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Performs a variety of financial activities, including accounting, financial analysis, audit, tax, credit and collections | Develops and evaluates financial plans and policies | Establishes and maintains accounting, financial, and reporting policies and controls
Provides technical support to the quality and quality engineering (QE) functions | Conducts quality control (QC) inspections on products, materials, components, parts, etc., at various stages of the production process to ensure compliance with established quality and reliability standards | Captures and analyzes statistical data from processes to either confirm compliance with established standards or identify deviations from standards | Recommends new or enhanced methods, procedures and standards
Metal Part Machining focuses on operating computer or mechanically controlled machines to produce and repair metal parts for manufacturing. Analyzes engineering specifications or blueprints to define the dimensions and features of the metal part to be produced. Determines the optimal tool path for fabricating the part by selecting appropriate machine tools (e.g., lathes, drill presses, milling machines, grinders, boring machines, etc.) and specifying the sequence of tool operations. Manually sets up/adjusts machine tools. Recommends revisions in design and/or substitutions in material based on machinability or fabrication problems
Provides financial management and support for program lifecycle. Ensures fiscal accountability by monitoring budget forecasting, reporting, and compliance. Focuses on financial analysis and cost control to drive program health and business decisions.
Automation engineer with robotics experience. Develops, designs, builds and tests robotic platforms from prototype through product commercialization. Creates an integrated autonomous interface, mobility, communication, and human-robot interaction. Works with cross-functional teams to understand opportunities for robotic applications.
Plans, monitors and manages internal programs from initiation through completion | Leads or coordinates programs, resourcing, staffing, progress reporting, troubleshooting and indirect people management | Monitors performance and recommends schedule changes, cost adjustments or resource additions | Responsibilities are within the Project Management Function as a generalist or in a combination of Disciplines
Designs, develops, implements and oversees the organization's environmental, health and safety programs and procedures to safeguard employees and surrounding communities and to ensure that all facilities are in compliance with regulations | Responsibilities are within the Environmental Health and Safety Function as a generalist or in a combination of Disciplines
Follows policies, procedures, and methods to evaluate and improve the quality of products, materials, components and/or operations | Follows and/ or develops, assures and maintains the quality of products and processes through standard procedures & systems (e.g., ISO 9001:2000, ISO 14000 & AS9100 standards), quality audits/ review process, etc. Responsibilities are within the Quality Assurance Methods Function as a generalist or in a combination of Disciplines
Metal Part Machining focuses on operating computer or mechanically controlled machines to produce and repair metal parts for manufacturing. Analyzes engineering specifications or blueprints to define the dimensions and features of the metal part to be produced. Determines the optimal tool path for fabricating the part by selecting appropriate machine tools (e.g., lathes, drill presses, milling machines, grinders, boring machines, etc.) and specifying the sequence of tool operations. Manually sets up/adjusts machine tools. Recommends revisions in design and/or substitutions in material based on machinability or fabrication problems
Metal Part Machining focuses on operating computer or mechanically controlled machines to produce and repair metal parts for manufacturing. Analyzes engineering specifications or blueprints to define the dimensions and features of the metal part to be produced. Determines the optimal tool path for fabricating the part by selecting appropriate machine tools (e.g., lathes, drill presses, milling machines, grinders, boring machines, etc.) and specifying the sequence of tool operations. Manually sets up/adjusts machine tools. Recommends revisions in design and/or substitutions in material based on machinability or fabrication problems