1

Biomedical Engineering Jobs in Newark, NJ (NOW HIRING)

The ideal candidate will have a degree in mechanical, chemical, or biomedical engineering (or a related discipline), at least one year of experience in a law firm setting, and a demonstrated ability ...

Position Details Position Information Recruitment/Posting Title Lecturer Fall 2026 Department Biomedical Engineering Salary Details The minimum of $ $2777 per credit Offer Information The final ...

Description Part-Time Research Scholar Biomedical Engineering New York University Biomechatronics and Intelligent Robotics Lab led by Prof. Hao Su ( at NYU Tandon School of Engineering is seeking to ...

Hao Su ( at NYU Tandon School of Engineering's Biomedical Engineering (BME) Department is seeking to hire a Post Doctoral Associate to work on mechatronics design, control, and reinforcement learning ...

Bachelor's degree in Computer Science, Electrical Engineering, Biomedical Engineering, Neuroscience, or equivalent practical experience. * In off Preferred qualifications: * Computer Science ...

New

Showing results 41-60

Biomedical Engineering information

See Newark, NJ salary details

$42.9K

$99.1K

$146.4K

How much do biomedical engineering jobs pay per year?

As of Sep 4, 2026, the average yearly pay for biomedical engineering in Newark, NJ is $99,142.00, according to ZipRecruiter salary data. Most workers in this role earn between $77,900.00 and $121,300.00 per year, depending on experience, location, and employer.

What is a biomedical engineer?

A Biomedical Engineering job involves applying engineering principles to healthcare and medical fields. Biomedical engineers design, develop, and improve medical devices, equipment, and software used in patient care. They work in hospitals, research facilities, and the medical device industry to enhance diagnostics, treatment, and rehabilitation. Their work combines biology, medicine, and engineering to solve healthcare challenges and improve patient outcomes.

What are the key skills and qualifications needed to thrive as a biomedical engineer?

To thrive as a Biomedical Engineer, you need a strong background in biology, engineering principles, and mathematics, typically supported by a relevant bachelor's or master's degree. Familiarity with CAD software, laboratory instrumentation, and regulatory standards like FDA guidelines is essential for this role. Strong analytical thinking, problem-solving abilities, and collaborative communication skills help biomedical engineers excel in multidisciplinary environments. These competencies are critical for designing safe, effective medical devices and solutions that improve patient care.

What are the typical work environments and team structures for biomedical engineers?

Biomedical engineers often work in diverse settings, including hospitals, research labs, manufacturing companies, or academic institutions. They usually collaborate in interdisciplinary teams with healthcare professionals, scientists, and product designers to develop and test medical devices or technologies. Depending on the organization, you may be involved in research and development, regulatory compliance, or product support, allowing for a mix of independent and team-based work. This collaborative approach not only enriches daily tasks but also provides valuable exposure to different specialties within the biomedical field. As a result, biomedical engineers often find numerous opportunities for growth and career advancement.

Do biomedical engineers make money?

Biomedical engineers typically earn a median annual salary that varies by experience, education, and location, with entry-level positions starting around $60,000 and experienced professionals earning over $100,000. They work in healthcare, research, and manufacturing environments, often requiring knowledge of biology, engineering, and medical devices. Certification and advanced degrees can enhance earning potential.

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.

What are the most commonly searched types of Biomedical Engineering jobs in Newark, NJ?

The most popular types of Biomedical Engineering jobs in Newark, NJ are:

What are popular job titles related to Biomedical Engineering jobs in Newark, NJ?

For Biomedical Engineering jobs in Newark, NJ, the most frequently searched job titles are:

What job categories do people searching Biomedical Engineering jobs in Newark, NJ look for?

The top searched job categories for Biomedical Engineering jobs in Newark, NJ are:

What cities near Newark, NJ are hiring for Biomedical Engineering jobs?

Cities near Newark, NJ with the most Biomedical Engineering job openings:

Infographic showing various Biomedical Engineering job openings in Newark, NJ as of August 2026, with employment types broken down into 10% Internship, 70% Full Time, 10% Part Time, and 10% Contract. Highlights an 95% In-person, and 5% Remote job distribution, with an average salary of $99,142 per year, or $47.7 per hour.

