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Masters In Biophysics Jobs (NOW HIRING)

Masters, Ph.D., or equivalent experience in chemistry, biophysics, computational biology, or closely related life-sciences domain expertise. * 8 or more years of experience in scientific computing ...

Masters, Ph.D., or equivalent experience in chemistry, biophysics, computational biology, or closely related life-sciences domain expertise. * 8 or more years of experience in scientific computing ...

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Masters In Biophysics information

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How much do masters in biophysics jobs pay per year?

As of Jul 3, 2026, the average yearly pay for masters in biophysics in the United States is $45,046.00, according to ZipRecruiter salary data. Most workers in this role earn between $37,000.00 and $50,000.00 per year, depending on experience, location, and employer.

What is a Masters in Biophysics?

A Masters in Biophysics is a graduate degree program that focuses on applying the principles and methods of physics to understand biological systems and processes. Students in this program study topics such as molecular biology, structural biology, computational modeling, and advanced physics. The degree prepares graduates for careers in research, biotechnology, pharmaceuticals, and academia, or for further study at the doctoral level.

What are the key skills and qualifications needed to thrive as a Biophysicist with a Master's in Biophysics, and why are they important?

To thrive as a Biophysicist with a Master's in Biophysics, you need a solid background in physics, biology, mathematics, and chemistry, typically supported by a relevant graduate degree. Proficiency with laboratory instrumentation, data analysis software (such as MATLAB or Python), and experience in molecular modeling or spectroscopy is often required. Strong analytical thinking, problem-solving skills, and effective communication make candidates stand out in research and collaborative environments. These abilities are crucial for advancing scientific understanding, interpreting complex data, and contributing to multidisciplinary teams.

What is the difference between Masters In Biophysics vs Biophysics Research Scientist?

AspectMasters In BiophysicsBiophysics Research Scientist
Required CredentialsMaster's degree in biophysics or related fieldTypically PhD or equivalent experience
Work EnvironmentAcademic labs, research institutes, industryResearch labs, universities, biotech companies
Employer & Industry UsageEducational institutions, research organizations, biotech firmsResearch-focused roles in academia and industry
Common Search & Comparison IntentUnderstanding educational pathways and career optionsClarifying research roles and career progression

Masters In Biophysics typically prepares individuals for entry-level research or industry roles, while Biophysics Research Scientist is a more advanced position requiring extensive research experience, often a PhD. The former focuses on foundational knowledge, whereas the latter emphasizes independent research and specialization.

What biology jobs pay over $100k?

In biophysics-related careers, roles such as biomedical engineers, research scientists, and biotech project managers often have salaries exceeding $100,000 annually, especially with advanced degrees and experience. Positions in pharmaceutical or biotech companies, as well as in healthcare technology development, tend to offer higher compensation. Skills in data analysis, laboratory techniques, and familiarity with regulatory environments can enhance earning potential.

What jobs can I get with a biophysics degree?

A biophysics degree prepares individuals for careers in research, healthcare, and biotechnology. Common roles include biomedical researcher, biophysicist, laboratory technician, medical device developer, and science consultant, often requiring knowledge of laboratory techniques, data analysis, and scientific software.

Is biophysics a good career?

A career in biophysics offers opportunities in research, academia, and industry, often requiring strong analytical skills and knowledge of biology and physics. Job prospects depend on advanced education such as a master's or Ph.D., and roles may involve laboratory work, data analysis, and interdisciplinary collaboration. It can be a rewarding field for those interested in understanding biological systems at a molecular level.

What are some common career paths available to graduates with a Master's in Biophysics?

Graduates with a Master's in Biophysics often find opportunities in research and development roles within academic institutions, biotechnology firms, and pharmaceutical companies. Many work as research scientists, laboratory managers, or pursue further studies toward a PhD. Collaboration with interdisciplinary teams—such as biologists, chemists, and engineers—is common, and the work typically involves designing experiments, analyzing data, and contributing to scientific publications. The field offers strong potential for career advancement, especially for those who gain specialized technical skills or pursue additional certifications.

What can I do with a master's in biophysics?

A master's in biophysics prepares individuals for research roles in academia, healthcare, or biotech companies, often involving laboratory work, data analysis, and use of specialized tools like microscopy and computational modeling. Graduates can pursue careers as research scientists, biomedical engineers, or technical specialists, and may need additional certifications or advanced degrees for certain positions.
More about Masters In Biophysics jobs
What cities are hiring for Masters In Biophysics jobs? Cities with the most Masters In Biophysics job openings:
What states have the most Masters In Biophysics jobs? States with the most job openings for Masters In Biophysics jobs include:
Toxicology Research Scientist

