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Engineering Analyst Jobs in Arizona (NOW HIRING)

Project Analyst

Phoenix, AZ · On-site

$55K - $85K/yr

Our team members are comprised of talented engineers, analysts, and project managers from all walks of life. We concentrate on engineering "outside-the-box" solutions to help organize discovery so ...

Project Analyst

Phoenix, AZ · On-site

$55K - $85K/yr

Our team members are comprised of talented engineers, analysts, and project managers from all walks of life. We concentrate on engineering "outside-the-box" solutions to help organize discovery so ...

SRE Analyst II

Scottsdale, AZ · On-site

$60K - $80K/yr

... Engineering (SRE). • Advanced Troubleshooting and diagnosing of issues. • Provide a positive ... analytical stance in translating business requirements into data-centric requirements to create a ...

Senior Advanced Mechanical Engineer

Phoenix, AZ · On-site

$75/hr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

This role requires strong analytical expertise, engineering judgment, and hands-on experience with engine design, manufacturing, and finite element analysis. The successful candidate will evaluate ...

Showing results 41-60

Engineering Analyst information

See Arizona salary details

$35.9K

$81.4K

$145.4K

How much do engineering analyst jobs pay per year?

As of Aug 15, 2026, the average yearly pay for engineering analyst in Arizona is $81,394.00, according to ZipRecruiter salary data. Most workers in this role earn between $62,000.00 and $88,500.00 per year, depending on experience, location, and employer.

What does an engineering analyst do?

The job duties of an engineering analyst revolve around ensuring the quality and efficiency of an engineering project. You work in fields such as civil engineering, tech, manufacturing, and healthcare. As an engineering analyst, you use data and various pieces of technical information to analyze a project plan, schedule all tasks, and then recommend solutions to problems that may arise throughout the project. You may work with other engineers and designers to plan a new project or troubleshoot for an existing project. In this career, your responsibilities include providing reports on your analysis to the lead engineer or other stakeholders in the project.

What are the key skills and qualifications needed to thrive as an engineering analyst, and why are they important?

To thrive as an Engineering Analyst, you need strong analytical skills, a solid foundation in engineering principles, and typically a bachelor's degree in engineering or a related field. Familiarity with data analysis tools (such as MATLAB, Python, or Excel), engineering modeling software, and sometimes certifications like Six Sigma are highly valued. Exceptional problem-solving abilities, attention to detail, and effective communication enhance performance in this role. These skills and qualifications are essential for accurately interpreting data, optimizing engineering processes, and supporting informed decision-making within technical teams.

What is an engineering analyst?

Engineering Analysts are professionals who use technical knowledge and analytical skills to assess engineering processes, systems, and data. They often work with engineers and project teams to collect and interpret data, identify inefficiencies, and recommend improvements. Their work may involve simulations, modeling, and preparing detailed reports to support engineering decisions and optimize performance. Engineering Analysts play a crucial role in ensuring projects meet quality, safety, and efficiency standards.

What is the difference between Engineering Analyst vs Mechanical Engineer?

AspectEngineering AnalystMechanical Engineer
Required CredentialsBachelor's in Engineering, certifications like Six Sigma or PMPBachelor's or Master's in Mechanical Engineering, PE license often preferred
Work EnvironmentOffice settings, data analysis, project coordinationDesign labs, manufacturing plants, testing facilities
Employer & Industry UsageConsulting firms, manufacturing, energy sectorsAutomotive, aerospace, HVAC, manufacturing

Engineering Analysts focus on data analysis, process improvement, and supporting engineering projects, often working in office environments. Mechanical Engineers are involved in designing, testing, and developing mechanical systems, working in labs or manufacturing settings. Both roles require engineering degrees but differ in daily tasks and work environments, making them distinct yet related careers in engineering industries.

How does an engineering analyst typically collaborate with other departments within an organization?

Engineering Analysts frequently work cross-functionally with teams such as design, manufacturing, and quality assurance. They are responsible for gathering and analyzing data, then sharing insights with stakeholders to drive process improvements or solve technical challenges. Regular meetings, status updates, and collaborative problem-solving sessions are common, requiring strong communication skills and an ability to translate technical data for non-technical audiences. This collaborative environment helps ensure that projects are completed efficiently and meet organizational goals.

