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Summer Biomedical Engineering Research Jobs in Iowa

Biomedical Engineer

Iowa City, IA · On-site

$90 - $120/hr

Independent research and biomedical engineering project management are expected of the incumbent. * The incumbent must be able to learn organizational concepts to meet operational needs. * Attendance ...

... research, and industry careers. * Conceptual Teaching & Problem-Solving: Skilled at breaking down physiological system modeling, biomechanical analysis, and medical device design challenges. Guides ...

... research, and industry careers. * Conceptual Teaching & Problem-Solving: Skilled at breaking down physiological system modeling, biomechanical analysis, and medical device design challenges. Guides ...

Providing Research and Solutions on a Global Level Passionate about Microbiology and seeking ways ... or biomedical engineering ★ Must be a U.S. citizen to serve as Active Duty ★ Must have a ...

Providing Research and Solutions on a Global Level Passionate about Microbiology and seeking ways ... or biomedical engineering ★ Must be a U.S. citizen to serve as Active Duty ★ Must have a ...

... biomedical engineering, psychiatry, computational neuroscience, or a related field Required Qualifications: * Experience conducting human subjects research * Strong quantitative and data analysis ...

... biomedical engineering, psychiatry, computational neuroscience, or a related field Required Qualifications: * Experience conducting human subjects research * Strong quantitative and data analysis ...

Mechanical Engineer

Iowa City, IA · On-site

$100K - $130K/yr

KCL Engineering Your Best Career Move Shape the Future with KCL as our next Senior Mechanical ... From holiday parties and summer boat days to impactful community projects, we make every day count.

Electrical Engineer

Iowa City, IA · On-site

$100K - $130K/yr

At KCL Engineering, we don't just design systems - we create an environment where our employees ... From holiday parties and summer boat days to impactful community projects, we make every day count.

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Summer Biomedical Engineering Research information

What is a summer biomedical engineering research position?

A summer biomedical engineering research position is a temporary opportunity, typically lasting 8-12 weeks, where students or recent graduates work with faculty or professionals on research projects related to biomedical engineering. These positions often involve laboratory work, data analysis, literature reviews, and sometimes hands-on development of medical devices or software. The goal is to provide practical research experience, enhance technical skills, and contribute to advancements in healthcare technology. Participants can expect to learn about the research process and gain mentorship from experienced engineers and scientists.

What types of projects and responsibilities can I expect in a summer biomedical engineering research position?

In a Summer Biomedical Engineering Research role, you can expect to work on experimental or computational projects that contribute to ongoing research in areas such as medical devices, tissue engineering, or biomaterials. Your daily tasks may include assisting with laboratory experiments, data analysis, literature reviews, and collaborating with graduate students or faculty mentors. You'll likely participate in weekly lab meetings, present your findings, and may have opportunities to co-author research papers or posters. This experience is highly collaborative, and you'll gain exposure to interdisciplinary teamwork with professionals from engineering, biology, and medicine.

What are the key skills and qualifications needed to thrive in a summer biomedical engineering research role, and why are they important?

To excel in a Summer Biomedical Engineering Research role, a solid background in biology, engineering principles, and laboratory techniques—typically demonstrated through coursework or relevant internships—is essential. Familiarity with data analysis software (such as MATLAB or Python), biomedical instrumentation, and statistical tools is often required. Strong analytical thinking, attention to detail, and effective teamwork and communication skills help candidates stand out. These skills and qualities are crucial for conducting rigorous research, accurately interpreting data, and collaborating efficiently within multidisciplinary teams.

What is the difference between Summer Biomedical Engineering Research vs Summer Biomedical Equipment Technician?

AspectSummer Biomedical Engineering ResearchSummer Biomedical Equipment Technician
Required CredentialsUndergraduate or graduate degree in biomedical engineering or related fieldAssociate degree or certification in biomedical equipment technology
Work EnvironmentLaboratories, research facilities, academic institutionsHospitals, clinics, medical device service centers
Employer & Industry UsageUniversities, research institutes, biotech companiesHospitals, medical device companies, healthcare providers

Summer Biomedical Engineering Research typically involves conducting experiments, developing prototypes, and analyzing data in research settings. In contrast, Summer Biomedical Equipment Technicians focus on maintaining, repairing, and calibrating medical devices in clinical environments. Both roles require technical knowledge, but their focus and work settings differ significantly.

