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Biomedical Engineer Jobs in Bryan, TX (NOW HIRING)

Research Engineer III

Bryan, TX ยท On-site

$5.0K - $9.1K/mo

Job Title Research Engineer III Agency Texas A&M University System Offices Department Bush Combat Development Complex Proposed Minimum Salary Commensurate Job Location Bryan, Texas Job Type Staff The ...

Research Engineer IV

Bryan, TX ยท On-site

$5.6K - $9.5K/mo

Job Title Research Engineer IV Agency Texas A&M University System Offices Department Bush Combat Development Complex Proposed Minimum Salary Commensurate Job Location Bryan, Texas Job Type Staff The ...

Showing results 41-60

Biomedical Engineer information

See Bryan, TX salary details

$37.8K

$87.4K

$129.1K

How much do biomedical engineer jobs pay per year?

As of Aug 8, 2026, the average yearly pay for biomedical engineer in Bryan, TX is $87,420.00, according to ZipRecruiter salary data. Most workers in this role earn between $68,700.00 and $107,000.00 per year, depending on experience, location, and employer.

What type of jobs do biomedical engineers do?

Biomedical engineers design and develop medical devices, equipment, and software used in healthcare, such as imaging systems, prosthetics, and diagnostic tools. They often work in research labs, hospitals, or manufacturing environments, applying engineering principles to improve patient care and medical technology. Strong knowledge of biology, engineering, and computer skills are essential for these roles.

What is a biomedical engineer?

Biomedical engineers are professionals who apply principles of engineering and biological sciences to design, develop, and maintain equipment, devices, computer systems, and software used in healthcare. They work to improve the quality and effectiveness of patient care by creating technologies such as artificial organs, medical imaging devices, and prosthetics. Biomedical engineers often collaborate with doctors, researchers, and other engineers to solve clinical problems and advance medical technology. Their work can be found in hospitals, research facilities, manufacturing companies, and regulatory agencies.

What do biomedical engineers do?

A Biomedical Engineer is an expert in the fields of medicine and biological sciences. They use their extensive knowledge base to develop different kinds of equipment and devices with the end goal of improving the effectiveness of patient care. Biomedical Engineers are critical thinkers and analysts. Their time is spent brainstorming solutions to medical problems and designing new devices, such as diagnostic machinery and even equipment for artificial body part generation. It is the job of a Biomedical Engineer to maintain the equipment they develop and to train other clinicians on proper usage and upkeep. In addition to the hands-on aspect of this career, Biomedical Engineers also dedicate time to researching medical dilemmas, studying up on biological discoveries, and assisting in the development of new scientific advances.

What are some common challenges biomedical engineers face when working on interdisciplinary teams?

Biomedical engineers frequently collaborate with professionals from diverse backgrounds, including clinicians, software developers, and regulatory specialists. One common challenge is effectively communicating technical concepts to non-engineers and aligning project goals across disciplines. Navigating differing priorities and timelines can also require strong project management and interpersonal skills. Emphasizing clear communication and a willingness to learn from other fields helps biomedical engineers successfully contribute to innovative healthcare solutions.

Do biomedical engineers get paid a lot?

Biomedical engineers typically earn competitive salaries that vary based on experience, education, and location. According to industry data, the median annual wage is above the national average for all occupations, with higher pay potential for those with advanced degrees or specialized skills in areas like medical device design or clinical engineering.

What is the difference between Biomedical Engineer vs Mechanical Engineer?

AspectBiomedical EngineerMechanical Engineer
Required CredentialsBachelor's in Biomedical Engineering or related field; often licensed or certifiedBachelor's in Mechanical Engineering; licensure varies by role
Work EnvironmentHospitals, medical device companies, research labsManufacturing, automotive, aerospace, research facilities
Industry UsageHealthcare, medical device development, biotechAutomotive, aerospace, energy, manufacturing

Biomedical Engineers focus on designing and improving medical devices and healthcare solutions, working mainly in healthcare settings. Mechanical Engineers have a broader scope, working on machinery, systems, and products across various industries. While both roles require engineering degrees, their work environments and industry applications differ significantly.

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

To thrive as a Biomedical Engineer, you need a solid background in biology, engineering principles, mathematics, and often at least a bachelor's degree in biomedical engineering or a related field. Familiarity with CAD software, medical imaging systems, and regulatory standards such as FDA guidelines is typically required. Strong problem-solving, communication, and teamwork skills help you collaborate with healthcare professionals and translate technical solutions into clinical practice. These competencies are crucial for developing safe, effective medical devices and technologies that improve patient outcomes.
What are the most commonly searched types of Biomedical Engineer jobs in Bryan, TX? The most popular types of Biomedical Engineer jobs in Bryan, TX are:
What cities near Bryan, TX are hiring for Biomedical Engineer jobs? Cities near Bryan, TX with the most Biomedical Engineer job openings:
Infographic showing various Biomedical Engineer job openings in Bryan, TX as of August 2026, with employment types broken down into 70% Full Time, 24% Part Time, and 6% Contract. Highlights an 70% In-person, 12% Hybrid, and 18% Remote job distribution, with an average salary of $87,420 per year, or $42 per hour.

Mechanical Engineer or Analyst Model Development

Terrestrial Energy

Bryan, TX โ€ข On-site

Full-time

Medical, PTO

Re-posted 4 days ago


Job description

Salary:

Come join us at Terrestrial Energy, a US developer of advanced, Generation IV nuclear reactors. We are growing our workforce to develop and deploy our Integral Molten Salt Reactor (IMSR) small modular nuclear plant to provide cost-competitive, clean firm heat and power to industry.