What job categories do people searching Engineering Analyst jobs in Arizona look for?

The top searched job categories for Engineering Analyst jobs in Arizona are:

Infographic showing various Engineering Analyst job openings in Arizona as of August 2026, with employment types broken down into 91% Full Time, 5% Part Time, 3% Contract, and 1% Nights. Highlights an 86% Physical, 5% Hybrid, and 9% Remote job distribution, with an average salary of $81,394 per year, or $39.1 per hour.

Structural Engineering Professional Associate

Solvenow Inc.

Tempe, AZ • Hybrid

Full-time

Posted 23 days ago


Job description

Qualifications:

Minimum Qualifications:

  • Bachelor of Science Degree in Civil Engineering, with an emphasis in Structural Engineering
  • Professional Engineer License (PE/PEng)
  • Minimum of 4 years of experience in structural engineering
  • Experience with US building codes including IBC, ASCE 7, ACI and AISC
  • Experience with Structural Engineering analysis software, Navisworks and Bluebeam
  • Experience designing and analyzing traditional steel and concrete structures
  • Excellent written and verbal communication skills
  • Strong interpersonal skills

Working Conditions and Requirements

  • Your home location must be in the USA Southwest Region (AZ, CA, CO, HI, NM, NV, UT)
  • For this requisition, candidates must live in the Southwest region (AZ, CA, CO, HI, NM, NV, or UT). If they live within 50 miles of the Phoenix office, they
  • would be required to report 2 days per week. Otherwise, the work will be remote.
  • Employee to provide internet service as required at home to effectively meet project performance requirements

Preferred Qualifications:

  • MS degree in Civil Engineering with an emphasis in Structural Engineering or MS degree in Structural Engineering
  • Experience in semi-conductor industrial or general industrial facilities
  • Experience leading small teams

Responsibilities:

Position Summary

As a Structural Engineering Professional, you will be an integral member of the design team counted on to perform a significant portion of Structural analysis and design for our projects. You will need strong communication and interpersonal skills as you work closely with your Structural Lead, Structural Engineers, Structural Designers, and other disciplines. As part of this team, you will help develop design concepts, complete the analysis and design, and work with our Designers to get the structural requirements communicated on design documents and in the model.

It is expected that you have a solid foundation in the fundamentals of Structural Engineering, knowledge of multiple subject areas, experience with US building codes including seismic provisions, understand how Structural design integrates with and impacts other disciplines, and are building understanding of business trends and industry issues and challenges. You will be given as much responsibility as you are willing to take, and your opportunities for career growth will be limited only by your own motivation, capabilities, and attitude.

Duties and Responsibilities

  • Under general supervision, competently perform all conventional aspects of Structural Engineering analysis and design
  • Plan and conduct work requiring judgement in the independent evaluation, selection, and adaptation of engineering techniques, procedures, and criteria
  • Exercise sound engineering judgement and problem-solving skills, not hesitating to reach out to others for guidance or confirmation when questions arise
  • Possess knowledge of principles and practices of lateral analysis and design (wind and seismic), including ability to apply required provisions of the building code
  • Exhibit a high level of attention to detail and quality control
  • Committed to checking your own work, reaching out to peers and seniors for guidance when questions arise
  • Perform calculation checking of other engineers' work
  • Take responsibility for managing workload, make and keep commitments, and take full ownership of assigned work
  • Take complete ownership of your portion of the structural scope, reliably working to meet schedule, budget, and quality requirements
  • You may be given tasks with ill-defined conditions of satisfaction, in which case you will be expected to take the initiative to determine what is needed to meet the project and client needs
  • Clearly define your own scope and start to develop your ability to forecast level of effort needed to complete that scope
  • Be ready to identify scope change and escalate it to your Structural Lead
  • Recognize when help is needed, reaching out to peers and senior engineers for guidance
  • Work in a timely, accurate, and cost-effective manner with strong attention to detail
  • Developing leadership skills
  • Provide technical guidance, coaching, and/or mentorship to designers/drafters and less experienced engineers
  • Be proactive in advancing workflows, systems, and tools within the structural discipline; embrace emerging technologies