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Work From Home Structural Dynamics Engineer Jobs in California

WORK FROM HOME

Sacramento, CA · On-site +1

$300 - $500/wk

We are looking for individuals interested in working from home, remotely, as life insurance sales representatives. We are hiring coachable individuals comfortable with a 100% commission based income ...

WORK FROM HOME

San Francisco, CA · On-site +1

$300 - $500/wk

We are looking for individuals interested in working from home, remotely, as life insurance sales representatives. We are hiring coachable individuals comfortable with a 100% commission based income ...

WORK FROM HOME

San Jose, CA · On-site +1

$300 - $500/wk

We are looking for individuals interested in working from home, remotely, as life insurance sales representatives. We are hiring coachable individuals comfortable with a 100% commission based income ...

WORK FROM HOME

Oakland, CA · On-site +1

$300 - $500/wk

We are looking for individuals interested in working from home, remotely, as life insurance sales representatives. We are hiring coachable individuals comfortable with a 100% commission based income ...

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Work From Home Structural Dynamics Engineer information

See California salary details

$49.3K

$98.1K

$150K

How much do work from home structural dynamics engineer jobs pay per year?

As of Jul 29, 2026, the average yearly pay for work from home structural dynamics engineer in California is $98,098.00, according to ZipRecruiter salary data. Most workers in this role earn between $79,000.00 and $111,500.00 per year, depending on experience, location, and employer.

What does a Work From Home Structural Dynamics Engineer do?

A Work From Home Structural Dynamics Engineer analyzes how physical structures respond to forces such as vibration, stress, and motion, all while working remotely. They use specialized software to simulate and assess the dynamic behavior of structures like buildings, bridges, aircraft, or machinery. Their responsibilities include designing, modeling, and testing structures to ensure safety, reliability, and compliance with engineering standards. Working from home, they collaborate with engineering teams, prepare reports, and communicate findings using digital tools.

What are the key skills and qualifications needed to thrive as a Work From Home Structural Dynamics Engineer, and why are they important?

To thrive as a Work From Home Structural Dynamics Engineer, you need a solid background in structural engineering principles, dynamics, and vibration analysis, usually supported by a degree in civil, mechanical, or aerospace engineering. Familiarity with finite element analysis (FEA) software like ANSYS or NASTRAN, and proficiency in programming languages such as MATLAB or Python, are typically required, along with relevant certifications (e.g., Professional Engineer license). Strong analytical thinking, problem-solving abilities, and effective remote communication skills help you stand out in this role. These competencies are crucial for delivering accurate analyses, collaborating with distributed teams, and ensuring the safety and reliability of engineering projects from a remote environment.

What is the difference between Work From Home Structural Dynamics Engineer vs Structural Engineer?

AspectWork From Home Structural Dynamics EngineerStructural Engineer
CredentialsBachelor's or Master's in Civil/Structural Engineering, PE license preferredBachelor's or Master's in Civil/Structural Engineering, PE license often required
Work EnvironmentRemote, primarily computer-based analysis and designOn-site or office-based, site visits and inspections often involved
Industry UsageDesigning and analyzing structures remotely, consultingDesign, construction, and inspection of physical structures
Common Search IntentRemote structural analysis jobs, work from home structural engineeringTraditional structural engineering roles, onsite jobs

The main difference is that a Work From Home Structural Dynamics Engineer focuses on remote analysis and design of structures, often using specialized software, while a Structural Engineer typically works onsite or in an office on physical construction projects and site inspections. Both roles require similar credentials but differ mainly in work environment and daily tasks.

How does a Work From Home Structural Dynamics Engineer effectively collaborate with onsite teams and manage project communication?

