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Structural Engineer Jobs in Mississippi (NOW HIRING)

STRUCTURAL STEEL FITTER

Jackson, MS ยท On-site

$17.75 - $22.50/hr

Analyze engineering drawings, blueprints, specifications, sketches, work orders, and material ... Cut, contour, and bevel metal plates and structural shapes to dimensions as specified by blueprints ...

Civil Engineer

Jackson, MS ยท On-site

$2.9K - $5.8K/mo

  • Medical

  • Retirement

  • PTO

... structural engineering, transportation engineering and community planning. You'll quickly find yourself in charge of vital Navy projects, where you might: * Oversee construction of everything from ...

Civil Engineer

Hattiesburg, MS ยท On-site

$2.9K - $5.8K/mo

  • Medical

  • Retirement

  • PTO

... structural engineering, transportation engineering and community planning. You'll quickly find yourself in charge of vital Navy projects, where you might: * Oversee construction of everything from ...

Civil Engineer

Southaven, MS ยท On-site

$2.9K - $5.8K/mo

  • Medical

  • Retirement

  • PTO

... structural engineering, transportation engineering and community planning. You'll quickly find yourself in charge of vital Navy projects, where you might: * Oversee construction of everything from ...

Civil Engineer

Gulfport, MS ยท On-site

$2.9K - $5.8K/mo

  • Medical

  • Retirement

  • PTO

... structural engineering, transportation engineering and community planning. You'll quickly find yourself in charge of vital Navy projects, where you might: * Oversee construction of everything from ...

Civil Engineer

Biloxi, MS ยท On-site

$2.9K - $5.8K/mo

  • Medical

  • Retirement

  • PTO

... structural engineering, transportation engineering and community planning. You'll quickly find yourself in charge of vital Navy projects, where you might: * Oversee construction of everything from ...

Civil Engineer

Meridian, MS ยท On-site

$2.9K - $5.8K/mo

  • Medical

  • Retirement

  • PTO

... structural engineering, transportation engineering and community planning. You'll quickly find yourself in charge of vital Navy projects, where you might: * Oversee construction of everything from ...

Civil Engineer

Tupelo, MS ยท On-site

$2.9K - $5.8K/mo

  • Medical

  • Retirement

  • PTO

... structural engineering, transportation engineering and community planning. You'll quickly find yourself in charge of vital Navy projects, where you might: * Oversee construction of everything from ...

The Project Engineer will execute and manage paint booth modification projects, including structural improvements, airflow enhancements, contractor coordination, and project delivery within scope ...

QA/QC Structural Inspector We provide specialized subcontracting and technical assistance services ... engineering, repair, and conversion products and services to the marine industry. The QA/QC ...

QA/QC Structural Inspector We provide specialized subcontracting and technical assistance services ... engineering, repair, and conversion products and services to the marine industry. The QA/QC ...

Showing results 41-60

Structural Engineer information

See Mississippi salary details

$47.4K

$94.1K

$144K

How much do structural engineer jobs pay per year?

As of Aug 20, 2026, the average yearly pay for structural engineer in Mississippi is $94,139.00, according to ZipRecruiter salary data. Most workers in this role earn between $75,800.00 and $107,000.00 per year, depending on experience, location, and employer.

What is a structural engineer?

Structural engineers are specialized professionals who design, analyze, and ensure the safety of structures such as buildings, bridges, and tunnels. They work to make sure these structures can withstand various forces, such as gravity, wind, and earthquakes, while remaining safe and functional. Structural engineers use mathematics, physics, and material science to select appropriate construction materials and methods. Their expertise is essential in the planning and construction phases, as well as in inspecting existing structures for safety and compliance.

What are some common challenges structural engineers face when working on multidisciplinary project teams?

Structural Engineers often collaborate with architects, mechanical, and electrical engineers to deliver integrated building designs. One common challenge is balancing aesthetic or functional requirements from architects with structural safety and code compliance. Effective communication and coordination are essential to resolve conflicts, manage project timelines, and ensure that structural solutions align with the broader vision of the project. Structural Engineers should be proactive in attending coordination meetings and using collaborative design tools to streamline teamwork.

