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Analytical Method Development Jobs in Michigan (NOW HIRING)

... methodologies and test plans for: * Engine Dyno * Vehicle Testing * HIL (Hardware-in-the-Loop) * SIL (Software-in-the-Loop) * MIL (Model-in-the-Loop) * Virtual Development Environments Data Analysis ...

New

Quality Engineer

Auburn Hills, MI · On-site

$68K - $88K/yr

... analyze system requirements, and define project scope, requirements, and deliverables involving ... test method development, including fixture design, instrumentation, data acquisition, etc.

Identify and analyze system requirements, and define project scope, requirements, and deliverables ... test method development, including fixture design, instrumentation, data acquisition, etc.

... analytical techniques with strong understanding of method development, validation, and troubleshooting for LC-MS/MS methods * Ability to present scientific data clearly to diverse audiences and build ...

Key Responsibilities Lead identification of warranty-related issues through part analysis and ... test method development, including: Fixture design Instrumentation Data acquisition Validation ...

Showing results 41-60

Analytical Method Development information

What is an analytical method development?

An Analytical Method Development job involves designing, optimizing, and validating methods for analyzing pharmaceutical, chemical, or biological samples. Professionals in this role ensure accurate, reliable, and reproducible results by developing techniques like chromatography, spectroscopy, or titration. They collaborate with research, quality control, and regulatory teams to comply with industry standards and guidelines. This role is critical in drug development, manufacturing, and ensuring product quality and safety.

What does an analytical method development do?

A typical day involves designing, executing, and optimizing analytical experiments to develop new testing methods or improve existing ones, often using advanced laboratory instruments. You may also analyze data, document results, troubleshoot instrument or methodological issues, and collaborate with scientists, quality assurance, and production teams. Regular tasks include preparing reports for regulatory submissions, participating in team meetings to discuss progress and challenges, and maintaining rigorous documentation standards. The role balances independent technical work with teamwork and cross-departmental communication to ensure methods meet performance, accuracy, and compliance standards.

What are the key skills and qualifications needed to thrive in analytical method development?

To excel in Analytical Method Development, a strong background in chemistry, analytical techniques, and statistical analysis is typically required, often supported by a relevant science degree. Familiarity with laboratory instrumentation such as HPLC, GC, MS, and validation protocols, as well as experience with software like Empower or ChemStation, is highly valued. Attention to detail, problem-solving, and effective communication are crucial soft skills for this role. These competencies are vital to ensure robust method development, regulatory compliance, and effective teamwork in a laboratory setting.

What are the most commonly searched types of Analytical Method Development jobs in Michigan?

The most popular types of Analytical Method Development jobs in Michigan are:

Infographic showing various Analytical Method Development job openings in Michigan as of August 2026, with employment types broken down into 1% As Needed, 76% Full Time, 21% Part Time, and 2% Contract. Highlights an 86% Physical, 3% Hybrid, and 11% Remote job distribution.

3D CFD Engineer- Engine Combustion (Converge, Ansa, Star-CCM+)

Auburn Hills, MI • On-site

Detroit Engineered Products
Motor Vehicle Manufacturing • 51 - 200 employees

Other

Re-posted 20 days ago


Job description

Job Description:
Position Overview:
The Senior Simulation Engineer will provide technical guidance to design teams and serve as an integral member of the propulsion development organization. This role is responsible for utilizing commercial and internal simulation tools to analyze propulsion components and systems, ensuring all functional objectives are met.
Key Responsibilities:
  • Analyze combustion system designs and concepts to achieve functional requirements through advanced simulation.
  • Build and exercise analytical models for internal combustion engines using commercial 3D CFD software tools such as Converge.
  • Provide component-level and system-level design recommendations to Design Responsible Engineers based on interpretation of analysis results.
  • Retrieve and modify CAD models of propulsion system components to support CFD model development.
  • Enhance current standard analysis practices and tools to improve prediction fidelity and execution speed, collaborating with method development teams.
  • Participate in product design and development teams, regularly presenting analysis results to engineering peers, Chief Engineers, and propulsion system management.
  • Document analysis objectives, results, conclusions, and assumptions using a standard report template.
  • Work cooperatively with test engineers to enhance laboratory procedures, supporting the development of first-time capable analysis techniques and reduction of physical testing.
  • Stay abreast of emerging technologies and competitive product developments.

Basic Qualifications:
  • Master of Science degree in Mechanical Engineering, Chemical Engineering, Aerospace/Aeronautical Engineering, or Applied Physics.
  • Minimum 5 years of experience in CFD simulations on propulsion systems, with a focus on combustion system development.
  • Proficiency with engineering analysis tools for propulsion systems modeling and simulation (e.g., Converge, Ansa, Star-CCM+).
  • Excellent verbal and written communication skills.
  • Demonstrated technical problem-solving ability.

Preferred Qualifications:
  • Ph.D. in Mechanical Engineering, Chemical Engineering, Aerospace/Aeronautical Engineering, or Applied Physics.
  • Strong overall knowledge of propulsion system technologies and corresponding energy transformation systems.
  • Specialized experience in combustion system and combustion system simulations.
  • Proficiency in programming with commercial software (e.g., MATLAB Simulink, Visual Basic, Visual C++).
  • Demonstrated record of applied knowledge leading to design or process improvements.