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Seismic Research Engineer Jobs (NOW HIRING)

Seismologist

Boston, MA · On-site

$90K - $100K/yr

... research relevant to seismic source modeling * Knowledge of earthquake frequency parameters and ... Knowledge of C# programming language a plus * Some work experience (≤ 5 years) a plus Benefits

Seismologist

Boston, MA · On-site

$90K - $100K/yr

... research relevant to seismic source modeling * Knowledge of earthquake frequency parameters and ... Knowledge of C# programming language a plus * Some work experience ( 5 years) a plus Benefits

Seismologist

Boston, MA · On-site

$90K - $100K/yr

... research relevant to seismic source modeling * Knowledge of earthquake frequency parameters and ... Knowledge of C# programming language a plus * Some work experience ( 5 years) a plus Benefits

Seismologist

Boston, MA · On-site

$90K - $100K/yr

... research relevant to seismic source modeling * Knowledge of earthquake frequency parameters and ... Knowledge of C# programming language a plus * Some work experience (≤ 5 years) a plus #J-18808 ...

Seismologist

Boston, MA · On-site

$90K - $100K/yr

... research relevant to seismic source modeling * Knowledge of earthquake frequency parameters and ... Knowledge of C# programming language a plus * Some work experience ( 5 years) a plus Benefits

... seismic qualifications, foundation design, and related modifications. * Research engineering and design issues, evaluate alternative solutions, and provide recommended options to project teams for ...

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Seismic Research Engineer information

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$106K

$142.5K

How much do seismic research engineer jobs pay per year?

As of Sep 10, 2026, the average yearly pay for seismic research engineer in the United States is $106,012.00, according to ZipRecruiter salary data. Most workers in this role earn between $104,000.00 and $104,000.00 per year, depending on experience, location, and employer.

What is a seismic research engineer?

Seismic Research Engineers are professionals who study and analyze seismic activity, such as earthquakes, to improve the safety and resilience of structures and infrastructure. They design experiments, develop models, and use specialized equipment to collect and interpret seismic data. Their work is crucial for earthquake hazard assessment, building code development, and disaster risk reduction. Seismic Research Engineers often collaborate with geologists, civil engineers, and government agencies to enhance our understanding of earthquake risks and develop effective mitigation strategies.

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

To thrive as a Seismic Research Engineer, you need a strong background in geophysics, structural engineering, and data analysis, often supported by a degree in civil engineering or geosciences. Familiarity with seismic modeling software, data acquisition systems, and programming languages like MATLAB or Python is typically required. Exceptional problem-solving skills, attention to detail, and effective collaboration are valued soft skills in this field. These competencies are crucial for accurately analyzing seismic data, developing innovative solutions, and ensuring the structural integrity and safety of critical infrastructure.

What are some common challenges faced by seismic research engineers when working on field projects?

Seismic Research Engineers often encounter challenges such as unpredictable environmental conditions, logistical complexities in deploying and maintaining sensitive equipment, and interpreting large volumes of complex data from field recordings. Effective collaboration with geologists, data analysts, and drilling teams is essential to ensure accurate data collection and analysis. Adaptability and strong problem-solving skills are crucial, as project requirements can change rapidly based on initial findings or technical issues encountered on-site.

What are popular job titles related to Seismic Research Engineer jobs?

For Seismic Research Engineer jobs, the most frequently searched job titles are:

Infographic showing various Seismic Research Engineer job openings in the United States as of August 2026, with employment types broken down into 1% As Needed, 86% Full Time, 11% Part Time, and 2% Contract. Highlights an 87% Physical, 3% Hybrid, and 10% Remote job distribution, with an average salary of $106,012 per year, or $51 per hour.

Senior Research Scientist (PREP0004534)

Gaithersburg, MD • On-site

Johns Hopkins University
Colleges, Universities, and Professional Schools • 10K+ employees