Postdoctoral Fellow-MSH-21015-019

Mount Sinai Hospital

Manhattan, NY • On-site

$53K - $73K/yr

Full-time

Re-posted 6 days ago


Mount Sinai rating

7.7

Company rating: 7.7 out of 10

Based on 296 frontline employees who took The Breakroom Quiz

165th of 898 rated healthcare providers


Job description


The BioMedical Engineering and Imaging Institute (BMEII) at the Icahn School of Medicine at Mount Sinai is seeking an outstanding physician-scientist or quantitative scientist for a minimum two-year NIH-funded Postdoctoral Research Fellowship supported by the National Heart, Lung, and Blood Institute (R01HL166720). The successful candidate will join a multidisciplinary research team investigating the mechanisms and imaging predictors of malignant ventricular arrhythmias in patients with mitral valve prolapse.
This unique position combines cutting-edge translational cardiovascular imaging research with formal clinical training in multimodality cardiovascular imaging, offering an exceptional opportunity for candidates pursuing careers in academic cardiovascular medicine, cardiac imaging, electrophysiology, biomedical engineering, or translational imaging science.
During the fellowship, approximately three days per week will be devoted to NIH-funded research activities, while two days per week will be dedicated to supervised clinical training in multimodality cardiovascular imaging under the leadership of Dr. Stamatios Lerakis. For eligible physician trainees, this integrated clinical experience fulfills the requirements of an Advanced Cardiac Imaging Fellowship, providing a unique pathway toward academic careers that combine clinical expertise with independent research.
Responsibilities
Research Responsibilities
The fellow will play a central role in an NIH-funded multidisciplinary research program integrating advanced cardiovascular imaging, clinical phenotyping, and quantitative image analysis to identify novel imaging biomarkers associated with ventricular arrhythmias and sudden cardiac death in mitral valve prolapse.
Primary responsibilities include:
  • Lead quantitative analysis and interpretation of multimodality cardiovascular imaging studies, including cardiac MRI, PET, echocardiography, and cardiac CT.
  • Develop and optimize image processing and quantitative analysis pipelines using commercially available and proprietary software.
  • Integrate multimodality imaging, clinical, electrophysiologic, biomarker, and longitudinal outcomes data into secure HIPAA-compliant research databases.
  • Develop and maintain centralized research databases while facilitating data access for multidisciplinary collaborators.
  • Collaborate closely with cardiologists, biomedical engineers, imaging scientists, statisticians, and data scientists to develop innovative analytical approaches.
  • Participate in image registration, segmentation, radiomic analyses, and advanced quantitative image processing.
  • Lead preparation of first-author manuscripts for publication in leading cardiovascular journals.
  • Present research findings at national and international scientific meetings.
  • Participate in NIH grant preparation, annual progress reports, and future funding applications.
  • Mentor medical students, graduate students, and junior research trainees.
    Clinical Cardiac Imaging Training
    In addition to research activities, fellows will spend approximately two days per week participating in structured clinical training within the Mount Sinai Cardiac Imaging Program under the leadership of Dr. Stamatios Lerakis.
    Clinical responsibilities include supervised interpretation of:
  • Cardiac Magnetic Resonance Imaging (CMR)
  • Cardiac Computed Tomography (CCT)
  • Transthoracic and Transesophageal Echocardiography
  • Nuclear Cardiology and Cardiac PET Imaging
    The clinical component is fully integrated with the research program and provides comprehensive exposure to multimodality cardiovascular imaging. For eligible physician trainees, this experience fulfills the requirements for an Advanced Cardiac Imaging Fellowship, while maintaining protected time for NIH-funded translational research.
    Research Environment
    The fellow will become an integral member of the BioMedical Engineering and Imaging Institute (BMEII), one of the nation's premier cardiovascular imaging research centers.
    The research environment includes access to:
  • State-of-the-art PET/MR, cardiac MRI, cardiac CT, echocardiography, and nuclear cardiology facilities
  • Large prospective cardiovascular imaging registries
  • Advanced quantitative image analysis software and computational resources
  • Artificial intelligence and machine learning collaborations
  • Biomedical engineering expertise
  • NIH-funded multidisciplinary translational research programs
    The fellow will collaborate closely with investigators in Cardiovascular Medicine, Biomedical Engineering, Electrophysiology, Artificial Intelligence, Data Science, and Biostatistics within the Mount Sinai Health System.

Qualifications
Qualifications
Applicants should possess one of the following:
  • MD or MD/PhD with training or strong interest in cardiovascular medicine, cardiac imaging, electrophysiology, heart failure, or related disciplines
  • PhD in biomedical engineering, imaging sciences, biomedical physics, computer science, or another quantitative discipline with experience in cardiovascular imaging
    Preferred qualifications include:
  • Prior experience in cardiac MRI, PET, echocardiography, cardiac CT, or multimodality cardiovascular imaging
  • Experience with quantitative image analysis and image processing
  • Familiarity with Python, MATLAB, R, FSL, SPM, or similar computational software
  • Strong scientific writing and communication skills
  • Demonstrated ability to work independently and collaboratively within multidisciplinary research teams
    Career Development
    This fellowship is specifically designed to prepare fellows for careers as independent academic investigators and leaders in cardiovascular imaging.
    Fellows will benefit from:
  • Protected research time within an NIH-funded laboratory
  • Structured mentorship from internationally recognized faculty in cardiovascular imaging and translational research
  • Clinical training in multimodality cardiovascular imaging under the leadership of Dr. Stamatios Lerakis
  • Opportunities to publish first-author manuscripts in leading cardiovascular journals
  • Participation in NIH grant development and career development award applications
  • Presentation of research at national and international scientific meetings
  • Mentoring experience with medical students, graduate students, and junior trainees
    The initial appointment is for a minimum of two years, with the possibility of extension based on performance and available funding.
    About the BioMedical Engineering and Imaging Institute
    The BioMedical Engineering and Imaging Institute (BMEII) at the Icahn School of Medicine at Mount Sinai is an internationally recognized center dedicated to advancing precision cardiovascular medicine through innovation in multimodality imaging, biomedical engineering, artificial intelligence, and translational research. Investigators within the Institute lead numerous NIH-funded programs spanning cardiovascular disease, inflammation, molecular imaging, structural heart disease, and computational imaging sciences.
    Application Process
    Interested candidates should submit:
  • Curriculum vitae
  • Brief statement describing research interests and long-term career goals
  • Contact information for three professional references
    Applications should be submitted to:
    Maria Giovanna Trivieri, MD, PhD
    Associate Professor of Medicine
    BioMedical Engineering and Imaging Institute
    Icahn School of Medicine at Mount Sinai
    (mariagiovanna.trivieri@mountsinai.org

