2

Site Reliability Engineer Remote Jobs in Reno, NV

Archaeological Field Technician

Reno, NV ยท Remote

$24 - $32/hr

... engineering marketplace, and to: * Perform background research including record searches and ... California, Nevada, Washington, Utah, Oregon, Idaho, Colorado, and Arizona #LI-Remote Skills ...

Archaeology Field Director

Reno, NV ยท On-site +1

$30 - $39.50/hr

At WestLand Engineering and Environmental Services, a Trinity Consultants team, we are driven by ... Writing technical cultural resources reports and site records. What qualifications are required for ...

For other opportunities, please visit the TP Careers site at Responsibilities Your Responsibilities ... Engineering, and Compliance partners * Identify systemic patterns across the team's case queue and ...

Payroll Tax Processor - Remote

Reno, NV ยท On-site +1

$25 - $29.80/hr

For other opportunities, please visit the TP Careers site at Responsibilities Your Responsibilities ... Engineering, and Compliance partners * Identify systemic patterns across the team's case queue and ...

The work model for the role is Remote based out of Florida, USA. This role is contributing to the ... Currently enrolled in a bachelor's or master's degree program in Engineering, Business, Marketing ...

Showing results 41-52

Site Reliability Engineer Remote information

See Reno, NV salary details

$10

$63

$91

How much do site reliability engineer remote jobs pay per hour?

As of Sep 6, 2026, the average hourly pay for site reliability engineer remote in Reno, NV is $63.55, according to ZipRecruiter salary data. Most workers in this role earn between $54.66 and $72.64 per hour, depending on experience, location, and employer.

What is a site reliability engineer remote?

A Site Reliability Engineer (SRE) in a remote role is responsible for ensuring the reliability, performance, and scalability of software systems while working from a remote location. They bridge the gap between development and operations by implementing automation, monitoring, and incident response strategies. Remote SREs collaborate with distributed teams to improve infrastructure, troubleshoot issues, and optimize system performance. Strong communication skills, proficiency in cloud technologies, and expertise in software development are essential for success in this role.

What are the key skills and qualifications needed to thrive as a site reliability engineer remote?

To thrive as a Site Reliability Engineer Remote, you need expertise in systems administration, cloud infrastructure, automation, coding (often in Python or Go), and a solid grasp of networking fundamentals, usually demonstrated with a degree in computer science or equivalent experience. Familiarity with tools such as Docker, Kubernetes, AWS/GCP/Azure, monitoring platforms like Prometheus, and certifications like AWS Certified SysOps Administrator are highly valued. Excellent problem-solving, communication, and collaboration skills are essential, especially when troubleshooting incidents and passing information across distributed teams. These abilities ensure reliable, scalable services and smooth coordination in a remote work environment.

What are some common challenges faced by site reliability engineers working remotely, and how are they addressed?

Site Reliability Engineers working remotely may encounter challenges like coordinating across multiple time zones, maintaining clear communication during urgent incidents, and managing complex systems without direct on-site access. These are often addressed by leveraging collaborative tools (like Slack, Zoom, and incident management platforms), implementing well-documented processes, and participating in regular team syncs or on-call rotations. Remote SREs also benefit from automation and observability practices that provide in-depth systems insights without needing physical presence. Many organizations support their success through robust onboarding, continuous training, and establishing clear lines of communication for rapid response scenarios. This blend of technical and teamwork strategies helps remote SREs maintain service reliability and stay connected with their colleagues.

What are the most commonly searched types of Site Reliability Engineer jobs in Reno, NV?

The most popular types of Site Reliability Engineer jobs in Reno, NV are:

What are popular job titles related to Site Reliability Engineer Remote jobs in Reno, NV?

For Site Reliability Engineer Remote jobs in Reno, NV, the most frequently searched job titles are:

What job categories do people searching Site Reliability Engineer Remote jobs in Reno, NV look for?

The top searched job categories for Site Reliability Engineer Remote jobs in Reno, NV are:

What cities near Reno, NV are hiring for Site Reliability Engineer Remote jobs?

