2

Remote Energy Modeler Jobs in Utah (NOW HIRING)

Senior Controls Engineer

Salt Lake City, UT · On-site +1

$93K - $123K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

AES has been ranked #1 byBloombergNEF in renewable energy sales to corporations in the US and ... S. remote-based candidates, preferably located in the Pacific (PST) time zone. Key Responsibilities ...

Geospatial Analyst I

Salt Lake City, UT · Remote

  • Medical

  • Dental

  • Vision

  • Retirement

  • PTO

Utilize remote sensing/geospatial technologies to provide technician level support for natural ... Demonstrated ability to process, analyze, and model data in geospatial software (e.g., ERDAS ...

Remote (US, Canada, UK focused) micro1 is engaging Physics Experts (Postdoc / Junior professor) to ... Your work will shape how models learn, reason, and perform through high-quality, real-world input.

Remote (US, Canada, UK focused) micro1 is engaging Physics Experts (Postdoc / Junior professor) to ... Your work will shape how models learn, reason, and perform through high-quality, real-world input.

Remote (US, Canada, UK focused) micro1 is engaging Physics Experts (Postdoc / Junior professor) to ... Your work will shape how models learn, reason, and perform through high-quality, real-world input.

Showing results 21-40

Remote Energy Modeler information

What is a remote energy modeler?

Remote energy modelers are professionals who use specialized software to simulate and analyze the energy performance of buildings or systems, typically working from a remote location. They assess factors like energy consumption, efficiency, and environmental impact to help clients optimize designs, retrofit existing structures, and meet sustainability goals. Their work supports architects, engineers, and energy consultants in making data-driven decisions that improve energy efficiency and reduce costs.

What skills and qualifications are needed to thrive as a remote energy modeler?

To thrive as a Remote Energy Modeler, you need a solid background in building science, energy analysis, and a relevant degree in engineering or a related field. Proficiency with energy modeling software such as eQUEST, EnergyPlus, or IESVE, along with familiarity with building codes and certification programs like LEED, is typically required. Strong analytical thinking, attention to detail, and effective communication skills are essential to interpret data accurately and collaborate with remote teams. These skills are crucial for producing reliable energy models that inform sustainable building designs and compliance with energy standards.

How does a remote energy modeler typically collaborate with other project stakeholders while working offsite?

As a Remote Energy Modeler, effective collaboration is key to project success. You’ll regularly interact with architects, engineers, and project managers through virtual meetings, shared modeling platforms, and cloud-based documentation tools. Clear communication and timely feedback are essential, as you’ll often need to integrate updated design specifications and provide modeling results for decision-making. Being proactive in scheduling check-ins and maintaining organized, accessible files helps streamline teamwork and ensures all stakeholders stay aligned despite working remotely.

What is the difference between Remote Energy Modeler vs Remote Energy Analyst?

AspectRemote Energy ModelerRemote Energy Analyst
CredentialsDegree in engineering, energy, or related field; certifications like LEED AP or Energy Management certificationsDegree in environmental science, economics, or related; similar certifications may apply
Work EnvironmentDesigning energy models, using simulation software, collaborating with engineers and architectsAnalyzing energy data, preparing reports, providing insights for energy efficiency
Industry UsageCommonly employed in renewable energy, building design, and energy consulting firmsUsed across utilities, consulting firms, and government agencies

The main difference is that Remote Energy Modelers focus on creating detailed energy simulations and models, while Remote Energy Analysts interpret data and provide insights. Both roles require similar educational backgrounds and certifications, but their daily tasks and focus areas differ within the energy industry.

What are the most commonly searched types of Energy Modeler jobs in Utah?

The most popular types of Energy Modeler jobs in Utah are:

What are popular job titles related to Remote Energy Modeler jobs in Utah?

For Remote Energy Modeler jobs in Utah, the most frequently searched job titles are:

What job categories do people searching Remote Energy Modeler jobs in Utah look for?

The top searched job categories for Remote Energy Modeler jobs in Utah are:

What cities in Utah are hiring for Remote Energy Modeler jobs?

Cities in Utah with the most Remote Energy Modeler job openings:

Computational Physics Specialist - Remote

micro1 AI

Saint George, UT • Remote

$80 - $140/hr

Part-time

Posted 14 days ago


Job description

Role Title: Physics Expert (PhD / Postdoc)


Role Type: Contractor.


Location: Remote


micro1 is engaging Physics Experts (PhD / Postdoc) to contribute deep scientific knowledge and problem-solving skills to a high-impact customer project. In this role, you'll apply your expertise to help train next-generation AI systems. Your work will shape how models learn, reason, and perform through high-quality, real-world input. No prior experience in AI is required — your domain knowledge is what matters.


Scope of Work

  1. Solve advanced physics problems from your specialization, delivering rigorous, well-documented derivations and analyses.
  2. Produce technically precise, clearly written solutions, detailing all assumptions, approximations, and final results using LaTeX mathematical notation.
  3. Utilize SymPy, Python, and Jupyter for symbolic or numerical verification and clear computational workflows where relevant.
  4. Identify and articulate subtleties in problem statements, including special cases, boundary conditions, and dimensional consistency.
  5. Flag ambiguities in project materials, proposing well-reasoned interpretations and clarifications as needed.
  6. Iterate on submitted solutions in response to feedback from project reviewers, ensuring corrections are cleanly integrated.
  7. Uphold rigorous standards in documentation and reproducibility consistent with professional research practice.


Preferred Qualifications

  1. PhD in physics or advanced-stage PhD candidacy, with active research experience in a relevant subfield.
  2. Research expertise in one or more of: High Energy Physics, Mathematical Physics, Biophysics, Statistical Physics, Condensed Matter (including moiré systems, magnetism, PXP/Rydberg), AMO/Quantum Optics, Gravitation, Cosmology, Astrophysics, Quantum Information, or Optical Properties of Materials.
  3. 2–5 recent representative publications (past ~5 years) in your field, with accessible arXiv or DOI records.
  4. Proficiency with LaTeX for presenting mathematics, and with SymPy, Python, and Jupyter for computational work; willingness to indicate areas for further support if needed.
  5. Demonstrated excellence in written technical communication, with a track record of producing clear, precise, and well-argued scientific outputs.
  6. Strong analytical skills, able to isolate key physical principles and provide nuanced solutions to complex problems.
  7. Availability to engage with the project consistently over an 8–10 week period (approx. 10 hours/week).