Interested individuals should send a CV to Dr. Maria Giovanna Trivieri (mariagiovanna.trivieri@mountsinai.org)
SPOC-UAW Local 4100 at Icahn School of Medicine (Post Docs), IDE - Radiology BMEII - ISM, Icahn School of Medicine
About Us
Strength through Unity and Inclusion
The Mount Sinai Health System is committed to fostering an environment where everyone can contribute to excellence. We share a common dedication to delivering outstanding patient care. When you join us, you become part of Mount Sinai's unparalleled legacy of achievement, education, and innovation as we work together to transform healthcare. We encourage all team members to actively participate in creating a culture that ensures fair access to opportunities, promotes inclusive practices, and supports the success of every individual.
At Mount Sinai, our leaders are committed to fostering a workplace where all employees feel valued, respected, and empowered to grow. We strive to create an environment where collaboration, fairness, and continuous learning drive positive change, improving the well-being of our staff, patients, and organization. Our leaders are expected to challenge outdated practices, promote a culture of respect, and work toward meaningful improvements that enhance patient care and workplace experiences. We are dedicated to building a supportive and welcoming environment where everyone has the opportunity to thrive and advance professionally. Explore this opportunity and be part of the next chapter in our history.
About the Mount Sinai Health System:
Mount Sinai Health System is one of the largest academic medical systems in the New York metro area, with more than 48,000 employees working across eight hospitals, more than 400 outpatient practices, more than 300 labs, a school of nursing, and a leading school of medicine and graduate education. Mount Sinai advances health for all people, everywhere, by taking on the most complex health care challenges of our time - discovering and applying new scientific learning and knowledge; developing safer, more effective treatments; educating the next generation of medical leaders and innovators; and supporting local communities by delivering high-quality care to all who need it. Through the integration of its hospitals, labs, and schools, Mount Sinai offers comprehensive health care solutions from birth through geriatrics, leveraging innovative approaches such as artificial intelligence and informatics while keeping patients' medical and emotional needs at the center of all treatment. The Health System includes more than 9,000 primary and specialty care physicians; 13 joint-venture outpatient surgery centers throughout the five boroughs of New York City, Westchester, Long Island, and Florida; and more than 30 affiliated community health centers. We are consistently ranked by U.S. News & World Report's Best Hospitals, receiving high "Honor Roll" status, and are highly ranked: No. 1 in Geriatrics, top 5 in Cardiology/Heart Surgery, and top 20 in Diabetes/Endocrinology, Gastroenterology/GI Surgery, Neurology/Neurosurgery, Orthopedics, Pulmonology/Lung Surgery, Rehabilitation, and Urology. New York Eye and Ear Infirmary of Mount Sinai is ranked No. 12 in Ophthalmology. U.S. News & World Report's "Best Children's Hospitals" ranks Mount Sinai Kravis Children's Hospital among the country's best in several pediatric specialties. The Icahn School of Medicine at Mount Sinai is ranked No. 11 nationwide in National Institutes of Health funding and in the 99th percentile in research dollars per investigator according to the Association of American Medical Colleges. Newsweek's "The World's Best Smart Hospitals" ranks The Mount Sinai Hospital as No. 1 in New York and in the top five globally, and Mount Sinai Morningside in the top 20 globally.
Equal Opportunity Employer
The Mount Sinai Health System is an equal opportunity employer, complying with all applicable federal civil rights laws. We do not discriminate, exclude, or treat individuals differently based on race, color, national origin, age, religion, disability, sex, sexual orientation, gender, veteran status, or any other characteristic protected by law. We are deeply committed to fostering an environment where all faculty, staff, students, trainees, patients, visitors, and the communities we serve feel respected and supported. Our goal is to create a healthcare and learning institution that actively works to remove barriers, address challenges, and promote fairness in all aspects of our organization.

What Mount Sinai employees say

Pay

Benefits

Hours and flexibility

Workplace

Get the full story on Breakroom