As a Work From Home Structural Dynamics Engineer, you will often rely on digital collaboration tools such as video conferencing, shared modeling software, and cloud-based document management to interact with onsite teams. Regular virtual meetings and detailed progress updates are key to staying aligned with project goals and addressing any engineering challenges promptly. Clear documentation and proactive communication help bridge the gap between remote and onsite staff, ensuring that design iterations and analysis results are accurately shared and integrated into the broader project. Building strong relationships with colleagues through consistent, professional interaction is essential to succeeding in this remote role.
What are popular job titles related to Work From Home Structural Dynamics Engineer jobs in California? For Work From Home Structural Dynamics Engineer jobs in California, the most frequently searched job titles are:
What job categories do people searching Work From Home Structural Dynamics Engineer jobs in California look for? The top searched job categories for Work From Home Structural Dynamics Engineer jobs in California are:
What cities in California are hiring for Work From Home Structural Dynamics Engineer jobs? Cities in California with the most Work From Home Structural Dynamics Engineer job openings:
Computational Aeroelasticity Developer

Computational Aeroelasticity Developer

Cadence Design Systems Inc.

Irvine, CA • On-site, Remote

Full-time

Medical, Dental, Vision, Retirement, PTO

Posted 4 days ago


Cadence Design Systems rating

9.0

Company rating: 9.0 out of 10

Based on 5 frontline employees who took The Breakroom Quiz

33rd of 246 rated software companies


Job description

At Cadence, we hire and develop leaders and innovators who want to make an impact on the world of technology.

Computational Aeroelasticity Software Developer (Early Career)

Position Overview

Cadence Design Systems is seeking a highly motivated Computational Aeroelasticity Software Developer to contribute to the development of next-generation aeroelastic and aerothermoelastic simulation technologies spanning subsonic through hypersonic flight applications. This role is ideal for a recent Ph.D. graduate, postdoctoral researcher, or early-career engineer with research experience in computational aeroelasticity, multidisciplinary simulation, scientific computing, or related fields.

The successful candidate will work with senior MSC Nastran developers to develop, validate, and commercialize advanced simulation methods used by aerospace, defense, and space organizations worldwide.

Key Responsibilities

Computational Aeroelasticity & Aerothermoelasticity Development

Contribute to the development, verification, validation, and deployment of advanced aeroelastic simulation capabilities, including:

Low-Fidelity Methods

  • Panel methods, Doublet Lattice Method (DLM), and Vortex Lattice Method (VLM)
  • Generalized aerodynamic force generation
  • Linearized and frequency-domain aerodynamic modeling

Medium-Fidelity Methods

  • Hybrid CFD-panel methodologies
  • Reduced-order and surrogate modeling
  • Transonic correction techniques
  • Time-domain aeroelastic formulations
  • Flexible vehicle dynamic simulation methods

High-Fidelity Methods

  • CFD-based aeroelasticity using Euler and Navier-Stokes solvers
  • Fluid-structure interaction (FSI) and CFD-CSD coupling
  • Nonlinear aeroelasticity and aerothermoelasticity
  • High-speed and hypersonic aeroelastic analysis

Support the development of solutions for:

  • Static and dynamic aeroelasticity
  • Flutter prediction
  • Divergence and control reversal
  • Gust response and aeroservoelasticity
  • Buffet response and limit-cycle oscillations
  • Nonlinear aeroelastic behavior

Work with senior technical staff to transition advanced research concepts into production-quality commercial software.

Hypersonic & High-Speed Flight Simulation

Contribute to the development of simulation technologies for high-speed and hypersonic vehicle applications, including:

  • Hypersonic aerodynamics and aerothermodynamics
  • Shock-wave/boundary-layer interactions
  • Thermal-structural coupling and aerothermoelasticity
  • High-temperature flight environments
  • Flight stability and control at high Mach numbers

Participate in the implementation and validation of numerical methods such as:

  • Piston theory
  • Supersonic and hypersonic aerodynamic methods
  • Shock-expansion techniques
  • Reduced-order models
  • CFD-based aeroelastic methodologies

Prior research experience in one or more of these areas is highly desirable.

Multidisciplinary Simulation & Structural Dynamics

Collaborate with structural dynamics, CFD, and multiphysics development teams to build integrated simulation workflows.

