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Remote Biomedical Engineering Research Jobs in California

Senior UX Designer - Remote

Los Angeles, CA · On-site +1

$109K - $174K/yr

When you join our team, you'll gain access to our groundbreaking biomedical research facilities and ... Works with Designers, Product Managers, Engineers, Business Operations Specialists, Digital ...

Overview Joby Aviation's Flight Research team is looking for a remote pilot to operate our research ... STEM bachelor's degree or a nontechnical bachelor's with experience in engineering flight tests of ...

Engineer II

Thousand Oaks, CA · On-site +1

$102K - $117K/yr

... Biomedical Engineering or related field & completion of a university-level course, research project ... Flexible work models, including remote and hybrid work arrangements, where possible Apply now and ...

Showing results 21-40

Remote Biomedical Engineering Research information

What are the key skills and qualifications needed to thrive as a remote biomedical engineering researcher?

To thrive as a Remote Biomedical Engineering Researcher, you need a solid background in biomedical engineering principles, research methodology, and data analysis, typically supported by an advanced degree in biomedical engineering or a related field. Experience with technical tools such as MATLAB, Python, CAD software, and familiarity with regulatory standards like FDA or ISO is often required. Strong problem-solving abilities, attention to detail, and effective virtual communication skills help you excel in collaborative and independent research environments. These competencies are crucial to advancing innovative solutions, ensuring regulatory compliance, and efficiently contributing to research projects from a remote setting.

What is remote biomedical engineering research?

Remote biomedical engineering research involves conducting scientific studies and developing technologies in the biomedical field without being physically present in a traditional laboratory or office. Researchers use digital tools, cloud-based platforms, and remote collaboration software to design experiments, analyze data, and communicate with team members. This approach allows for flexibility, access to global talent, and often includes tasks like data analysis, computer modeling, literature reviews, and virtual meetings. As technology advances, more aspects of biomedical research can be effectively performed remotely, making this a growing trend in the industry.

What are some common challenges faced by professionals in remote biomedical engineering research roles?

Professionals in remote biomedical engineering research often encounter challenges related to collaboration and access to laboratory equipment. Since much of the work may involve data analysis, literature review, and software-based modeling, strong communication skills are essential for working effectively with multidisciplinary teams across different locations. Additionally, managing time zones and maintaining productivity without direct supervision can require proactive organization and self-motivation. Despite these challenges, remote roles offer flexibility and the opportunity to contribute to innovative projects with global teams.
What are the most commonly searched types of Biomedical Engineering Research jobs in California? The most popular types of Biomedical Engineering Research jobs in California are:
What are popular job titles related to Remote Biomedical Engineering Research jobs in California? For Remote Biomedical Engineering Research jobs in California, the most frequently searched job titles are:
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Research Computing Engineer

Santa Clara University

Santa Clara, CA • On-site, Remote

$115K - $129K/yr

Full-time

Posted 21 days ago


Job description

Position Title:Research Computing EngineerPosition Type:RegularHiring Range:
$115,200 - $129,600 per year; commensurate with experience
Pay Frequency:Annual

Company Overview:

Santa Clara University is a prestigious academic institution dedicated to advancing research, innovation, and education. We are seeking a visionary and highly skilled Research Computing Engineer to join our dynamic team. This pivotal role will strategically develop and optimize our High-Performance Computing (HPC) infrastructure, directly driving groundbreaking, multi-disciplinary research across the institution.

Job Description:

As the strategic anchor for the SCU High-Performance Computing (HPC) environment, the Research Computing Engineer serves as the primary technical partner between Santa Clara University's research community and its computational infrastructure.

This role focuses on driving the "outer relationship" with users-faculty, researchers, and students-to deeply understand, architect, and translate complex computational workflows into scalable technical solutions. Rather than simply maintaining existing infrastructure, the Research Computing Engineer provides strategic leadership, engineers robust processes, and drives long-term planning to ensure the HPC ecosystem proactively evolves alongside the university's research mission.

The ideal candidate is highly curious, creative, tenacious, and entirely self-directed. They bring an advanced technical toolkit combined with the leadership capacity to identify, define, and resolve complex systemic and human workflows independently and collaboratively.

Work Schedule: This position requires on-site support on a regular basis. On-campus vs. remote schedules will operate on a hybrid model based on strategic and operational tasks.

Essential Duties and Responsibilities

1. Strategic Leadership, Planning, and Research Facilitation

  • Lead the strategic roadmap and long-term capacity planning for SCU's HPC infrastructure, partnering with the Dean and academic stakeholders to forecast future computational demands.

  • Own the full-cycle consultation process with researchers and faculty, translating cutting-edge academic requirements into scalable, robust technical solutions.

  • Architect and implement proactive infrastructure enhancements to optimize application pipelines for emerging domains, including AI, Machine Learning, Data Science, and GPU-accelerated processing.

  • Evaluate, recommend, and drive the adoption of emerging technologies and external integrations with national academic computing resources to expand institutional research capabilities.

  • Provide high-level technical leadership and programming support to resolve complex, multi-disciplinary computational challenges across university departments.

2. Process Innovation, Governance, and Training

  • Design, implement, and institutionalize standard operating procedures (SOPs) and automated workflows for user onboarding, resource allocation, and system governance.

  • Develop lifecycle management processes for scientific software deployment, cluster usage auditing, and data management.

