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Flight Dynamics Jobs in Texas (NOW HIRING)

Flight Test Engineer (R5006)

Dallas, TX ยท On-site

$115K - $215K/yr

Strong understanding of aircraft systems, flight dynamics, avionics, telemetry, sensors, or control systems * Proven ability to write and execute structured test plans, procedures, and reports

Flight Test Engineer (R5006)

Dallas, TX ยท On-site

$115K - $215K/yr

Strong understanding of aircraft systems, flight dynamics, avionics, telemetry, sensors, or control systems * Proven ability to write and execute structured test plans, procedures, and reports

Showing results 21-40

Flight Dynamics information

See Texas salary details

$13

$26

$44

How much do flight dynamics jobs pay per hour?

As of Aug 12, 2026, the average hourly pay for flight dynamics in Texas is $26.37, according to ZipRecruiter salary data. Most workers in this role earn between $22.60 and $26.88 per hour, depending on experience, location, and employer.

What is the difference between Flight Dynamics vs Flight Test Engineer?

AspectFlight DynamicsFlight Test Engineer
Required CredentialsDegree in aerospace engineering, physics, or related field; knowledge of flight mechanicsDegree in aerospace engineering, mechanical engineering, or related; experience with flight testing
Work EnvironmentResearch labs, simulation centers, aircraft design teamsOn aircraft during testing, ground support, data analysis
Industry UsageAircraft design, simulation, stability analysisConducting and analyzing flight tests for aircraft certification

Flight Dynamics focuses on analyzing and modeling aircraft behavior and stability, often through simulations and theoretical work. Flight Test Engineers are hands-on professionals who plan, execute, and analyze actual flight tests to validate aircraft performance. While both roles require aerospace knowledge, Flight Dynamics emphasizes modeling and analysis, whereas Flight Test Engineers focus on practical testing and data collection during flights.

What are some common challenges faced by professionals working in flight dynamics, and how can they be addressed?

Professionals in Flight Dynamics often encounter challenges such as managing the complexities of trajectory optimization, ensuring precise attitude control, and adapting to evolving mission requirements. These issues require strong analytical skills, close collaboration with multidisciplinary teams (such as guidance, navigation, and control engineers), and the use of advanced simulation tools to validate models. Staying current with industry software and continuously refining problem-solving approaches can help address these challenges effectively. Regular communication with other engineering teams also ensures alignment and fosters innovative solutions.

How to become a flight dynamics engineer?

To become a flight dynamics engineer, typically a bachelor's degree in aerospace engineering, aeronautics, or a related field is required, often supplemented by a master's degree for advanced roles. Strong skills in mathematics, physics, and control systems are essential, along with experience using simulation tools and programming languages like MATLAB or Python. Gaining practical experience through internships or cooperative education programs can also improve job prospects.

What are the key skills and qualifications needed to thrive in flight dynamics, and why are they important?

To thrive in Flight Dynamics, you need a strong background in aerospace engineering, physics, or applied mathematics, often supported by a relevant degree. Familiarity with simulation software (such as MATLAB, Simulink, or STK), flight control systems, and modeling tools is typically required. Analytical thinking, attention to detail, and effective communication set professionals apart in this field. These skills ensure accurate analysis, safe flight operations, and clear collaboration with multidisciplinary teams in complex aerospace projects.

What is flight dynamics?

Flight dynamics refers to the study of the forces and motions that affect the path of an aircraft or spacecraft as it moves through the air or space. It involves understanding how factors like lift, drag, weight, and thrust interact to influence an object's position, orientation, and stability during flight. Professionals in this field analyze and predict how vehicles respond to control inputs and environmental conditions to ensure safe and efficient flight. Flight dynamics is crucial in designing flight control systems and planning flight paths.
Infographic showing various Flight Dynamics job openings in Texas as of August 2026, with employment types broken down into 95% Full Time, 4% Part Time, and 1% Contract. Highlights an 98% Physical, 1% Hybrid, and 1% Remote job distribution, with an average salary of $54,848 per year, or $26.4 per hour.

Flight Control Design/Development Engineer

INFOSYS NOVA HOLDINGS LLC

Fort Worth, TX โ€ข On-site

Full-time

Posted 16 days ago


Job description

"We are unable to sponsor or take over sponsorship of an employment visa at this time."

Job Title : Technical Expert, Engineering, Flight Control Laws Design, Development

Job Location : Any of below location

• Montreal or Toronto (Canada) or

• Wichita (USA) or

• Hartford (USA) or

• Dallas (USA) or

• Opa Locka (Florida, USA) or

• Tucson (USA)

What are your contributions to the team?

• Develop and improve both new and existing CLaws design as well the corresponding assessment tools using Matlab and C++ programming

• Support CLaws, autopilot, and navigation design development for R&D projects

• Develop CLaws and systems requirements

• Perform CLaws requirements validation and verification (V&V) for any Claws updates and/or new Claws designs

• Verify and deliver the CLaws in accordance with the DO-178B standard and SAE ARP 4754

• Design and develop pilot in the loop CLaws based on handling quality requirements, flight and structural envelope protection requirements, performance requirements, test pilot assessments and aircraft level requirements

• Evaluate CLaws and FBW system failures, system stability and performance with analytical methods, desktop simulations, pilot in the loop simulator tests and flight test data

• Support integration of CLAWS into various test rigs and supplier hardware (i.e. integrate into PFCC for Collins, Thales, NRC, CMC, etc)

How to thrive in this role?

• You hold a bachelor’s or master’s degree in Aerospace Engineering, PhD degree is preferred in Aerospace Engineering

• You must have a minimum of 10 years of pertinent experience in the development of Flight Control Laws for FBW (Fly-By-Wire) aircraft

• You must be versed in aircraft flight dynamics with an in depth understanding of aerodynamics

• You must be versed in "classical" and “modern” control systems design techniques for SISO and MIMO systems and be familiar with advanced control laws techniques and methods

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• You must have good understanding of control law evaluation techniques, linear and non-linear and testing procedures

• You must have a good understanding of aircraft stability, handling qualities, and control with a pilot-in-the-loop

• You should have a good understanding of DO-178B standards, system requirements verification and validation methods and certification of complex software

• You must be proficient in using Matlab and Simulink as a simulation, aircraft/system modeling and control law development tool

• You should possess a good understanding of state estimation or Kalman filtering

• You should be proficient in programming Matlab scripts and C++ programming

• You must be fluent in written and spoken French and English

• You must be a team player with an innovative spirit, motivated and be able to work independently

Please note: You don’t need all the skills, knowledge, and experience listed to apply for this position. We’re not looking for the perfect candidate, we’re looking for great talent and passionate individuals.


Kaleidoscope, an Infosys Company, is an equal opportunity employer, and all qualified applicants will receive consideration without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, protected veteran status, spouse of protected veteran, or disability.