Contribute to:

  • Modal analysis and structural dynamics
  • Dynamic response analysis
  • Eigenvalue extraction methods
  • Coupled aerodynamic-structural simulations
  • Thermal stress and buckling analyses
  • Large-scale finite element modeling

Support applications involving:

  • Commercial and military aircraft
  • Rotorcraft and UAVs
  • Hypersonic vehicles
  • Space and launch systems
  • Advanced aerospace and defense platforms

Scientific Software Development

Develop robust and scalable commercial software capabilities, including:

  • Numerical algorithms and solver development
  • Scientific software architecture
  • APIs and workflow automation
  • Multiphysics integration frameworks
  • Verification and validation methodologies
  • Automated testing and continuous integration practices

Participate in the full software development lifecycle from research prototype to commercial product deployment.

High-Performance Computing

Contribute to the development and optimization of scalable simulation technologies using:

  • Parallel computing concepts
  • MPI, OpenMP, GPU, or accelerator technologies
  • Cloud and distributed computing environments

Optimize algorithms for large-scale engineering simulations and advanced aerospace workflows. Prior experience is beneficial but not required.

Customer & Industry Engagement

Work with technical experts, product teams, and customers to:

  • Understand aerospace simulation requirements
  • Support technical demonstrations

Required Qualifications

Education

  • Ph.D. with outstanding research experience in Aerospace Engineering, Mechanical Engineering, Applied Mechanics, Computational Engineering, or a related field.
  • Research specialization in computational aeroelasticity, aerodynamics, CFD, structural dynamics, or multidisciplinary simulation.

Experience

  • 0-5 years of industrial experience, or equivalent graduate/postdoctoral research experience.
  • Demonstrated research experience in aeroelasticity spanning low to high speed flight regimes.
  • Experience developing research software, computational tools, or numerical simulation capabilities.
  • Ability to translate research concepts into practical engineering solutions.
  • Record of technical publications, research projects, or thesis work in relevant areas.

Technical Skills

Aerodynamics

  • Knowledge of potential flow methods, panel methods, DLM, or VLM
  • Understanding of subsonic, transonic, supersonic, or hypersonic aerodynamics
  • Familiarity with CFD fundamentals and numerical methods

Aeroelasticity

  • Coursework or research in flutter, dynamic aeroelasticity, gust response, or aeroservoelasticity
  • Familiarity with aeroelastic modeling and reduced-order methods
  • Exposure to aerothermoelasticity or high-speed aeroelasticity is a plus

Structural Dynamics & FEA

  • Modal analysis and structural dynamics fundamentals
  • Finite element methods and numerical analysis
  • Dynamic response and eigenvalue analysis

Software Development

  • Programming experience in C++ and Python.
  • Experience developing scientific or engineering software
  • Knowledge of software engineering best practices

High-Performance Computing

  • Familiarity with parallel computing concepts
  • Exposure to MPI, OpenMP, CUDA, GPU computing is desirable

Professional Skills

  • Strong analytical and problem-solving abilities
  • Passion for computational engineering and simulation technology
  • Ability to learn new technical domains quickly
  • Excellent written and verbal communication skills
  • Ability to work effectively in multidisciplinary teams
  • Customer-focused mindset with strong collaboration skills

Preferred Qualifications

  • Ph.D. research focused on computational aeroelasticity, aerothermoelasticity, CFD, structural dynamics, or hypersonics
  • Publications in recognized aerospace journals or conferences
  • Experience with commercial or research simulation tools such as MSC Nastran, Abaqus, ZAERO, FUN3D, SU2, SCFLOW, Fidelity, Charles, Fluent, STAR-CCM+, CFD++, or equivalent
  • Experience with multidisciplinary design optimization (MDO)
  • Experienced in leveraging AI for development
  • Reduced-order modeling techniques
  • Experience with HPC environments and large-scale simulations
  • Participation in collaborative research programs with aerospace organizations, government laboratories, or universities

The annual salary range for California is $98,000 to $182,000. You may also be eligible to receive incentive compensation: bonus, equity, and benefits. Sales positions generally offer a competitive On Target Earnings (OTE) incentive compensation structure. Please note that the salary range is a guideline and compensation may vary based on factors such as qualifications, skill level, competencies and work location. Our benefits programs include: paid vacation and paid holidays, 401(k) plan with employer match, employee stock purchase plan, a variety of medical, dental and vision plan options, and more.

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