Toxicology Research Scientist

Vertex Pharmaceuticals

San Diego, CA • On-site

$101K - $152K/yr

Full-time

Medical, Dental, Vision, Retirement, PTO

Posted 25 days ago


Job description

Job Description
Vertex Pharmaceuticals is seeking a highly motivated and innovative scientist to join our Predictive and Investigative Safety Assessment (Toxicology) group in San Diego as a Research Scientist. This lab-based role offers an exciting opportunity to lead the development of advanced 3D organoid models, organ-on-a-chip technologies, and fit-for-purpose assays to investigate toxicological mechanisms and support our therapeutic discovery and development efforts. The successful candidate will have a proven track record of working with complex in vitro models, including primary cells and immune cells in 3D formats or co-culture systems, and will bring expertise in developing and applying innovative approaches to assess molecular toxicities. The ideal candidate will have a strong background in cellular biology, toxicology, and advanced in vitro model systems, with demonstrated experience in tissue engineering and assay optimization. Experience with immune cell co-culture models, primary cell systems, and high-throughput plate formats is highly desirable.
Key Duties and Responsibilities:
  • Design and develop fit-for-purpose assays to investigate toxicological mechanisms using advanced 3D organoid models, organ-on-a-chip technologies, and/or co-culture systems.
  • Lead the development and application of innovative platforms for studying toxicology in multicellular systems, including immune cell interactions and primary cell-based models.
  • Develop and optimize assays to evaluate toxicological mechanisms, with a focus on precision, reproducibility, and scalability.
  • Collaborate with cross-functional teams to integrate advanced in vitro models into drug discovery workflows, supporting safety assessment and therapeutic development.
  • Apply cutting-edge technologies, including automation and high-throughput plate formats, to enhance assay performance and throughput.
  • Partner with Systems Toxicology to generate and analyze complex biological datasets from in vitro models, enabling the identification of toxicological mechanisms and establishing in vitro-in vivo correlations.
  • Effectively communicate scientific findings, project progress, and key insights in project team meetings, department meetings, and discussions with key stakeholders to drive decision-making and inform strategic goals.

Knowledge and Skills:
  • Familiarity with omics datasets (transcriptomics, proteomics, secretomics, etc.).
  • Experience with scripting (Python and/or R/Bioconductor).
  • Demonstrated ability to work effectively in cross-functional teams and collaborate across disciplines.
  • Self-motivated, organized, and innovative, with excellent communication and presentation skills.
  • Proven ability to troubleshoot and solve complex biological and technical challenges in a fast-paced, dynamic environment.
  • A passion for advancing toxicology research to improve drug safety and transform the lives of patients.

Education and Experience:
  • Ph.D. (or equivalent degree) in toxicology, cellular biology, immunology, biochemistry, biophysics, or related disciplines with 0-3 years of relevant postdoctoral employment experience, or a Masters degree and 3+ years of experience or a Bachelors degree and 6+ years of experience
  • Strong expertise in developing and working with 3D organoid models, organ-on-a-chip technologies, and/or co-culture systems, particularly involving primary epithelial cells and immune cells.
  • Proven experience in designing and optimizing cell-based assays for disease modeling and/or evaluating mechanisms of toxicity.
  • Expertise in immune cell biology and co-culture models for studying immune-mediated toxicities.

#LI-KM1
#LI-Onsite
Pay Range:
$101,600 - $152,400
Disclosure Statement:
The range provided is based on what we believe is a reasonable estimate for the base salary pay range for this job at the time of posting. This role is eligible for an annual bonus and annual equity awards. Some roles may also be eligible for overtime pay, in accordance with federal and state requirements. Actual base salary pay will be based on a number of factors, including skills, competencies, experience, and other job-related factors permitted by law.
At Vertex, our Total Rewards offerings also include inclusive market-leading benefits to meet our employees wherever they are in their career, financial, family and wellbeing journey while providing flexibility and resources to support their growth and aspirations. From medical, dental and vision benefits to generous paid time off (including a week-long company shutdown in the Summer and the Winter), educational assistance programs including student loan repayment, a generous commuting subsidy, matching charitable donations, 401(k) and so much more.
Flex Designation:
On-Site Designated
Flex Eligibility Status:
In this On-Site designated role, you will work five days per week on-site with ad hoc flexibility.
Note: The Flex status for this position is subject to Vertex's Policy on Flex @ Vertex Program and may be changed at any time.
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Company Information
Vertex is a global biotechnology company that invests in scientific innovation.
Vertex is committed to equal employment opportunity and non-discrimination for all employees and qualified applicants without regard to a person's race, color, sex, gender identity or expression, age, religion, national origin, ancestry, ethnicity, disability, veteran status, genetic information, sexual orientation, marital status, or any characteristic protected under applicable law. Vertex is an E-Verify Employer in the United States. Vertex will make reasonable accommodations for qualified individuals with known disabilities, in accordance with applicable law.
Any applicant requiring an accommodation in connection with the hiring process and/or to perform the essential functions of the position for which the applicant has applied should make a request to the recruiter or hiring manager, or contact Talent Acquisition at ApplicationAssistance@vrtx.com