8.5

Company rating: 8.5 out of 10

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Job description

Description
The William E. Boeing Department of Aeronautics & Astronautics at the University of Washington seeks highly motivated Postdoctoral Scholars to work on next-generation electric propulsion concepts for very-low-Earth orbit (vLEO) satellites. The goal of this project is to improve the science and technology of electric propulsion concepts that utilize atmospheric gases for propellant (i.e. Air-Breathing Electric Propulsion). The successful candidate will have the opportunity to research and develop novel thruster configurations using state-of-the-art facilities, explore fundamental plasma dynamics and non-equilibrium plasma chemistry inherent to air-breathing thrusters, and assess propulsion performance using industry-standard thrust stands.
The successful candidates will work with Prof. Justin Little in the Space Propulsion and Advanced Concepts Engineering (SPACE) Lab. We are looking for candidates interested in exploring at least one of the following ideas:
  • High-pulse-rate pulsed inductive thrusters
  • Non-conventional Hall effect thruster configurations
  • RF plasmas for material testing of vLEO spacecraft surfaces

Candidates will have the opportunity to engage with the electric propulsion and space communities through attendance at conferences, meetings, and networking events. They will receive hands-on research mentorship and professional development support.
This full-time 100% FTE position is offered for nontenured 1 year (12 months) with potential for renewal depending on job performance and funding availability. The base salary range for this position will be $6,498/month ($77,976/year[RR1] ). The anticipated start for this position is December 15, 2024, or soon thereafter.
Postdoctoral scholars are represented by UAW 4121 and are subject to the collective bargaining agreement, unless agreed exclusion criteria apply. For more information, please visit the University of Washington Labor Relations website.[RR2]
Qualifications
Minimum Qualifications:
  • Completion of a PhD in aerospace engineering, physics, or a related field at the time of the appointment.
  • Experience in experimental plasma physics.
  • Ability to function and thrive in a collaborative environment.
  • Experience in publishing articles in peer reviewed journals.
  • Excellent verbal, written, and interpersonal communication skills.
  • Interest in mentoring / supervising graduate and undergraduate students.
  • Ability to manage priorities and timelines.
  • Applicants must be U.S. citizens or permanent residents at the time of application.

Desired Qualifications:
  • Expertise in the design and testing of electric propulsion systems.
  • Experience with plasma diagnostics such as Langmuir probes, emissive probes, retarding potential energy analyzers, among others.
  • Experience with thrust stands for electric propulsion performance measurements.
  • Experience with design and testing pulsed power circuits.
  • Experience with RF plasma sources.
  • Experience with building and maintaining vacuum systems.
  • Experience in building equipment using a machine shop
  • Expertise in reduced-order modeling of plasmas, including plasma chemistry.

Application Instructions
For full consideration, applicants should submit via Interfolio, the following by December 31st:
  • Cover letter
    • Letter should be no more than one page detailing
      1. their research experience
      2. how their interests would fit the project
      3. career plans
      4. available start date
  • Curriculum Vitae (including a list of publications)
  • 2 letters of recommendation

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