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Entry Level Energy Systems Engineering Jobs in Florida

The Engineering Team is seeking a motivated Domain Engineer with the ability to integrate ... energy systems, wastewater treatment, desalination, and process operations across chemical ...

Experience with the Duke Energy system and performing distribution design is a plus. * Experience ... EIT/Passed Engineering Fundamentals Exam. * Excellent customer service skills are preferred. Work ...

Experience with the Duke Energy system and performing distribution design is a plus. * Experience ... EIT/Passed Engineering Fundamentals Exam. * Excellent customer service skills are preferred. Job ...

Showing results 41-60

Entry Level Energy Systems Engineering information

What does an entry level energy systems engineer do?

Entry level energy systems engineers assist in the design, analysis, and optimization of energy systems such as renewable power plants, energy storage solutions, and grid infrastructure. They often work under the supervision of senior engineers to conduct research, perform simulations, and support project development. Their responsibilities may also include data collection, system modeling, and helping ensure projects comply with environmental and safety standards.

What are the key skills and qualifications needed to thrive as an entry level energy systems engineer?

To thrive as an Entry Level Energy Systems Engineer, you need a solid background in engineering principles, energy systems, and mathematics, typically supported by a bachelor's degree in mechanical, electrical, or energy engineering. Familiarity with simulation software (like MATLAB or HOMER), energy modeling tools, and proficiency in CAD systems are commonly required. Strong problem-solving skills, teamwork, and effective communication help you collaborate and present technical information clearly. These skills and qualities are essential for designing efficient energy solutions and supporting sustainable projects in a multidisciplinary environment.

What are some typical projects an entry level energy systems engineer might work on, and how do they contribute to larger team goals?

As an entry-level energy systems engineer, you might work on projects such as conducting energy audits, assisting with the design and modeling of renewable energy systems, or analyzing building energy consumption data. These tasks usually involve collaborating closely with senior engineers, project managers, and sometimes clients to ensure solutions are both efficient and sustainable. Your contributions help the team optimize energy use, reduce costs, and implement innovative technologies, providing a solid foundation for your professional growth and understanding of the industry.

What is the difference between Entry Level Energy Systems Engineering vs Entry Level Electrical Engineering?

AspectEntry Level Energy Systems EngineeringEntry Level Electrical Engineering
Required CredentialsBachelor's in Energy Systems, Mechanical, or Electrical EngineeringBachelor's in Electrical Engineering or related field
Work EnvironmentRenewable energy sites, power plants, consulting firmsUtilities, manufacturing, technology companies
Industry UsageFocus on energy efficiency, renewable integration, grid systemsPower systems, electronics, circuit design

Entry Level Energy Systems Engineering roles typically focus on renewable energy, energy efficiency, and grid integration, requiring knowledge of energy systems and sustainability. Entry Level Electrical Engineering roles are broader, covering electronics, power systems, and circuit design. Both roles often require similar degrees but differ in industry focus and daily tasks.

What are the most commonly searched types of Energy Systems Engineering jobs in Florida?

The most popular types of Energy Systems Engineering jobs in Florida are:

What cities in Florida are hiring for Entry Level Energy Systems Engineering jobs?

Cities in Florida with the most Entry Level Energy Systems Engineering job openings:

Infographic showing various Entry Level Energy Systems Engineering job openings in Florida as of July 2026, with employment types broken down into 5% Internship, 79% Full Time, 11% Part Time, and 5% Contract. Highlights an 90% In-person, 5% Hybrid, and 5% Remote job distribution.

Domain Engineer

Elutions

Tampa, FL • On-site

Full-time

Re-posted 17 days ago


Job description

Job Description
ELUTIONS is a global provider of Operational Business Intelligence and AI-driven solutions that optimize a broad range of operational performance and business practices-including, but not limited to, resource efficiency and energy consumption, production, asset health and performance, and commercial and logistics operations-across asset-intensive industries, such as chemical, LNG, refining, manufacturing, and logistics sectors. With over 30 years of experience evolving from industrial automation and controls into advanced AI analytics, Elutions enables organizations to convert operational data into actionable insights that drive measurable business outcomes.
At Elutions, engineers work closely with real operational systems and data, gaining hands-on experience in applying analytics to complex, asset-intensive environments. Team members are encouraged to continuously develop their technical and domain expertise while contributing to solutions that deliver measurable operational and business impact.
The Engineering Team is seeking a motivated Domain Engineer with the ability to integrate optimization strategies into real-world applications through commissioning data analytics and implementation.
This position is primarily in-person with intermittent travel. Both entry- and mid-level applicants are encouraged to apply, as on-the-job training and mentorship are provided to support professional growth and technical development.
** Entry Level Candidates are Encouraged to Apply!!!**
General Responsibilities:
  • Conduct research, data analytics, and prepare technical and performance reports.
  • Develop an understanding of industrial process systems and operations, including (but not limited to) fluid mechanics, pumping systems, energy systems, wastewater treatment, desalination, and process operations across chemical, petroleum, LNG, and refinery sites.
  • Analyze large operational datasets and apply data analytics and data-mining concepts to identify patterns, anomalies, and optimization opportunities.
  • Read and understand asset performance curves and equipment specifications.
  • Learn and implement technical hardware/software solutions for monitoring, analytics, and optimization.
  • Apply data pattern recognition techniques and energy optimization methodologies to support operational improvement initiatives.
  • Visualize data findings through dashboards including UI/UX design
  • Provide second-tier customer support for deployed analytics and optimization solutions.
  • Support customer engagement activities, including training sessions, software demonstrations, technical presentations, and any additional support.
  • Have effective interpersonal skills, organization/prioritization and administrative skills
  • Field travel as needed to perform site surveys, equipment installation/commissioning, and field support activities.

Requirements:
  • Master's degree or Bachelor's degree in either Mechanical Engineering, Chemical Engineering, Petroleum Engineering, Electrical Engineering, or Industrial Engineering disciplines. Other high-level science or mathematics-based degrees will also be considered.
  • Proficiency in Microsoft Excel for data analysis (formulas, pivot tables, charts).
  • Working knowledge of Python or a similar scripting language for data analysis.
  • Basic understanding of data analytics and statistics, including trend analysis and anomaly detection.
  • Ability to interpret process diagrams and technical documentation (PFDs, P&IDs, equipment data).
  • Exposure to industrial or operational data systems (e.g., historians, DCS/SCADA) is preferred.

Motivational Fit:
The successful candidate will have the following attributes:
  • Strong written and verbal communication skills, particularly when collaborating with distributed or cross-functional teams.
  • Ability to plan, organize, and prioritize work effectively across multiple tasks and timelines.
  • Analytical and creative problem-solving skills, with a willingness to investigate complex technical challenges.
  • Proactive mindset with the ability to take initiative and follow through on assignments.
  • Flexibility and adaptability when working in dynamic technical and operational environments.
  • Collaborative, team-oriented approach with a strong sense of accountability.
  • High level of motivation and interest in continuous learning and professional development.