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Remote Control Systems Research Jobs in Georgia (NOW HIRING)

Remote (US / Canada) Duration: Fall/Winter 2026 co-op - 8 months, flexible start September 2026 ... They will be defined by rich world models that enable systems to reason over a customer's evolving ...

Remote (US / Canada) Duration: Fall/Winter 2026 co-op - 8 months, flexible start September 2026 ... They will be defined by rich world models that enable systems to reason over a customer's evolving ...

Remote (US / Canada) Duration: Fall/Winter 2026 co-op - 8 months, flexible start September 2026 ... They will be defined by rich world models that enable systems to reason over a customer's evolving ...

Remote (US / Canada) Duration: Fall/Winter 2026 co-op - 8 months, flexible start September 2026 ... They will be defined by rich world models that enable systems to reason over a customer's evolving ...

Remote (US / Canada) Duration: Fall/Winter 2026 co-op - 8 months, flexible start September 2026 ... They will be defined by rich world models that enable systems to reason over a customer's evolving ...

Remote (US / Canada) Duration: Fall/Winter 2026 co-op - 8 months, flexible start September 2026 ... They will be defined by rich world models that enable systems to reason over a customer's evolving ...

$50/hr

Working Location Location flexible (Tokyo, NYC, remote) The target hourly rate for this internship ... We take these matters seriously but cannot control third-party websites. To protect your personal ...

$50/hr

Working Location Location flexible (Tokyo, NYC, remote) The target hourly rate for this internship ... We take these matters seriously but cannot control third-party websites. To protect your personal ...

Showing results 41-60

Remote Control Systems Research information

What is remote control systems research?

Remote control systems research jobs focus on the study, development, and improvement of technologies that allow the operation of machines, devices, or processes from a distance. Professionals in this field design and test control algorithms, communication protocols, and interfaces to ensure reliable and secure remote operation. These roles are crucial in industries like robotics, aerospace, manufacturing, and transportation. Researchers may also explore emerging technologies such as wireless networks, AI integration, and cybersecurity to advance the field.

What are the typical collaboration dynamics for professionals in remote control systems research roles?

Professionals in Remote Control Systems Research often work as part of interdisciplinary teams, collaborating closely with engineers, software developers, and hardware specialists. Team members frequently engage in joint problem-solving sessions, contribute to design reviews, and participate in regular progress meetings to ensure project alignment. Effective communication is crucial, especially when working remotely or across different time zones, to integrate research findings into practical system improvements. Collaboration tools and version control systems are commonly used to manage shared projects and streamline workflow.

What are the key skills and qualifications needed to thrive as a remote control systems researcher?

To thrive as a Remote Control Systems Researcher, you need a solid background in control theory, systems engineering, and a relevant degree in electrical, mechanical, or computer engineering. Familiarity with simulation software like MATLAB/Simulink, real-time embedded systems, and programming languages such as Python or C++ is typically required. Strong analytical thinking, problem-solving ability, and effective communication skills help researchers excel in collaborative, innovative environments. These skills are crucial for developing, testing, and optimizing remote control systems that meet rigorous performance and reliability standards.

What is the difference between Remote Control Systems Research vs Remote Control Systems Engineering?

AspectRemote Control Systems ResearchRemote Control Systems Engineering
Required CredentialsTypically requires a master's or PhD in engineering, computer science, or related fieldsUsually requires a bachelor's or master's in electrical, mechanical, or systems engineering
Work EnvironmentResearch labs, academic institutions, R&D departmentsDesign, development, and testing in industrial or manufacturing settings
Employer & Industry UsageUniversities, research institutes, tech companiesManufacturers, automation companies, aerospace, automotive
Common Search & Comparison IntentUnderstanding research roles vs engineering roles in remote control systems

Remote Control Systems Research focuses on developing new theories, algorithms, and prototypes in controlled environments, often within academic or research institutions. In contrast, Remote Control Systems Engineering involves applying existing principles to design, implement, and maintain remote control systems in real-world industrial settings. Both roles require technical expertise but differ in their focus on innovation versus application.

What job categories do people searching Remote Control Systems Research jobs in Georgia look for?

The top searched job categories for Remote Control Systems Research jobs in Georgia are:

What cities in Georgia are hiring for Remote Control Systems Research jobs?

Cities in Georgia with the most Remote Control Systems Research job openings:

Infographic showing various Remote Control Systems Research job openings in Georgia as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% Remote job distribution.

Applied Research Intern, Proactive Intelligence & Customer World Models (PhD / Graduate Co-op)

Columbus, GA • Remote

Full-time

Posted 14 days ago


Block rating

7.9

Company rating: 7.9 out of 10

Based on 16 frontline employees who took The Breakroom Quiz


Job description

Team: Apollo - Block Applied R&D Location: Remote (US / Canada) Duration: Fall/Winter 2026 co-op - 8 months, flexible start September 2026 Level: Graduate student (MS or PhD, returning to your program after the co-op)

About Apollo

Apollo leads Block's efforts to build the Customer World Model (CWM): a continuously evolving representation of each customer's goals, context, history, constraints, and likely future needs.

