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Scanning Electron Microscopy Jobs in Seattle, WA

Perform comprehensive root cause failure analysis on tested components, utilizing fractography with Scanning Electron Microscopy (SEM) to identify failure origins and mechanisms. Develop and validate ...

Perform comprehensive root cause failure analysis on tested components, utilizing fractography with Scanning Electron Microscopy (SEM) to identify failure origins and mechanisms. Develop and validate ...

Tribology Engineer III

Seattle, WA · On-site

$121K - $169K/yr

Experience with characterization of wear surfaces and materials using methodssuch as:optical microscopy, scanning electron microscope, energy dispersive spectroscopy, x-ray fluorescence, fractography ...

Tribology Engineer III

Seattle, WA · On-site

$121K - $169K/yr

Experience with characterization of wear surfaces and materials using methods such as: optical microscopy, scanning electron microscope, energy dispersive spectroscopy, x-ray fluorescence ...

Failure Analysis Engineer

Seattle, WA · On-site

$100K - $150K/yr

... and electron/ion beam imaging. What you'll do: * The Failure Analysis Engineer will undertake ... Scanning Microscopy, and imaging tools (3D Xray, CSAM, etc.) * Demonstrated background in fault ...

Scanning Electron Microscopy information

What is scanning electron microscopy?

A Scanning Electron Microscopy (SEM) job involves operating and maintaining an SEM instrument to analyze the surface structure and composition of samples at high magnification. Professionals in this role prepare specimens, adjust imaging parameters, and interpret results for research, quality control, or failure analysis. These jobs are common in industries like materials science, electronics, pharmaceuticals, and nanotechnology. Strong technical skills, attention to detail, and an understanding of electron microscopy principles are essential for success in this field.

What does a typical day look like for someone working in scanning electron microscopy?

In a Scanning Electron Microscopy position, a typical day often involves preparing samples, calibrating and operating the SEM instrument, capturing high-resolution images, and analyzing microstructural features. You may collaborate closely with scientists, engineers, or quality control teams to interpret results and support research, development, or production goals. Documentation of findings and the upkeep of laboratory equipment are also regular responsibilities. Many SEM professionals spend part of their time troubleshooting instrumentation issues and optimizing imaging parameters to achieve the best results. The work can be a blend of independent tasks and collaborative efforts, depending on the size and focus of your organization.

What are the key skills and qualifications needed to thrive in scanning electron microscopy, and why are they important?

To excel in a Scanning Electron Microscopy role, you need a background in materials science, physics, or a related field, along with hands-on experience operating electron microscopes and analyzing microstructural data. Familiarity with SEM instrumentation, image analysis software, and sample preparation techniques is often required, and certifications in microscopy can be beneficial. Strong attention to detail, problem-solving abilities, and effective communication distinguish top performers in this field. These skills are crucial for producing accurate analyses, troubleshooting technical issues, and collaborating effectively within multidisciplinary research or industrial teams.

What are the most commonly searched types of Scanning Electron Microscopy jobs in Seattle, WA?

The most popular types of Scanning Electron Microscopy jobs in Seattle, WA are:

What are popular job titles related to Scanning Electron Microscopy jobs in Seattle, WA?

For Scanning Electron Microscopy jobs in Seattle, WA, the most frequently searched job titles are:

What job categories do people searching Scanning Electron Microscopy jobs in Seattle, WA look for?

The top searched job categories for Scanning Electron Microscopy jobs in Seattle, WA are:

Infographic showing various Scanning Electron Microscopy job openings in Seattle, WA as of August 2026, with employment types broken down into 66% Full Time, and 34% Contract. Highlights an 100% In-person job distribution.

Mechanical Test Engineer III

Infotech Sourcing

Kirkland, WA • On-site

Full-time

Re-posted 23 days ago


Job description

Request ID: 70359-1
Tax Work Location: US - WA - Redmon
Job Title: Mechanical & Electrical Engineering - Mechanical Engineer III
Job Description: Mechanical Testing Engineer
Master’s degree in Mechanical Engineering, Materials Science, or a related field is required.
5+ Years of experience required
Description
We are seeking a detail-oriented and self-motivated Mechanical Testing Engineer to join our dynamic team at Meta Reality Labs. The successful candidate will be responsible for the execution, development, and optimization of innovative mechanical testing and failure analysis methods for novel single-crystal optical materials. These materials are transformative for next-generation AR/VR applications, and your work will be critical to ensuring their reliability and performance

You will join an agile, cross-functional team focused on incubating winning prototypes and establishing new process capabilities with our supply-chain partners. This role is hands-on, involving laboratory work, deep data analysis, and collaboration with experts across various engineering disciplines.
Responsibilities
Design, implement, and document experiments for the mechanical characterization and failure analysis of novel single-crystal optical materials.
Handle, prepare, and process material samples, including slicing, dicing, lapping, and chemical-mechanical polishing (CMP), while adhering to all laboratory safety protocols.
Conduct a range of mechanical tests, including but not limited to fracture toughness testing, flexural strength testing, and biaxial flexure testing.
Perform comprehensive root cause failure analysis on tested components, utilizing fractography with Scanning Electron Microscopy (SEM) to identify failure origins and mechanisms.
Develop and validate novel testing methodologies and fixtures tailored to the unique geometries and properties of our advanced optical materials.
Collect, analyze, and interpret complex test data; prepare detailed reports and present findings and recommendations to cross-functional engineering and research teams.
Collaborate closely with materials scientists, optical engineers, and manufacturing partners to correlate mechanical properties with material processing and performance, driving continuous material and process improvements.
Minimum Qualifications
Master’s degree in Mechanical Engineering, Materials Science, or a related field.
4+ years of hands-on experience in the mechanical characterization of brittle materials (e.g., ceramics, glasses, single crystals).
Experience with advanced material processing techniques such as diamond wire sawing, lapping, bonding/de-bonding, and chemical-mechanical polishing (CMP) or similar processing techniques.
Demonstrated expertise in fracture mechanics principles and testing, including the experimental determination of stress intensity factors.
Hands-on experience with material, crystallography, and surface science or similar characterization techniques, especially using SEM for fractography.
Good understanding of mechanical design principles for custom test fixture design.
Proven ability to design and execute experiments (DOE), analyze results, and draw actionable conclusions.
Excellent data handling, documentation, and organization skills.
Strong written and verbal communication skills, with the ability to convey complex technical concepts to a diverse audience.
Preferred Qualifications
Ph.D. in a relevant discipline with a background in process development or material reliability.
Familiarity with optical metrology and refractive index measurements (e.g., prism coupler).
Proficiency in statistical data analysis and its application to brittle materials, including a strong understanding of Weibull statistics.
Experience with laboratory automation and data acquisition using software such as LabVIEW, Python, or MATLAB.
A fundamental understanding of crystallography and the anisotropic mechanical behavior of single-crystal materials.