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Acoustics Jobs in Michigan (NOW HIRING)

Advanced NVH Senior Engineer

Auburn Hills, MI · On-site

$98K - $135K/yr

Execute NVH linear simulations using FE models for structural evaluation (modal analysis, mobility, mount vibrations) and acoustic assessments (radiated noise, transmission loss). * Execute NVH non ...

Build and repair metal-framed walls, acoustical ceilings, and roofing systems * Perform flood cutting, salvage operations, and labeling of materials using approved methods * Identify insulation types ...

Intermediate Carpenter (ID #522)

Grand Rapids, MI · On-site

$21 - $28.25/hr

Build and repair metal-framed walls, acoustical ceilings, and roofing systems * Perform flood cutting, salvage operations, and labeling of materials using approved methods * Identify insulation types ...

Build and repair metal-framed walls, acoustical ceilings, and roofing systems * Perform flood cutting, salvage operations, and labeling of materials using approved methods * Identify insulation types ...

Experienced in the NVH characterization and fault detection in rotating machinery using microphones, accelerometers, torque transducers, acoustic cameras, particle velocity probes, etc * Ability to ...

Audiologist

Lansing, MI · On-site +1

$74K - $116K/yr

Responsible for the proper maintenance and calibration of the specialized electro-acoustic instrumentation. The incumbent must have considerable knowledge of the technical aspects of both the ...

Experienced in the NVH characterization and fault detection in rotating machinery using microphones, accelerometers, torque transducers, acoustic cameras, particle velocity probes, etc * Ability to ...

Advanced NVH Senior Engineer

Auburn Hills, MI · On-site

$98K - $135K/yr

Execute NVH linear simulations using FE models for structural evaluation (modal analysis, mobility, mount vibrations) and acoustic assessments (radiated noise, transmission loss). * Execute NVH non ...

Experienced in the NVH characterization and fault detection in rotating machinery using microphones, accelerometers, torque transducers, acoustic cameras, particle velocity probes, etc * Ability to ...

Learn how to deploy acoustic imaging devices and apply them to underwater surveys; * Maintain, organize, and inventory diving equipment, boats, trailers, and vehicles; * Operate boats and trailers;

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Acoustics information

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How much do acoustics jobs pay per hour?

As of Aug 20, 2026, the average hourly pay for acoustics in Michigan is $30.59, according to ZipRecruiter salary data. Most workers in this role earn between $22.64 and $37.31 per hour, depending on experience, location, and employer.

What is an acoustics job?

An acoustics job involves studying, designing, and improving sound in various environments. Professionals in this field work on noise control, sound quality, and vibration analysis for industries like architecture, engineering, entertainment, and healthcare. They may develop quieter machinery, optimize concert hall acoustics, or reduce noise pollution in urban areas. Acousticians use advanced modeling, measurements, and simulation techniques to solve sound-related challenges.

What are the daily responsibilities of an acoustics professional?

Professionals in Acoustics often spend their days conducting site surveys, analyzing sound data, and using specialized software to model acoustic environments. They may also collaborate with architects, engineers, and construction teams to recommend solutions for noise control or optimal acoustical design. Report writing, presenting findings to clients, and ensuring compliance with noise regulations are also frequent tasks. This variety ensures ongoing learning and offers the opportunity to contribute directly to the quality and functionality of diverse environments, from concert halls to industrial facilities.

What skills and qualifications are needed to thrive in acoustics?

To excel in the field of Acoustics, a solid background in physics, mathematics, and engineering, often supported by a relevant degree, is essential. Familiarity with acoustic modeling software, sound measurement equipment, and standards like ISO or ASTM is typically required. Strong analytical thinking, communication, and problem-solving skills help acoustics professionals collaborate effectively and present complex findings clearly. Mastery of these skills ensures precise sound analysis and successful project outcomes across industries such as construction, audio engineering, and environmental consulting.

Are acoustics engineers in demand?

Acoustics engineers are in demand in industries such as construction, automotive, aerospace, and entertainment, where sound quality and noise control are important. Employment opportunities are expected to grow as technology advances and environmental regulations become more stringent, requiring specialized skills in sound analysis and design. A bachelor's degree in acoustics, engineering, or a related field, along with proficiency in simulation tools, can enhance job prospects.

What are the career options in acoustics?

Careers in acoustics include roles such as acoustic engineer, sound designer, audio technician, and research scientist. These positions often require knowledge of sound measurement, signal processing, and specialized tools like MATLAB or CAD software, and may involve working in industries like entertainment, aerospace, or environmental consulting.