Cities near Reno, NV with the most Site Reliability Engineer Remote job openings:

Infographic showing various Site Reliability Engineer Remote job openings in Reno, NV as of August 2026, with employment types broken down into 1% As Needed, 81% Full Time, 16% Part Time, and 2% Contract. Highlights an 93% Physical, 2% Hybrid, and 5% Remote job distribution, with an average salary of $132,194 per year, or $63.6 per hour.

Uranium, NORM & Radiological-Risk Specialist -- GCM-2

Axyde Analytics

Reno, NV โ€ข On-site, Remote

$150 - $300/hr

Full-time

Posted 11 days ago


Key responsibilities

  • Identify uranium, thorium, NORM or TENORM risks associated with mineral deposits, concentrates, process streams, residues, tailings and products.

  • Review radiation-survey, dose-assessment, sampling, laboratory and monitoring information.

  • Evaluate occupational and public-exposure pathways, including inhalation, ingestion, direct radiation and environmental transport.


Job description

Uranium, NORM & Radiological-Risk Specialist — GCM-2

Location: Remote — anchored to Oak Ridge, Tennessee
Engagement: Contingent consulting/project-based assignment
Anticipated compensation: $150–$300 per hour or a negotiated fixed price for a defined work package
Travel: International travel may be required
Opportunity: USTDA Global Critical Minerals Project Scoping Services

Position Summary

Axyde Analytics is assembling a multidisciplinary expert cadre for a time-sensitive proposal to the U.S. Trade and Development Agency. If Axyde receives the award, USTDA may request support evaluating prospective international mining, mineral-processing, refining, infrastructure and critical-mineral supply-chain projects.

For GCM-2, Axyde is seeking a senior specialist with substantial, directly evidenced experience addressing radiological risk in mining, mineral processing or related industrial operations, particularly:

  • Uranium and thorium

  • Naturally occurring radioactive material

  • Technologically enhanced naturally occurring radioactive material

  • Radiation protection and exposure control

  • Radioactive residues, tailings and process streams

  • Nuclear-material safeguards and regulatory considerations

This is a deliberately narrow technical requirement. The specialist may work within broader mining, processing, environmental and regulatory teams, but selection for GCM-2 will be based primarily on demonstrated depth in radiological and nuclear-mineral risk.

This is not a general environmental, health and safety, industrial-hygiene, hazardous-materials or mining position. General EHS experience will not substitute for directly relevant radiological experience.

Potential Responsibilities

Depending on the assignment, the specialist may:

  • Identify uranium, thorium, NORM or TENORM risks associated with mineral deposits, concentrates, process streams, residues, tailings and products.

  • Evaluate radiological implications of rare-earth, heavy-mineral-sands, phosphate, uranium or polymetallic projects.

  • Review radiation-survey, dose-assessment, sampling, laboratory and monitoring information.

  • Evaluate occupational and public-exposure pathways, including inhalation, ingestion, direct radiation and environmental transport.

  • Assess radiation-protection programs, monitoring plans, engineering controls, administrative controls and personal protective measures.

  • Review radioactive-material handling, storage, transportation, residue management and disposal assumptions.

  • Evaluate tailings and waste-management approaches involving radioactive constituents.

  • Identify host-country regulatory, permitting, licensing, safeguards and institutional-capacity requirements.

  • Compare proposed practices with applicable U.S. and internationally recognized radiological-protection principles.

  • Review project assumptions involving uranium or thorium recovery as a primary product, coproduct, byproduct or regulated waste constituent.

  • Identify data gaps, testing requirements, regulatory uncertainties and conditions for responsible project advancement.

  • Contribute to scopes of work, terms of reference, budgets, schedules, monitoring plans and technical-risk registers.

  • Prepare or independently review concise, decision-grade technical findings and recommendations.

  • Participate in remote meetings, stakeholder discussions and international site visits when required.

Required Specialized Experience

Applicants must demonstrate meaningful experience in one or more of the following:

  • Uranium exploration, mining, processing, recovery or remediation.

