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Remote Robotics Research Engineer Jobs in Texas (NOW HIRING)

Job Title Postdoctoral Research Associate Agency Texas A&M Agrilife Research Department El Paso ... Agricultural Engineering, Geosciences, or a closely related field with remote sensing data ...

Senior Security Engineer - Data Platform

Austin, TX · On-site +1

$113K - $155K/yr

Secure Remote Access: Establish secure, auditable remote access solutions for engineers to troubleshoot robots at customer sites without compromising facility network integrity. * Network Security:

Showing results 21-40

Remote Robotics Research Engineer information

What is the difference between Remote Robotics Research Engineer vs Remote Robotics Software Developer?

AspectRemote Robotics Research EngineerRemote Robotics Software Developer
Required CredentialsMaster's or PhD in Robotics, Mechanical, or Electrical EngineeringBachelor's or Master's in Computer Science or Software Engineering
Work EnvironmentResearch labs, universities, R&D departmentsTech companies, startups, industrial firms
Industry UsageResearch, academia, innovation projectsProduct development, software solutions, automation
Common Search/ComparisonFocuses on research and innovation in roboticsFocuses on software development for robotics applications

The main difference is that Remote Robotics Research Engineers focus on advancing robotics technology through research and experimentation, often working in academic or R&D settings. In contrast, Remote Robotics Software Developers primarily develop and implement software solutions for robotic systems in industry. Both roles require technical skills, but their goals and work environments differ significantly.

What are the key skills and qualifications needed to thrive as a remote robotics research engineer?

To thrive as a Remote Robotics Research Engineer, you need a strong background in robotics, computer science, and mathematics, often supported by an advanced degree in a related field. Proficiency in programming languages such as Python or C++, robotics frameworks like ROS, and simulation tools such as Gazebo or MATLAB is typically required. Exceptional problem-solving, self-motivation, and effective virtual communication are crucial soft skills for collaborating and innovating remotely. These skills and qualities are vital for developing cutting-edge robotics solutions and ensuring smooth teamwork across distributed environments.

How does collaboration typically work for a remote robotics research engineer, and what tools are commonly used for remote teamwork?

As a Remote Robotics Research Engineer, you’ll frequently collaborate with multidisciplinary teams that may include software developers, mechanical engineers, and data scientists. Communication and project management are facilitated through tools like Slack, Microsoft Teams, and project tracking platforms such as Jira or Asana. Version control and code collaboration often occur via GitHub or GitLab. Regular virtual meetings, code reviews, and shared documentation ensure alignment and productivity despite the physical distance, making strong communication skills and self-motivation essential for success in this remote environment.

What is a remote robotics research engineer?

Remote Robotics Research Engineers are professionals who design, develop, and test robotic systems while working from a remote or virtual location. They use advanced programming skills, simulation tools, and data analysis to create robots or autonomous systems for various industries, such as manufacturing, healthcare, or space exploration. Their responsibilities often include conducting research, collaborating with cross-functional teams, and publishing their findings, all while utilizing cloud-based platforms and remote communication tools. This role is ideal for individuals with strong technical backgrounds who seek flexibility and global collaboration opportunities.
What are the most commonly searched types of Robotics Research Engineer jobs in Texas? The most popular types of Robotics Research Engineer jobs in Texas are:
What cities in Texas are hiring for Remote Robotics Research Engineer jobs? Cities in Texas with the most Remote Robotics Research Engineer job openings:
Infographic showing various Remote Robotics Research Engineer job openings in Texas as of August 2026, with employment types broken down into 1% As Needed, 85% Full Time, 11% Part Time, and 3% Contract. Highlights an 87% Physical, 3% Hybrid, and 10% Remote job distribution.

Postdoctoral Research Associate

Tamus

El Paso, TX • On-site, Remote

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 5 days ago


Job description

Job Title

Postdoctoral Research Associate

Agency

Texas A&M Agrilife Research

Department

El Paso

Proposed Minimum Salary

Commensurate

Job Location

El Paso, Texas

Job Type

Staff

Job Description

About Texas A&M AgriLife

Texas A&M AgriLife is comprised of the following Texas A&M University System members:

  • Texas A&M AgriLife Extension Service

  • Texas A&M AgriLife Research

  • College of Agriculture and Life Sciences at Texas A&M University

  • Texas A&M Forest Service

  • Texas A&M Veterinary Medical Diagnostic Laboratory

As the nation's largest most comprehensive agriculture program, Texas A&M AgriLife brings together a college and four state agencies focused on agriculture and life sciences within The Texas A&M University System. With over 5,000 employees and a presence in every county across the state, Texas A&M AgriLife is uniquely positioned to improve lives, environments and the Texas economy through education, research, extension and service.

Click here to learn more about how you can be a part of AgriLife and make a difference in the world!

