2

Remote Battery Modeling Jobs in Colorado (NOW HIRING)

System modeling, such as steady-state load flows (CYME, Synergi, Windmil, ETAP, SKM etc.) * System ... Experience with renewable energy generation facility design, such as solar, wind, or battery ...

Model energy production (using PVsyst and/or Solar Farmer) and battery dispatch. * Conduct site evaluations, both remote and in-person, to assess project suitability, technical constraints, and ...

The Director of the Battery Energy Storage System (BESS) Operations & Maintenance Business Line ... This role can be fully remote or hybrid, with regular in-office presence in San Diego, CA, or ...

Averna Powered by Spherea's expertise ranges from vision systems, specialized battery test, RF ... Remote work model #LI-REMOTE * Competitive benefits package and competitive total compensation * An ...

Averna Powered by Spherea's expertise ranges from vision systems, specialized battery test, RF ... Remote work model #LI-REMOTE * Competitive benefits package and competitive total compensation * An ...

Averna Powered by Spherea's expertise ranges from vision systems, specialized battery test, RF ... Remote work model #LI-REMOTE * Competitive benefits package and competitive total compensation * An ...

Fully remote would be considered on a case-by-case basis. There is an identical senior level ... Experience providing high level reviews of engineer's finite element analysis models, hand and ...

next page

Showing results 1-20

Remote Battery Modeling information

What is remote battery modeling?

Remote battery modeling involves using software and computational tools to simulate and analyze the performance, behavior, and lifespan of batteries from a remote location. This job typically requires expertise in electrochemistry, data analysis, and computer modeling. Professionals in this field help optimize battery design and performance for applications such as electric vehicles, renewable energy storage, and consumer electronics without needing to be physically present in a lab or manufacturing site. Remote battery modeling enables faster prototyping, reduced costs, and enhanced collaboration across global teams.

What are the key skills and qualifications needed to thrive in remote battery modeling?

To excel in Remote Battery Modeling, you need a solid background in electrochemistry, battery systems, and advanced mathematical modeling, usually supported by a degree in engineering, physics, or a related field. Proficiency with simulation tools such as MATLAB, COMSOL Multiphysics, or Python for modeling and analyzing battery performance is typically required. Strong problem-solving abilities, attention to detail, and effective remote communication skills help professionals collaborate and innovate in distributed teams. These competencies ensure accurate battery models, effective remote teamwork, and advancements in battery technology crucial for energy and automotive industries.

What are the typical challenges faced when collaborating remotely within a battery modeling team?

One common challenge in remote battery modeling roles is ensuring seamless communication among team members who may be working across different time zones and disciplines. Since projects often require input from electrochemists, software engineers, and data scientists, maintaining clear documentation and regular virtual meetings is crucial for project success. Additionally, remote roles may require the use of collaborative simulation tools and shared repositories to keep work synchronized. Proactive communication, effective project management software, and setting clear expectations help address these challenges and foster a collaborative remote work environment.

What is the difference between Remote Battery Modeling vs Remote Battery Testing?

AspectRemote Battery ModelingRemote Battery Testing
Required CredentialsEngineering degree, knowledge of battery chemistry, modeling softwareEngineering or technical degree, testing certifications, lab experience
Work EnvironmentPrimarily computer-based, data analysis, simulationLaboratory or field testing, equipment operation
Industry UsageDesign, simulation, and optimization of batteriesValidation, quality assurance, performance testing

Remote Battery Modeling focuses on creating simulations and predictive models of battery behavior using software tools, while Remote Battery Testing involves physically testing batteries to verify performance and safety. Both roles require technical expertise but differ in their approach—modeling is data-driven and virtual, whereas testing is hands-on and experimental.

What cities in Colorado are hiring for Remote Battery Modeling jobs?

Cities in Colorado with the most Remote Battery Modeling job openings:

Nickel, Cobalt, HPAL/RKEF and Battery-Chemicals Specialists - Remote

Axyde Analytics

Denver, CO • On-site, Remote

$150 - $300/hr

Part-time

Posted 15 days ago


Key responsibilities

  • Evaluate nickel and cobalt resource quality, quantity, continuity, and confidence.

  • Review geological models, drilling, sampling, assays, mineralogy, and resource classifications.

  • Evaluate flotation, concentration, smelting, RKEF, HPAL, leaching, and refining alternatives.


Job description

Work arrangement: Remote within the United States, with potential international travel
Engagement: Contingent, part-time/on-call specialist
Anticipated compensation: $150–$300 per hour, depending on qualifications and assignment, or a negotiated fixed price by work package. $300 per hour is the maximum anticipated rate.

Opportunity

Axyde Analytics is assembling a multidisciplinary expert team for anticipated U.S. government-funded project-scoping assignments involving critical minerals and international infrastructure.

We seek multiple specialists covering nickel and cobalt resources, mineral processing, pyrometallurgical and hydrometallurgical conversion, battery-chemical production and commercial supply chains. Assignments may involve sulfide deposits, laterites, concentrates, matte, mixed hydroxide precipitate, intermediate products, recycling or proposed U.S. conversion facilities.

Axyde does not expect one candidate to cover the entire nickel-cobalt value chain. Applicants should identify the areas in which they possess direct, demonstrable expertise.