$107K - $136K/yr

Full-time

Re-posted 29 days ago


Johns Hopkins University rating

8.0

Company rating: 8.0 out of 10

Based on 71 frontline employees who took The Breakroom Quiz


Job description

Description
PREP Research Associate
This position is part of the National Institute of Standards (NIST) Professional Research Experience (PREP) program. NIST recognizes that its research staff may wish to collaborate with researchers at academic institutions on specific projects of mutual interest, thus requires that such institutions must be the recipient of a PREP award. The PREP program requires staff from a wide range of backgrounds to work on scientific research in many areas. Employees in this position will perform technical work that underpins the scientific research of the collaboration.
Research Title: Low-Damage Rocking Structures
Description of Work:
A structural engineering researcher is being sought to support a project investigating the seismic performance of low-damage structural systems. Despite progress made in the development of building codes to protect lives, communities continue to face costly and sometimes lengthy recoveries following major earthquakes. Interest in designing structures to achieve post-earthquake functionality has created the opportunity for innovative approaches to be brought into the mainstream of building design.
Rocking structural systems are designed to allow all or a portion of the seismic force-resisting system to uplift or rock, providing a form of "isolation" from the earthquake motion thus minimizing damage. Over the past several decades, the feasibility of rocking systems has been demonstrated through peer-reviewed research and implementation in buildings and bridges. Particularly, recently constructed buildings have demonstrated that rocking systems can provide cost-effective solutions to help meet recovery-based design objectives (e.g., functional recovery).
The successful candidate will conduct research evaluating the performance benefits of rocking structural systems in comparison to conventional systems. This work is intended to help advance the understanding of low damage rocking systems and provide new comprehensive guidelines for practicing engineers. Additionally, the researcher will investigate the influence of ground motion selection and scaling procedures and identify ground motion parameters that most affect rocking behavior. This work will contribute to current NIST research projects and will be synergistic with ongoing NIST collaborations with external researchers and practitioners.
Key responsibilities:
  • Conduct parametric studies of rocking and conventional buildings to understand the most influential ground motion characteristics on a variety of engineering demand parameters
  • Develop nonlinear structural models and conduct evaluations of conventional and low-damage systems
  • Develop design guidelines for low-damage structural systems to promote wider use
  • Develop and test new low-damage technologies that focus on implementation
  • Develop a structural component database, utilizing past experimental testing expertise and programming expertise.
  • Evaluate the cost-benefits of rocking systems over a range of seismic hazards and building types.

Qualifications
§ U.S. Citizenship is preferred
§ A Ph.D. in Civil Engineering or Structural Engineering, with a focus on Earthquake Engineering
§ Extensive experience in nonlinear modeling using OpenSees
§ Expertise in programming in python, MATLAB, and tcl.
§ Familiarity with performance-based seismic design
§ Expertise in rocking structural systems and low-damage structural systems, including past publications demonstrating modeling ability
§ Experience in large scale structural testing, component testing, and shake table testing.
§ Strong oral and written communication skills.
Application Instructions
• CV/Resume
*Please limit C.V to 3 pages only and ONLY include a valid email address for your contact info. Your resume will not be considered if the following information is included on your CV/resume.
Self portraits
Phone number
Home address/Country
Citizenship status
Languages spoken
Sex/Gender
Personal Interest
Privacy Act Statement
Authority: 15 U.S.C. § 278g-1(e)(1) and (e)(3) and 15 U.S.C. § 272(b) and (c)
Purpose: The National Institute for Standards and Technology (NIST) hosts the Professional Research Experience Program (PREP) which is designed to provide valuable laboratory experience and financial assistance to undergraduates, post-bachelor's degree holders, graduate students, master's degree holders, postdocs, and faculty.
PREP is a 5-year cooperative agreement between NIST laboratories and participating PREP Universities to establish a collaborative research relationship between NIST and U.S. institutions of higher education in the following disciplines including (but may not be limited to) biochemistry, biological sciences, chemistry, computer science, engineering, electronics, materials science, mathematics, nanoscale science, neutron science, physical science, physics, and statistics. This collection of information is needed to facilitate administrative functions of the PREP Program.
Routine Uses: NIST will use the information collected to perform the requisite reviews of the applications to determine eligibility, and to meet programmatic requirements. Disclosure of this information is also subject to all the published routine uses as identified in the Privacy Act System of Records Notices: NIST-1: NIST Associates.
Disclosure: Furnishing this information is voluntary. When you submit the form, you are indicating your voluntary consent for NIST to use of the information you submit for the purpose stated.

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About Johns Hopkins University

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Gilman believed that teaching and research go hand in hand—that success in one depends on success in the other—and that a modern university must do both well. He also believed that sharing our knowledge and discoveries would help make the world a better place. In 145 years, we haven’t strayed from that vision. This is still a destination for excellent, ambitious scholars and a world leader in teaching and research. Distinguished professors mentor students in the arts and music, humanities, social and natural sciences, engineering, international studies, education, business, and the health professions. Those same faculty members, along with their colleagues at the university’s Applied Physics Laboratory, have made us the nation’s leader in federal research and development funding every year since 1979. That’s a fitting distinction for America’s first research university, a place that has revolutionized higher education in the U.S. and continues to bring knowledge and discoveries to the world.

Industry

Colleges, universities, and professional schools

Company size

10,000+ Employees

Headquarters location

Baltimore, MD, US

Year founded

1876