What are popular job titles related to Acoustics jobs in Michigan?

For Acoustics jobs in Michigan, the most frequently searched job titles are:

What job categories do people searching Acoustics jobs in Michigan look for?

The top searched job categories for Acoustics jobs in Michigan are:

Infographic showing various Acoustics job openings in Michigan as of August 2026, with employment types broken down into 70% Full Time, 26% Part Time, 2% Temporary, and 2% Contract. Highlights an 90% Physical, 5% Hybrid, and 5% Remote job distribution, with an average salary of $63,632 per year, or $30.6 per hour.

Advanced NVH Senior Engineer

Stellantis

Auburn Hills, MI • On-site

$98K - $135K/yr

Full-time

Re-posted 6 days ago


Stellantis rating

7.5

Company rating: 7.5 out of 10

Based on 131 frontline employees who took The Breakroom Quiz

15th of 45 rated automakers


Job description

The Advanced NVH Engineer will focus on simulation activities to support product development and research in the NVH (Noise, Vibration and Harshness) domain for hybrid and electrified propulsion systems and subsystems, including Internal Combustion Engines, Transmissions, and Electric Drive Modules (EDM). The engineer will be responsible for developing and validating models, running simulations, performing post-processing, and effectively communicating results to internal customers. Requests will be received from product owners, and the engineer will provide analytical results using existing tools and methodologies or develop new ones when necessary. This position reports to the Virtual Analysis Lead of the discipline. Strong technical expertise, interpersonal skills, and team leadership capabilities are essential.
The responsibility of the Advanced NVH Engineer will include, but not limited to:
  • Develop and validate FE (Finite Element) and MBD (Multi-Body Dynamics) models for propulsion system components, sub-systems, and systems. Activities include data gathering, pre-processing, execution, post-processing, and reporting.
  • Execute NVH linear simulations using FE models for structural evaluation (modal analysis, mobility, mount vibrations) and acoustic assessments (radiated noise, transmission loss).
  • Execute NVH non-linear simulations using MBD tools (AVL Excite), modeling all moving components-e.g., crankshaft, pistons, rods for ICE; axles, shafts, gear wheels for EDM-along with non moving structural parts such as housings and brackets, including assembly loads when applicable.
  • Post-process results and perform critical analyses involving torsional and bending resonances, mounts mobility and vibration, bearing loads, ODS (Operating Deflection Shapes), NTPA (Numerical Transfer Path Analysis), and MPF (Modal Participation Factor).
  • Conduct detailed studies including root-cause analysis, identification of enablers, and validation of solutions to meet NVH targets.
  • Perform correlation activities aimed at demonstrating the reliability and confidence level of virtual analyses.
  • Run DoE and optimization analyses to ensure the best trade off between NVH performance and other key metrics (e.g., weight).
  • Coordinate CAE validation plans for propulsion system programs, including analysis scopes, target alignment with stakeholders, on-time status reporting, and proactive identification of enablers when targets are not achieved.
  • Prepare technical reports and communicate findings clearly, including key takeaways, executive summaries, root-cause analyses, and risk mitigation plans when needed.
  • Interact directly with STLA stakeholders for steering activities: input data collection and validation, results review, and communication.
  • Support training and mentoring of new engineers.

Basic Qualifications:
  • Bachelor's degree in Engineering, accredited by ABET or equivalent.
  • Minimum of 5 years of experience and demonstrated capability in CAE (preferably in NVH).
  • Proven knowledge of FE solvers (Nastran,Abaqus, OptiStruct), pre-processing (ANSA), acoustic (ACTRAN), and multibody (AVL Excite) tools.
  • General knowledge of CAD and packaging tools such as NX and Teamcenter.
  • Strong proficiency in Microsoft Office tools.

Preferred Qualifications:
  • Master of Science in Engineering (Mechanical, Electrical, Aerospace, Industrial, Computer Engineering, Applied Physics, or related fields).
  • In-depth knowledge of propulsion system design, with a focus on ICE, conventional/electrified transmissions, EDMs, and engine systems.
  • Proven knowledge of propulsion systems NVH phenomena: structure- vs and air-borne noise, ICE vs EDM noise characteristics, mitigation strategies at component and system level.
  • Experience translating vehicle-level requirements into propulsion system use cases and acceptance criteria.
  • DFSS certification.

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