What do structural engineers do?

Structural engineering is a branch of civil engineering that involves the design, construction, and repair of many different types of structures. The job of a structural engineer is to act as a consultant to architects and contractors throughout the construction project, offering expert advice on technical problems. Structural engineers are typically contracted on projects involving sports arenas, bridges, large buildings, or any other weight-bearing structure. On a day-to-day basis, a structural engineer may assist the head architect with initial layout and design of a structure, including plans for maintenance or overall remodels. They calculate loads, such as wind, snow, and earthquake forces, to determine which structural system is safest. Some structural engineers specialize in demolition and are responsible for ensuring projects are carried out safely and without damage to surrounding structures. Others specialize in oil drilling machinery, aircraft and shipbuilding vehicle design, or temporary structure builds.

What are the key skills and qualifications needed to thrive as a structural engineer, and why are they important?

To thrive as a Structural Engineer, you need a solid background in civil or structural engineering principles, a relevant engineering degree, and often a Professional Engineer (PE) license. Proficiency with structural analysis software such as SAP2000, ETABS, or AutoCAD is typically required. Strong problem-solving abilities, attention to detail, and effective communication skills help set top performers apart. These competencies ensure the safety, stability, and efficiency of building projects while facilitating collaboration with architects, contractors, and clients.

What is the difference between Structural Engineer vs Civil Engineer?

AspectStructural EngineerCivil Engineer
CredentialsTypically requires a bachelor's degree in structural or civil engineering, PE licenseRequires a bachelor's degree in civil engineering, PE license
Work EnvironmentFocuses on designing and analyzing building structures, often in office and construction sitesWorks on infrastructure projects like roads, bridges, and water systems, in offices and field sites
Industry UsageSpecialized within construction, architecture, and structural design firmsBroader industry scope including transportation, environmental, and urban planning

Structural engineers primarily focus on designing and analyzing building frameworks to ensure safety and stability, while civil engineers work on a wider range of infrastructure projects. Both roles require similar credentials and often collaborate, but their core responsibilities and project types differ.

What is the work of a structural engineer?

A structural engineer designs, analyzes, and oversees the construction of buildings, bridges, and other structures to ensure they are safe, stable, and capable of withstanding environmental forces. They use engineering principles, computer-aided design (CAD) tools, and building codes to develop plans and review construction processes. Certification and knowledge of materials and load calculations are essential for this role.

What jobs do structural engineers do?

Structural engineers design, analyze, and oversee the construction of buildings, bridges, and other infrastructure to ensure safety and stability. They use engineering principles, computer-aided design (CAD) software, and knowledge of materials to create plans and solve structural problems throughout the project lifecycle.

What are the most commonly searched types of Structural Engineer jobs in Mississippi?

The most popular types of Structural Engineer jobs in Mississippi are:

What are popular job titles related to Structural Engineer jobs in Mississippi?

For Structural Engineer jobs in Mississippi, the most frequently searched job titles are:

What job categories do people searching Structural Engineer jobs in Mississippi look for?

The top searched job categories for Structural Engineer jobs in Mississippi are:

What cities in Mississippi are hiring for Structural Engineer jobs?

Cities in Mississippi with the most Structural Engineer job openings:

Infographic showing various Structural Engineer job openings in Mississippi as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $94,139 per year, or $45.3 per hour.

STRUCTURAL STEEL FITTER

Steel Service Corporation

Jackson, MS โ€ข On-site

$17.75 - $22.50/hr

Full-time

Re-posted 12 days ago


Job description

Description:

Department: Shop Operations

FLSA Status: Non-Exempt

Grade/Level:

Job Type: Regular

Work Schedule: Flexible Schedule

Job Status: Full Time

Reports To: Shop Foreman

Amount of Travel Required: None

Positions Supervised: None


POSITION SUMMARY

Responsible for fitting structural and miscellaneous steel as needed to complete a job or jobs in a quality and productive manner. Must be able to read and understand blueprints and use bevel, combination squares, operate overhead cranes. Must be able to properly handle materials (flipping and rolling). Must be able to use grinders, hand torches, magnets, bar clamps, etc. effectively and safely.


