1

Biomedical Engineer Phd Jobs in Washington (NOW HIRING)

MINIMUM REQUIREMENTS: โ€ข PhD in Radiological Sciences, Physical Sciences, Chemistry, Biomedical Engineering, Computer Science, or a closely related field. โ€ข Demonstrated experience in biomedical ...

From military defense and space exploration to biomedical engineering, lives often depend on the ... A Master's degree, or PhD is preferred. Experience 7-10 years Radiation Engineering or related ...

Senior Guidance & Control Engineer

Reston, VA ยท On-site +1

$82K - $220K/yr

From military defense and space exploration to biomedical engineering, lives often depend on the ... Masters or PhD in a related field is preferred. Experience 5-10 years of Software Engineering or ...

Principal Guidance & Control Engineer

Reston, VA ยท On-site +1

$95K - $245K/yr

From military defense and space exploration to biomedical engineering, lives often depend on the ... Masters or PhD in a related field is preferred. Experience 10-15 years of relevant Engineering ...

Showing results 21-40

Biomedical Engineer Phd information

See Washington salary details

$46.4K

$107.4K

$158.6K

How much do biomedical engineer phd jobs pay per year?

As of Sep 2, 2026, the average yearly pay for biomedical engineer phd in Washington is $107,378.00, according to ZipRecruiter salary data. Most workers in this role earn between $84,400.00 and $131,400.00 per year, depending on experience, location, and employer.

What does a biomedical engineer PhD do?

A Biomedical Engineer PhD conducts advanced research and develops innovative solutions at the intersection of engineering, biology, and medicine. They design and improve medical devices, imaging systems, and biotechnologies, often working in academic, clinical, or industry settings. Their work may include publishing scientific papers, leading research projects, and collaborating with healthcare professionals to translate discoveries into practical applications that improve patient care.

What types of projects and collaborations can a biomedical engineer PhD expect to engage in within a multidisciplinary team?

Biomedical Engineer PhDs often work on projects that require close collaboration with clinicians, biologists, and other engineers. These collaborations may involve developing medical devices, improving imaging technologies, or conducting translational research that bridges laboratory findings with patient care. On a typical team, you might contribute expertise in advanced data analysis, experimental design, or regulatory compliance, while learning from colleagues in other specialties. This multidisciplinary environment fosters innovation and can open doors to leadership roles or specialized research positions in both academia and industry.

What are the key skills and qualifications needed to thrive as a biomedical engineer PhD, and why are they important?

To excel as a Biomedical Engineer PhD, you need advanced knowledge in biomedical engineering principles, research methodologies, and a doctoral degree in biomedical engineering or a related field. Familiarity with tools such as MATLAB, CAD software, laboratory instrumentation, and experience with regulatory standards like FDA or ISO is crucial. Exceptional analytical thinking, problem-solving abilities, and strong communication skills are vital for collaborating with multidisciplinary teams and conveying complex findings. These skills ensure innovative solutions, effective cross-functional teamwork, and successful navigation of regulatory and research challenges in biomedical engineering.

What is the difference between Biomedical Engineer Phd vs Biomedical Engineer?

AspectBiomedical Engineer PhdBiomedical Engineer
Required CredentialsPhD in Biomedical Engineering or related fieldBachelor's or Master's in Biomedical Engineering or related field
Work EnvironmentResearch labs, academia, advanced R&DHospitals, medical device companies, industry
Employer & Industry UsageAcademic institutions, research organizations, specialized R&DMedical device firms, healthcare facilities, manufacturing

The main difference between a Biomedical Engineer Phd and a Biomedical Engineer lies in education level, with the Phd focusing on advanced research and academic roles, while the Biomedical Engineer typically works in industry or clinical settings with a bachelor's or master's degree. The Phd often engages in innovative research, whereas the Biomedical Engineer applies engineering principles to develop and improve medical devices and systems.

What are popular job titles related to Biomedical Engineer Phd jobs in Washington?

For Biomedical Engineer Phd jobs in Washington, the most frequently searched job titles are:

What cities in Washington are hiring for Biomedical Engineer Phd jobs?

Cities in Washington with the most Biomedical Engineer Phd job openings:

Infographic showing various Biomedical Engineer Phd job openings in Washington as of August 2026, with employment types broken down into 88% Full Time, 2% Part Time, 2% Temporary, and 8% Contract. Highlights an 80% Physical, 6% Hybrid, and 14% Remote job distribution, with an average salary of $107,378 per year, or $51.6 per hour.