Infographic showing various Summer Biomedical Engineering Research job openings in Iowa as of August 2026, with employment types broken down into 50% Internship, and 50% Full Time. Highlights an 100% In-person job distribution.

Biomedical Engineer

Stryker Corporation

Iowa City, IA • On-site

$90 - $120/hr

Other

This job post has expired 1 day ago. Applications are no longer accepted.


Stryker rating

8.2

Company rating: 8.2 out of 10

Based on 112 frontline employees who took The Breakroom Quiz

131st of 494 rated machine equipment manufacturers


Job description

The VA Midwest Health Care Network advocates for a Whole Health System of care in each of the Medical Centers. This is an approach to healthcare that empowers and equips people to take charge of their health and well-being and live their lives to the fullest. As an employee operating in a Whole Health System of care, you will operate in a model with three core elements, seeking to create a personalized health plan for each Veteran. This is done in the context of healing relationships and healing environments and a connection back to the Veteran's community. This aligns with the Veterans Health Administration (VHA) Mission Statement to Honor America's Veterans by providing exceptional health care that improves their health and well-being.

Duties include, but are not limited to:
  • Using engineering principles, the incumbent may provide professional, biomedical services for the institution, insofar as these services do not interfere with the attainment of objectives.
  • Assignments require judgment in adapting practices and techniques to specific situations usually through a series of related processes. They must use resourcefulness and initiative in planning the details for the accomplishment of assignments.
  • A personal plan for learning and continued professional development must be continually developed that will ultimately be approved by the Supervisory Biomedical Engineer. The supervisor will provide specific guidance, as requested, by the Staff Engineer.
  • The incumbent must be able to learn new technology, identify trends, and have the ability to communicate this information in an advisory capacity to administrative, clinical, and technical staff. They must be able to utilize this information to solve biomedical engineering problems.
  • Assists in the development of the Medical Equipment Management Plan (MEMP) at the facility. Participates in medical device hazard investigations and assures compliance with the patient safety goals, the Safe Medical Devices Act (SMDA), and The Joint Commission (T JC) requirements.
  • Presentations may require written and oral communication as well as preparation of technical, informational, and graphical documentation.
  • Independent research and biomedical engineering project management are expected of the incumbent.
  • The incumbent must be able to learn organizational concepts to meet operational needs.
  • Attendance is expected at training conferences and meetings included in the requirements for the development of the Staff Engineer to the Full Performance Level of the 0858 Series, as well as facility or VISN level meetings.
  • Duties or projects typically include facility-based work and may include VISN or National Healthcare Technology Management (HTM) projects.
  • Program Involvement and Management: The Biomedical Engineer reports directly to the Supervisory Biomedical Engineer. They receive administrative direction with assignments in terms of broadly defined missions and functions. They exercise authority to oversee the overall planning, direction, and timely execution of assigned Biomedical Program activities. They have responsibility for planning, designing and implementing programs, projects, studies, and other work to support healthcare technology at the Medical Center. Successful execution of these responsibilities has major impact upon the outcome of patient care delivery. Presentations may require written and oral communication as well as preparation of technical, informational, and graphical documentation.
  • Technical Expertise: The Biomedical Engineer is recognized as the technical expert and advisor on Biomedical Engineering issues and aids in the Biomedical Engineering support provided by Biomedical staff at the medical center. They are responsible for providing assistance to the clinical staff in selection and utilization of medical equipment. The Biomedical Engineer advises the management staff in the areas of high-cost and high-volume medical technology, a wide array of general biomedical technology, as well as certain medical-related technology issues.

Work Schedule: Full-time; Monday-Friday, 0800-1630
Telework: Not available
Virtual: This is not a virtual position.
Functional Statement #: 000000
Relocation/Recruitment Incentives: Not authorized
Permanent Change of Station (PCS): Not authorized