Position Information

A postdoctoral research associate will join the 'Arid Hydrology and Water Systems' research group at the Texas A&M AgriLife Research Center at El Paso. The current focus of the group is on transboundary and shared water resources modeling for sustainable management and binational cooperation, with a strong emphasis on hydrologic modeling, participatory numerical modeling, remote sensing applications, and the development of data-driven decision-support tools. The successful candidate will work on a NASA-funded Transboundary Model and Data Homogenization (TMDH) project that aims to integrate NASA Earth observation (EO) products, in situ and field-sensor records, and advanced hydro-geologic models into an operational platform to support U.S.-Mexico treaty-based water allocation and infrastructure planning. The postdoc will have opportunities to work at the interface of research and practice, interacting closely with U.S.-Mexico stakeholders and agency partners, including the International Boundary and Water Commission (IBWC) and the North American Development Bank (NADBank).

Responsibilities:

  • Develop, implement, and validate remote-sensing-enabled models for transboundary surface-water and groundwater assessment, including the integration of NASA EO products (e.g., GRACE/GRACE-FO, SWOT, MODIS, GPM, Landsat, ECOSTRESS, OpenET, and others) with in situ and field-sensor data.

  • Configure, calibrate, and apply hydrologic and groundwater modeling systems (e.g., SWAT+ with gwflow/MODFLOW, ParFlow) for the Rio Grande and other arid and semi-arid basin settings.

  • Design and implement AI(ML/DL)-based predictive frameworks to assess water availability, drought impacts, groundwater depletion, and salinity risk under climatic and anthropogenic changes.

  • Lead data collection, QA/QC, harmonization, storage, and processing workflows across heterogeneous binational datasets for the TMDH framework.

  • Support to develop APIs, dashboards, and decision-support tools (e.g., web-based interfaces and visualization workflows) for IBWC, NADBank, and other regional stakeholders.

  • Coordinate usability testing, stakeholder workshops, and feedback loops, and contribute to advancing the platform from prototype to operational readiness.

  • Compose research articles for peer-reviewed journals and present results at scientific and stakeholder meetings.

  • Assist the supervisor in writing the project reports and potential grant proposals.

  • Train and supervise under/graduate student(s), interns, and other project team personnel.

  • Perform other assigned research and outreach duties related to ongoing research projects.

Required Qualifications:

  • Ph.D. in Hydrology, Water Resources Engineering, Environmental Engineering, Civil Engineering, Agricultural Engineering, Geosciences, or a closely related field with remote sensing data application at the time of appointment.

  • Peer-reviewed publications in hydrology, water resources, environmental modeling, remote sensing, or related domains.

  • Strong knowledge of hydrologic processes, transboundary/shared water resources management, and coupled human-natural systems.

  • Proficiency in geospatial and scientific computing tools (e.g., Python, R, GIS, Google Earth Engine, or equivalent) to handle and process complex datasets.

  • Excellent written and verbal communication skills, including the ability to interact with both technical and non-technical audiences.

  • Ability to work multi-tasking with project team, end-users, and binational stakeholders, complete project tasks before the deadline, and work cooperatively with the interdisciplinary project team.

  • Experience with surface water and groundwater modeling using tools such as SWAT/SWAT+ with gwflow/MODFLOW, ParFlow, and other similar models.

  • Experience with remote sensing and Earth observation data integration into hydrologic or environmental models.

  • Demonstrated experience with AI (ML/DL), data assimilation, or advanced statistical modeling for environmental or water resources applications.

  • Experience working with large, multi-source geospatial datasets, preferably in transboundary or data-scarce contexts.

Preferred Qualifications:

  • Knowledge of arid and semi-arid water resources and systems, drought, surface-groundwater interactions, and water-treaty policies.

  • Experience in building web-based tools, APIs, or dashboards for environmental data and model output visualization.

  • A valid driver's license is required to commute to project-related fieldwork and meetings.

What You Need to Know

Salary: Compensation for this position is commensurate based on the selected candidate's qualifications.

Why Work at Texas A&M AgriLife?

When you choose toworkfor Texas A&M AgriLife, you become part of an organization that is an established leader in agriculture and life sciences with a wide range of capabilities to meet the needs of our statewide, national, and international constituents.

In addition, Texas A&M AgriLife offers a comprehensive benefit package including the following:

  • Health, dental, vision, life and long-term disability insurance with Texas A&M AgriLife contributing to employee health and basic life premiums

  • 12-15 days of annual paid holidays

  • Up to eight hours of paid sick leaveand at leasteight hours of paid vacation each month

  • Automatic enrollment in theTeacher Retirement System of Texas

  • Employee Wellness Initiative for Texas A&M AgriLife

Applicant Instructions

Interested candidate, submit your application in a single PDF including: (1) a cover letter, (2) an updated CV, and (3) contact information of three professional references. Failure to provide requested application could result in an invalid submission and a rejected application.

All positions are security-sensitive. Applicants are subject to a criminal history investigation, and employment is contingent upon the institution's verification of credentials and/or other information required by the institution's procedures, including the completion of the criminal history check.

Equal Opportunity/Veterans/Disability Employer.