Essential Functions Statement(s)

  • Operate safety equipment and use safe work habits.
  • Weld components in flat, vertical, or overhead positions.
  • Analyze engineering drawings, blueprints, specifications, sketches, work orders, and material safety data sheets to plan layout, assembly, and welding operations.
  • Lay out, position, align, and secure parts and assemblies prior to assembly, using straightedges, combination squares, calipers, and rulers.
  • Examine workpieces for defects and measure workpieces with straightedges or templates to ensure conformance with specifications.
  • Recognize, set up, and operate hand and power tools common to the welding trade, such as shielded metal arc and gas metal arc welding equipment.
  • Weld separately or in combination, using aluminum, stainless steel, cast iron, and other alloys.
  • Clamp, hold, tack-weld, heat-bend, grind or bolt component parts to obtain required configurations and positions for welding.
  • Select and install torches, torch tips, filler rods, and flux, according to welding chart specifications or types and thicknesses of metals.
  • Ignite torches or start power supplies and strike arcs by touching electrodes to metals being welded, completing electrical circuits.
  • Connect and turn regulator valves to activate and adjust gas flow and pressure so that desired flames are obtained.
  • Determine required equipment and welding methods, applying knowledge of metallurgy, geometry, and welding techniques.
  • Monitor the fitting, burning, and welding processes to avoid overheating of parts or warping, shrinking, distortion, or expansion of material.
  • Operate manual or semi-automatic welding equipment to fuse metal segments, using processes such as gas tungsten arc, gas metal arc, flux-cored arc, plasma arc, shielded metal arc, resistance welding, and submerged arc welding.
  • Mark or tag material with proper job number, piece marks, and other identifying marks as required.
  • Chip or grind off excess weld, slag, or spatter, using hand scrapers or power chippers, portable grinders, or arc-cutting equipment.
  • Remove rough spots from workpieces, using portable grinders, hand files, or scrapers.
  • Prepare all material surfaces to be welded, ensuring that there is no loose or thick scale, slag, rust, moisture, grease, or other foreign matter.
  • Preheat workpieces prior to welding or bending, using torches or heating furnaces.
  • Develop templates and models for welding projects, using mathematical calculations based on blueprint information.
  • Position and secure workpieces, using hoists, cranes, wire, and banding machines or hand tools.
  • Guide and direct flames or electrodes on or across workpieces to straighten, bend, melt, or build up metal.
  • Detect faulty operation of equipment or defective materials and notify supervisors.
  • Clean or degrease parts, using wire brushes, portable grinders, or chemical baths.
  • Cut, contour, and bevel metal plates and structural shapes to dimensions as specified by blueprints, layouts, work orders, and templates, using powered saws, hand shears, or chipping knives.
  • Repair products by dismantling, straightening, reshaping, and reassembling parts, using cutting torches, straightening presses, and hand tools.
  • Fill holes and increase the size of metal parts.
  • Check grooves, angles, or gap allowances, using micrometers, calipers, and precision measuring instruments.
  • Operate metal shaping, straightening, and bending machines, such as brakes and shears.
  • Set up and use ladders and scaffolding as necessary to complete work.
  • Hammer out bulges or bends in metal workpieces.
  • Dismantle metal assemblies or cut scrap metal, using thermal-cutting equipment such as flame-cutting torches or plasma-arc equipment.
  • Signal crane operators to move large workpieces.
  • Use fire suppression methods in industrial emergencies.
  • Estimate materials needed for production and manufacturing and maintain required stocks of materials.
  • Join parts such as beams and steel reinforcing rods in buildings, bridges, and highways, bolting and riveting as necessary.
  • Gouge metals, using the air-arc gouging process.
  • Mix and apply protective coatings to products.
  • Operate brazing and soldering equipment.
  • Melt lead bars, wire, or scrap to add lead to joints or to extrude melted scrap into reusable form.
  • Perform job functions and responsibilities by working together with coworkers as a team-member to achieve a common goal.


Requirements:

POSITION QUALIFICATIONS

SKILLS & ABILITIES

Education: High School Graduate or General Education Degree (GED): Required

Experience: No prior experience necessary