To view additional job duties and descriptions, visit: USAJOBS Posting

Conditions of Employment
  • You must be a U.S. Citizen to apply for this job.
  • All applicants tentatively selected for VA employment in a testing designated position are subject to urinalysis to screen for illegal drug use prior to appointment. Applicants who refuse to be tested will be denied employment with VA.
  • Selective Service Registration is required for males born after 12/31/1959.
  • Must be proficient in written and spoken English.
  • Subject to background/security investigation.
  • Selected applicants will be required to complete an online onboarding process. Acceptable form(s) of identification will be required to complete pre-employment requirements (https://www.uscis.gov/i-9-central/form-i-9-acceptable-documents). Effective May 7, 2025, driver's licenses or state-issued identification cards that are not REAL ID compliant cannot be utilized as an acceptable form of identification for employment.
  • Must pass pre-employment physical examination.
  • Participation in the seasonal influenza vaccination program is a requirement for all Department of Veterans Affairs Health Care Personnel (HCP).
  • Complete all application requirements detailed in the "Required Documents" section of this announcement.

As a condition of employment for accepting this position, you will be required to serve a 1 or 2-year trial period during which we will evaluate your fitness and whether your continued employment advances the public interest. In determining if your employment advances the public interest, we may consider:

  • your performance and conduct;
  • the needs and interests of the agency;
  • whether your continued employment would advance organizational goals of the agency or the Government; and
  • whether your continued employment would advance the efficiency of the Federal service.

Upon completion of your trial period, your employment will be terminated unless you receive certification, in writing, that your continued employment advances the public interest.

Qualifications Basic Requirements
  • United States Citizenship: Non-citizens may only be appointed when it is not possible to recruit qualified citizens in accordance with VA Policy.
  • Education and/or Experience: The individual must meet either item (1) or (2) below to meet this requirement:
    • Bachelor's Degree or Higher in Engineering. To be creditable, the curriculum must be from a school of engineering with at least one curriculum accredited by the Accreditation Board for Engineering and Technology (ABET), as a professional engineering curriculum. Examples of acceptable engineering degrees include: Biomedical Engineering, Clinical Engineering, Bioengineering, Biomechanical Engineering, Electrical Engineering, Mechanical Engineering, and Biochemical Engineering. OR,
    • Certification as a Certified Clinical Engineer (CCE) and a bachelor's degree.
  • English Language Proficiency: Biomedical Engineers must be proficient in spoken and written English.

May qualify based on being covered by the Grandfathering Provision as described in the VA Qualification Standard for this occupation (only applicable to current VHA employees who are in this occupation and meet the criteria).

Grade Determination GS-12 Biomedical Engineer- (Full Performance Level)

Experience: Completion of at least one year of specialized experience equivalent to the next lower level, GS-11, or completion of a post-doctoral research fellowship in the field of biomedical engineering, and must fully meet the KSAs at that level.

Demonstrated Knowledge, Skills, and Abilities

  • Ability to implement and/or sustain an equipment management or biomedical research program that meets The Joint Commission (TJC), National Fire Protection Association (NFPA), or other applicable regulatory requirements.
  • Ability to develop material for a continuing education program for clinical or research staff, that address the principles and application of medical technology, and/or biomedical theory used in healthcare.
  • Ability to advise staff on emerging medical technology, or research procedures, while keeping abreast of changes in such technology, and utilizing the information to solve biomedical engineering problems.
  • Knowledge of basic project management principles, as applied to the healthcare setting and medical equipment, and information system implementation.

AND

Demonstrated Knowledge, Skills, and Abilities

  • Ability to conduct a medical equipment management or biomedical research program that is compliant with applicable healthcare standards and regulatory agencies.
  • Ability to develop a curriculum for a continuing education program, that address the safe and effective use of medical technology, and/or research devices.
  • Ability to manage a recall and safety alert program for medical devices, including medical device hazard investigations, to assure compliance with patient safety goals, SMDA, and TJC requirements.
  • Ability to conduct capital asset and infrastructure planning for medical equipment spanning initial concept, installation, and effective implementation of complex medical equipment.
  • Ability to function as the subject matter expert in the field of biomedical engineering, directly supporting specialized clinical technology, including service, system administration, training, quality assurance, and life-cycle management.
  • Ability to effectively advise clinical and administrative staff on medical technology, including existing and emerging technology, which addresses viability, long-term suitability, compatibility, and/or safety.
  • Knowledge of concepts related to computer based medical systems, networking protocols, and information security as it applies to medical technology within VHA.
  • Skill in communicating and working collaboratively with key stakeholders, including technical and professional staff at various levels of the organization.
  • Ability to apply project management principles to deployment of medical equipment and health information technologies.
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