Specialist Tracks

We are recruiting experts in one or more of the following tracks:

  • Nickel-sulfide and copper-nickel-cobalt geology

  • Laterite, limonite and saprolite resource evaluation

  • Mineralogy, geometallurgy and feed variability

  • Crushing, grinding, flotation and concentrate production

  • Rotary-kiln electric-furnace processing and ferronickel

  • High-pressure acid leaching and pressure systems

  • Matte production and conversion

  • Atmospheric leaching and related hydrometallurgical routes

  • Solvent extraction, ion exchange and impurity removal

  • Mixed hydroxide and mixed sulfide precipitation

  • Nickel- and cobalt-sulfate refining

  • Battery-grade purification and product qualification

  • Residue, tailings, water, acid and emissions management

  • Pilot design, testwork, scale-up and commissioning

  • Nickel-cobalt markets, pricing, offtake and project finance

  • Battery recycling and secondary-feed recovery

Potential Responsibilities

Depending on the assignment and specialist track, selected experts may:

  • Evaluate nickel and cobalt resource quality, quantity, continuity and confidence.

  • Review geological models, drilling, sampling, assays, mineralogy and resource classifications.

  • Assess ore variability, mining method, blending, production schedules and feed security.

  • Evaluate flotation, concentration, smelting, RKEF, HPAL, leaching and refining alternatives.

  • Review feed mineralogy, recovery, impurity deportment, mass balance and product specifications.

  • Assess acid, neutralization, oxygen, steam, power, water and reagent requirements.

  • Evaluate pressure-equipment design basis, materials selection, corrosion, operability and maintenance.

  • Review residue neutralization, tailings, water treatment, emissions and closure implications.

  • Assess technology maturity, pilot results, operating references, commissioning and ramp-up risks.

  • Review intermediate-product quality, sulfate conversion and battery-grade customer requirements.

  • Identify decisive information gaps and define testwork or diligence needed before advancement.

  • Evaluate roads, ports, shipping, power, water and associated infrastructure.

  • Contribute to capital-cost, operating-cost, schedule and implementation assumptions.

  • Assess markets, benchmark pricing, payability, penalties, offtake and financing requirements.

  • Evaluate responsible-sourcing, provenance and supply-chain concentration risks.

  • Identify realistic opportunities for U.S. equipment, engineering, technology and services.

  • Develop or review feasibility-study, technical-assistance or pilot-project terms of reference, budgets and schedules.

  • Participate in sponsor, government, supplier, laboratory, customer or financing-source discussions.

  • Support international meetings, site visits and field verification when required.

  • Prepare concise analyses and recommendations for senior government decision-makers.

  • Serve as a discipline lead, contributor, same-discipline alternate or independent technical reviewer.

Required Qualifications

Candidates should possess:

  • At least 7–10 years of directly relevant professional experience, with greater experience preferred for discipline-lead and independent-review roles.

  • A degree in geology, mining engineering, mineral processing, metallurgy, chemical engineering, materials science or a closely related field.

  • Direct responsibility for identifiable nickel, cobalt, battery-chemical or recycling projects, facilities, studies or test programs.

  • Demonstrated understanding of the relationship among resource characteristics, process-route selection, recovery, impurity control, product specifications and project economics.

  • Strong written and verbal English-language communication skills.

  • Ability to prepare concise, decision-oriented technical work.

  • Ability to collaborate across geological, processing, environmental, commercial and financial disciplines.

  • Either U.S. citizenship or lawful permanent-resident status in the United States.

  • Legal authorization to work in the United States without current or future sponsorship.

  • Willingness and ability to travel internationally when an assignment requires it.

  • No known employment, confidentiality, intellectual-property, noncompete or conflict-of-interest restriction that would prevent participation.

Experience involving Indonesia, the Philippines, Australia, Canada, Africa, Latin America, Europe or U.S. processing and battery-material projects is particularly valuable.

Application Information Requested

Please submit a résumé and a brief response identifying:

  1. Your strongest specialist track or tracks.

  2. The nickel and cobalt deposits, feeds, process routes, intermediates and products with which you have direct experience.

  3. Up to five representative projects, facilities or studies and your personal responsibilities on each.

  4. The development stages you have supported, including exploration, testwork, pilot, feasibility, design, construction, commissioning, ramp-up or operations.

  5. Countries and regions in which you have worked.

  6. Languages in which you can conduct professional discussions or technical review.

  7. Whether you can serve as a discipline lead, independent reviewer, or both.

  8. Your current U.S. location.

  9. Whether you are a U.S. citizen or lawful permanent resident.

  10. Your availability during the next 30 days.

  11. Your ability to travel internationally and any geographic restrictions.

  12. Your anticipated hourly rate.

  13. Any actual or potential conflicts involving governments, project sponsors, technology providers, mining companies, battery manufacturers or current employers.

Engagement Conditions

This is a contingent opportunity supporting anticipated government-funded assignments. No employment, contract award, minimum workload or particular assignment is guaranteed.

Selection for an assignment will depend on contract award, the specific resource and technical question, qualifications, availability, eligibility, conflicts, travel requirements, mutually acceptable compensation and execution of appropriate employment or consulting documentation.

Axyde may tailor and reformat selected résumés for proposal compliance without materially changing the candidate’s qualifications or experience.

Axyde Analytics
Strategic minerals • Supply-chain security • U.S. industrial base