The Company has recently completed a merger creating a publicly listed operating company (NASDAQ IMSR), to secure the capital resources for our next growth phase. With the current alignment of US Federal and State government, as well as industry interest in Small Modular Reactor (SMR) and advanced reactor technologies such as Terrestrial Energys IMSR, there is today a unique and compelling opportunity to participate in the execution of the companys growth business plan.

The Company is building a team of high-performing business professionals and leaders in engineering, R&D, product management and business development areas at our Charlotte, North Carolina headquarters and future project sites. We are looking for talented individuals who can help build the organization, processes, and goal-orientated corporate culture to lead the company in our expansion. We are seeking people who:

  • Have US market experience and perspectives bringing good judgement and innovative approaches to problem solving and business plan execution.
  • Have demonstrated exceptional performance in past engineering projects.
  • Offer exceptional leadership and team building capabilities.
  • Have a deep understanding of the requirements for advanced reactor development.
  • Can assist in the creation of the discipline and organized company structure, and contribute to a culture of excellence, necessary for the development and deployment of the Companys IMSR plant.
  • Can thrive in a fast growing business environment, and are capable of flexibility and adaptability at a time of organizational change.
  • Have the specific skillset and experience for the following role:

The Mechanical Engineer/Analyst Model Development, under the direction the Mechanical Engineering Manager, is primarily responsible for contributing to the design and analysis of IMSR reactor systems, components and materials through the Detailed Engineering phase.

In particular, the role will include developing and implementing custom Engineering models for predicting the behavior and integrity of reactor materials, components, and systems throughout their operating life under IMSR reactor environmental conditions.

Other responsibilities include:

  • Conducting literature and operating experience (OPEX) reviews to support design and model development
  • Collaborating with the Research and Development (R&D) group to translate experimental results into custom Engineering models of components and materials under reactor conditions and to plan new experiments as needed
  • Preparing models, calculations and reports for analysis of reactor components (such as graphite core components, core support structures, the reactor vessel, and other in-core components) including evaluating the effects of irradiation, fatigue, creep, dynamic and static mechanical and thermal loads, and other aspects as needed
  • Developing computer codes for building custom analysis tools, automating input/output processing and customizing functionality of commercial software
  • Attending and participating in conferences and industry events to stay familiar with and contribute to the development of current codes, standards, and industry best practices
  • Interface with external experts and regulatory agencies


Core Competencies

  • Mechanical and Material model development
  • Strong knowledge of solid mechanics and material science fundamentals
  • Communication
  • Critical Thinking
  • Decision Making
  • Leadership
  • Planning and Organizing
  • Problem Solving
  • Results Orientation
  • Team player with the ability to collaborate and interact with other groups
  • Flexible and adaptable to change


Requirements

  • Degree or diploma in Mechanical Engineering, Materials Engineering, Nuclear Engineering, or alternate degree in a related field
  • Minimum 4 years of work experience in mechanical and materials modelling and analysis (relevant graduate studies and academic research experience will be considered, and exceptions may be considered for particularly well-suited experience of shorter duration)
  • Strong theoretical understanding of underlying mechanics of materials and material science fundamentals
  • Experience with ANSYS Mechanical or other commercial FEA software (ANSYS Mechanical APDL is preferred)
  • Experience with computer programming (Python, C, Fortran, C++, or other) for data pre/post processing or automation/customization of simulations in commercial software
  • Knowledge of fatigue, creep, dynamic and static, linear and non-linear analyses
  • Willingness to adapt and learn new approaches and areas of expertise
  • Strong communication (both written and verbal) skills
  • Demonstrated ability to work independently and with teams on problems that are challenging to solve and requiring innovative solutions


Assets

  • Graduate-level degree (Masters or PhD) with an applicable specialization
  • Experience with analysis of non-metallic materials (particularly graphite or similar materials)
  • Experience with the implementation of user programmable features for custom constitutive models within a commercial FEA software (such as UserMat in ANSYS or UMAT in ABAQUS)
  • Working knowledge of the effects of radiation on materials of construction (graphite and alloy)
  • Knowledge of nuclear and/or non-nuclear codes and standards including ASME Section III Division 1, Division 5, CSA N285.0 and ASME B31.1, CSA B51
  • Experience with high temperature reactor applications and knowledge of ASME Section III Division 5 is strongly preferred
  • Experience running large-scale models using HPCs
  • Licensed Professional Engineer

Benefits

  • Extended Healthcare Plan
  • A vacation policy designed to support your work-life balance
  • EAP Programs available to you and your family
  • Wellness Subsidy
  • Annual Performance Review
  • Paid Volunteer Days A chance to give back!
  • Career development opportunities


Please submit a Resume andCover Letter.


Candidates must be legally authorized to work in the US without the need for sponsorship for employment visa status.


Terrestrial Energy requires that the successful candidate be able to access and use information subject to U.S. Export Control Laws, which mandate all citizenships (including dual citizenships) be from the U.S. Department of Energys List of Generally Authorized Countries (10 CFR Part 810 Appendix A and can be found here:

https://www.ecfr.gov/current/title-10/chapter-III/part-810/appendix-Appendix%20A%20to%20Part%20810
) unless a specific authorization from the U.S. Department of Energy is obtained or unless you are a U.S. citizen, U.S. national, U.S. permanent resident, or protected individual under the U.S. Immigration and Naturalization Act (8 U.S.C. 1324b(a)(3)). Additional information can be found here: https://www.energy.gov/nnsa/10-cfr-part-810.

Terrestrial Energy Inc. is an equal opportunity employer and does not discriminate on the basis of any legally protected status or group. We encourage applications from all qualified individuals.

If you require accommodation during the application or interview process, please advise us as soon as possible so appropriate arrangements can be made. If you require technical support in a format that is accessible to you, please contact Accessibility@terrestrialenergy.com