  • Establish system performance metrics and reporting frameworks to showcase HPC utilization and research impacts to executive leadership.

  • Design and spearhead comprehensive training programs, advanced workshops, and modern digital documentation to cultivate a self-sustaining research culture.

  • Lead institutional initiatives to train users in modern code-management, AI-assisted coding, CI/CD, and version control best practices (e.g., Git/GitHub).

3. Full-Cycle HPC Infrastructure Architecture & Operations

  • Own the deployment lifecycle, configuration, and optimization of specialized scientific software, compilers, containerized environments, and shared libraries.

  • Lead the architecture, fine-tuning, and policy creation for workload managers and cluster schedulers (e.g., Slurm) to ensure optimal, equitable resource distribution.

  • Lead the scaling and operational strategy for parallel storage and distributed file systems (e.g., BeeGFS, Lustre), ensuring total data integrity, high-throughput performance, and business continuity.

  • Lead network design and execution within the HPC environment, overseeing high-speed fabrics (e.g., InfiniBand) and complex VLAN configurations.

4. Security Frameworks and Systems Stewardship

  • Architect and enforce comprehensive security frameworks, including server hardening, access controls, and vulnerability mitigation protocols to safeguard sensitive research data.

  • Proactively monitor, analyze, and optimize system telemetry to perform deep root-cause analysis on complex hardware and software bottlenecks.

  • Stay current with emerging trends in HPC, AI, and cloud technologies to inform long-term infrastructure planning.

C. QUALIFICATIONS

1. Knowledge, Skills, and Abilities

  • Full-Cycle Ownership & Strategy: Demonstrated ability to independently design, implement, and govern enterprise-grade computational environments and workflows.

  • Technical Mastery: Advanced, hands-on mastery of Linux systems administration, automated provisioning, and comprehensive package management systems.

  • Scripting and Automation: Demonstrated experience writing and debugging complex scripts in Bash, Python, or Ansible.

  • HPC Ecosystem Expertise: Deep knowledge of workload managers (Slurm), container technologies (Docker, Apptainer), and version control. Proven success implementing distributed file systems (BeeGFS, Lustre) and environment module systems.

  • Cybersecurity Leadership: Advanced understanding of cybersecurity principles, encryption standards, and risk-mitigation strategies unique to open research cluster environments.

  • Communication: Exceptional interpersonal and verbal communication skills; ability to explain complex technical concepts to non-technical users.

  • Problem Solving: Strong analytical skills with a proactive approach to identifying and resolving technical and human issues.

2. Experience and Education

  • Education: Bachelor's degree in Computer Science, Engineering, or a highly quantitative field required. Advanced degree (MS or PhD) strongly preferred to bridge the gap during high-level research consultations.

  • Experience: 8-10 years of progressively responsible experience in Information Technology operations and system design, ideally within an academic, government lab, or corporate R&D research setting.

  • Preferred Experience: 5+ years of experience explicitly leading, architecting, and supporting multi-node HPC cluster environments.

D. PHYSICAL DEMANDS
  • Routinely perform server installation, troubleshooting, and repairs at the data center, including lifting or moving objects up to 50 pounds.

  • Considerable time spent at a desk using a computer terminal.

  • Ability to meet in-person with researchers and colleagues on the Santa Clara University campus.

E. WORK ENVIRONMENT
  • Hybrid Eligible: Regular on-site presence required, typically at least 3-4 days a week, depending on task requirements.

  • Occasional exposure to data center conditions, including equipment noise (>80dB), high voltage electricity, and varying temperatures.

  • Standard work hours are 9 am - 5 pm Pacific, with occasional evening or weekend work required for system maintenance or outage mitigation.


Telecommute

Santa Clara University is registered to do business in the following states: California, Nevada, Oregon, Washington, Arizona, and Illinois. Employees approved to telecommute are required to perform their work within one of these states.

EEO Statement

Equal Opportunity/Notice of Nondiscrimination

Santa Clara University is an equal opportunity employer. All qualified applicants are encouraged to apply and will receive consideration for employment without regard to race, color, ethnicity, national origin, citizenship, ancestry, religion, age, sex, sexual orientation, gender, gender expression, gender identity, marital status, parental status, veteran or military status, physical or mental disability, medical conditions, pregnancy or related conditions, reproductive health decision making, or any other characteristic protected by federal, state, or local laws. For a complete copy of Santa Clara University's equal opportunity and nondiscrimination policies, please visit the Office of Equal Opportunity and Title IX website athttps://www.scu.edu/title-ix/.

Clery Notice of Availability

Santa Clara University annually collects information about campus crimes and other reportable incidents in accordance with the federal Jeanne Clery Disclosure of Campus Security Policy and Campus Crime Statistics Act. To view the Santa Clara University report, please visit the Campus Safety Serviceswebsite. To request a paper copy please call Campus Safety at (408) 554-4441. The report includes the type of crime, venue, and number of occurrences.

Americans with Disabilities Act

Consistent with its obligations under the law, Santa Clara University will provide reasonable accommodations to applicants and employees with disabilities. Applicants who wish to request a reasonable accommodation for any part of the application or hiring process should contact the Department of Human Resources ADA Team athraccommodations@scu.eduor by phone at (408)554-4392. Please note: This contact information is intended for accommodation requests only. Resumes or inquiries about application status sent to this inbox will not be reviewed or forwarded. For resumes or questions regarding application status, please contact hrservicedesk@scu.edu.