The CWM powers proactive intelligence across Block's ecosystem. Instead of customers navigating products in search of features, intelligence observes their world, understands what matters, anticipates what comes next, and initiates actions on their behalf.

We believe the next generation of AI products will not be defined by chat interfaces or isolated agents. They will be defined by rich world models that enable systems to reason over a customer's evolving state, make better decisions, and learn continuously from outcomes. Apollo designs, prototypes, and guides the development of this intelligence layer.

About the role

We're hiring a small cohort of graduate research interns to help build the foundations of proactive intelligence.

This is not a traditional internship. You'll own a research problem end-to-end: framing the question, developing methods, running experiments, publishing findings, and, when successful, shipping your work into production systems used by millions of customers and sellers.

You'll work at the intersection of representation learning, foundation models, reinforcement learning, causal reasoning, agentic systems, and product intelligence. The goal is not simply to build smarter models, but to build systems that develop a deeper understanding of customers and use that understanding to make better decisions over time.

Past interns have shipped production systems within months and published their work in the same year.

What you'll work on

Depending on your interests and Apollo's roadmap, you'll focus on one or more of the following areas:

Customer World Models

Building rich representations of customers from event streams, financial activity, operational signals, and behavioral data.

Examples include:

  • Representation learning over long-horizon customer histories
  • Event-based foundation models
  • Multi-modal customer representations spanning structured, sequential, and graph data
  • Memory architectures for long-term customer understanding

Proactive Intelligence

Developing systems that can anticipate customer needs and initiate helpful actions before being asked.

Examples include:

  • Opportunity detection and next-best-action systems
  • Long-horizon planning and decision-making
  • Preference and goal inference
  • Learning when intervention creates value versus friction

Agentic Decision Systems

Building agents that reason over customer world models and take actions in real environments.

Examples include:

  • Tool use and planning
  • Multi-step reasoning over customer state
  • Autonomous workflow execution
  • Recovery and adaptation under uncertainty

Learning from Feedback Loops

Developing methods that allow intelligence to improve continuously from real-world outcomes.

Examples include:

  • Reinforcement learning from customer and product feedback
  • Reward modeling and preference learning
  • Counterfactual evaluation
  • Credit assignment over long decision horizons

Evaluation and Measurement

Building evaluation frameworks that predict real-world performance, trust, and customer value.

Examples include:

  • Simulated customer environments
  • Longitudinal evaluation
  • Decision quality metrics
  • Safety and reliability benchmarks

What we're looking for

We're looking for researchers interested in building systems that understand people, learn from experience, and improve over time.

Required

  • Currently enrolled in an MS or PhD program in Computer Science, Machine Learning, Statistics, Mathematics, Operations Research, or a related field, and returning to that program after the co-op.
  • Strong foundations in modern machine learning, including deep learning, optimization, representation learning, and foundation models.
  • Experience conducting independent research and translating ideas into working systems.
  • Fluency in Python and experience with PyTorch, JAX, or similar frameworks.
  • Evidence of research excellence through publications, open-source contributions, technical leadership, or equivalent work.

Nice to have

  • Experience with large language models and agentic systems.
  • Experience with reinforcement learning, reward modeling, or sequential decision-making.
  • Experience with representation learning for structured, temporal, or graph data.
  • Familiarity with large-scale training and production ML systems.
  • Interest in building AI systems that directly affect customer outcomes.

What you'll get

  • Direct mentorship from researchers working on the future of proactive intelligence at Block.
  • Access to large-scale datasets, modern infrastructure, frontier models, and substantial compute resources.
  • Opportunities to publish and contribute to open-source projects.
  • A chance to shape foundational technology that could power the next generation of Block products.
  • Exposure to both scientific research and product deployment, with a clear path from idea to impact.

Application Guidelines

Candidates may submit up to 9 active applications within a 60-day period. Reapplications to the same role are accepted 90 days after a previous application has been reviewed.

Use of AI in Our Hiring Process

We may use automated AI tools to evaluate job applications for efficiency and consistency. These tools comply with local regulations, including bias audits, and we handle all personal data in accordance with state and local privacy laws.

Contact us here with hiring practice or data usage questions.

Every benefit we offer is designed with one goal: empowering you to do the best work of your career while building the life you want. Remote work, medical insurance, flexible time off, retirement savings plans, and modern family planning are just some of our offering. Check out our other benefits at Block.

Block, Inc. (NYSE: XYZ) builds technology to increase access to the global economy. Each of our brands unlocks different aspects of the economy for more people. Square makes commerce and financial services accessible to sellers. Cash App is the easy way to spend, send, and store money. Afterpay is transforming the way customers manage their spending over time. TIDAL is a music platform that empowers artists to thrive as entrepreneurs. Bitkey is a simple self-custody wallet built for bitcoin. Proto is a suite of bitcoin mining products and services. Together, we're helping build a financial system that is open to everyone.


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