  • Thorium-bearing mineral systems.

  • NORM or TENORM evaluation and management.

  • Radiological characterization of ores, concentrates, residues, tailings or industrial process streams.

  • Radiation protection, health physics or dose assessment.

  • Radiological sampling, monitoring, laboratory analysis or data validation.

  • Radioactive waste, residue or tailings management.

  • Rare-earth or heavy-mineral processing involving uranium or thorium coproducts.

  • Nuclear-material safeguards, accountability, licensing or regulatory compliance.

  • Radiological environmental assessment, remediation or closure planning.

Applicants must distinguish their personal technical contributions from the work performed by the broader project or organization.

Résumé Evidence Required

DO NOT SUBMIT A GENERAL RÉSUMÉ.

The submitted résumé must clearly identify:

  • At least two directly relevant radiological, uranium, thorium, NORM or TENORM projects.

  • The minerals, materials, facilities or process streams involved.

  • The radiological hazards or regulatory issues evaluated.

  • The applicant’s personal role and technical responsibility.

  • The specific surveys, models, assessments, controls, designs or reviews performed.

  • The applicable project scale and operating environment.

  • Technical reports, permits, safety analyses, monitoring plans or recommendations personally produced.

  • Measurable outcomes, regulatory decisions or risk reductions, where available.

A résumé that merely lists environmental compliance, industrial hygiene, hazardous materials, mining safety or nuclear-sector proximity without demonstrating substantive radiological responsibility will not be advanced.

Breadth is not rewarded for GCM-2 unless the required radiological or nuclear-mineral depth is first established.

Preferred Qualifications
  • Advanced degree in health physics, nuclear engineering, radiological science, environmental engineering, mining engineering, geochemistry or a closely related discipline.

  • Certified Health Physicist, Professional Engineer or comparable professional credential.

  • Experience with uranium, rare-earth, phosphate or heavy-mineral-sands projects.

  • Familiarity with U.S. Nuclear Regulatory Commission, Department of Energy, Environmental Protection Agency, International Atomic Energy Agency or comparable host-country requirements.

  • Experience evaluating projects in emerging markets or jurisdictions with developing regulatory institutions.

  • Experience preparing independent technical reviews, feasibility-study inputs, environmental assessments or lender/investor due diligence.

  • Experience preparing English-language reports for government, financial or executive decision-makers.

Eligibility and Availability

Applicants must:

  • Be a U.S. citizen or a non-U.S. citizen lawfully admitted for permanent residence in the United States.

  • Be potentially available to begin supporting an authorized assignment within approximately 20 days, subject to final scheduling.

  • Be willing and able to travel internationally when an assignment requires it.

  • Identify any country, customer, travel, employment, security, export-control or conflict-of-interest restrictions.

  • Be able to perform without using or disclosing classified information or proprietary information belonging to another employer or client.

  • Authorize Axyde to tailor and reformat the submitted résumé without materially changing the applicant’s qualifications.

A current or former security clearance may be relevant to certain experience but is not required unless a future assignment expressly states otherwise.

Contingent Nature of the Opportunity

This announcement supports proposal and contingent-workforce planning. It does not guarantee employment, contract award, minimum hours or a specific assignment. Any engagement will remain subject to contract award, assignment requirements, final role alignment, eligibility, availability, mutually acceptable compensation and execution of appropriate engagement documentation.

Application Instructions

Submit a résumé specifically tailored to uranium, thorium, NORM, TENORM or radiological-risk work. Include a short statement identifying:

  1. Your strongest radiological or nuclear-mineral subspecialty.

  2. The minerals, materials and facilities with which you have worked.

  3. Two directly relevant projects and your personal technical contribution.

  4. Your current location.

  5. Your U.S.-citizen or lawful-permanent-resident status.

  6. Your international-travel availability.

  7. Your anticipated hourly rate or fixed-work-package preference.

Applicants who cannot demonstrate direct depth in radiological or nuclear-mineral risk should not apply to GCM-2.