System Engineer - Level 5 with Security Clearance

CCS Global Tech

Annapolis, MD โ€ข On-site

Other

Posted 21 hours ago

Posted today


Job description

System Engineer - Level 5 Annapolis junction , MD, US, 20701 TS/SCI FSP $191,000 - $229,000 Job Description System Engineer 5 applies systems engineering principles throughout the systems life cycle phases: Concept, Development, Production, Utilization, Support, and Retirement. Interacts with the Government regarding Systems Engineering technical considerations and for associated problems, issues, or conflicts. Communicates with other program personnel, government overseers, and senior executives. Responsibility for the technical integrity, quality, and completeness of work performed and deliverables associated with one or more of the 25 process areas defined by ISO/IEC15288: Technical Process Area -Stakeholder Requirements Definition, Requirements Analysis, Architectural Design, Implementation, Integration, Verification, Transition, Validation, Operation, Maintenance, and Disposal. Project Process Area - Project Planning, Project Assessment and Control, Decision Management, Risk Management, Configuration Management, Information Management, and Measurement. Enterprise (Organizational Project-Enabling) Process Area - Project Portfolio Management, Infrastructure Management, Lifecycle Model Management, Human Resource Management, and Quality Management. Agreement Process Area - Acquisition and Supply. The Level 5 System Engineer shall possess the following capabilities: Perform systems engineering activities and assist in the preparation of a work product in Technical Process Areas associated with the ISO/IEC 15288. Develop and deliver a work product in any of the ISO/IEC 15288 Process Areas. Perform analysis of technical alternatives for a project and make preliminary recommendations. Assist in performing systems engineering activities in the ISO/IEC 15288 Agreement or Enterprise Process Areas. Perform systems engineering activities and assist in the preparation of multiple work products in Project and/or Technical Process Areas associated with any of the ISO/IEC 15288 processes. Perform systems engineering activities and develop and deliver work products in each of the ISO/IEC 15288 Project and Technical Process Areas. Independently analyze and recommend alternatives for elements of the project's technical design. Perform systems engineering activities and develop and deliver work products of either the ISO/IEC 15288 Agreement or Enterprise Process Areas Assist in developing a new or innovative approach to a technical or engineering issue. Assist in conducting an evaluation to determine its suitability for project implementation. Analyze and propose appropriate engineering standards and processes for a project. Supervise or coordinate the work of other contractor engineers or technicians on a project. Lead contractor systems engineering activities for a project including supervising the work of the project engineering staff and technicians. Approve delivery of work products of multiple process areas defined in the ISO/IEC 15288. Independently make decisions regarding engineering issues and methodology for a project. Brief stakeholders and present the status of all technical aspects of their project. Required Skills Competent with all manner of hand tools to include power tools. Competent with RF spectrum analyzers, oscilloscopes, and signal generators. Familiarity with Microsoft suite of applications to include Visio, Excel, and Word. Should have working knowledge of Linux. Experience performing site surveys and/or planning and executing system installations. Most possess excellent communication skills. Ability to work as part of a team or lead small team projects. Able to travel OCONUS, CONUS for up to 3-4 weeks at a time. Experience troubleshooting networks, hardware, and software configurations. Ability to think on the fly and adapt to unexpected challenges. Familiarity with system design and testing. Familiarity with customer GOTs software capabilities. A High School Diploma or GED plus nineteen (19) years of general systems engineering experience (any Process Area). A Bachelor's degree in a Qualified Engineering Field (Aeronautics, Biomedical, Chemical, Civil, Computer, Electrical, Environmental, Mechanical, Nuclear, Software, Systems, and Engineering Management) or a related discipline (Chemistry, Computer Science, Information Systems, Mathematics, and Physics) from an accredited college or university plus fifteen (15) years of systems engineering experience. A Master's degree in a Qualified Engineering Field (Aeronautics, Biomedical, Chemical, Civil, Computer, Electrical, Environmental, Mechanical, Nuclear, Software, Systems, and Engineering Management) or a related discipline (Chemistry, Computer Science, Information Systems, Mathematics, and Physics) from an accredited college or university plus thirteen (13) years of systems engineering experience. A PhD in a Qualified Engineering Field (Aeronautics, Biomedical, Chemical, Civil, Computer, Electrical, Environmental, Mechanical, Nuclear, Software, Systems, and Engineering Management) or a related discipline (Chemistry, Computer Science, Information Systems, Mathematics, and Physics) from an accredited college or university plus thirteen (13) years of systems engineering experience. Active TS/SCI security clearance with a current polygraph is required