10 computer-aided-design positions at Oak Ridge National Laboratory in mechanical-engineering
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Benefits, Generous Vacation and Holidays, Parental Leave, Legal Insurance with Identity Theft Protection, Employee Assistance Plan, Flexible Spending Accounts, Health Savings Accounts, Wellness Programs
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teams all needed details for documentation. Write engineering specifications and review submissions from outside firms for technical quality and impact. Prepare studies and cost estimates to help plan
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, Life Insurance, Disability Benefits, Generous Vacation and Holidays, Parental Leave, Legal Insurance with Identity Theft Protection, Employee Assistance Plan, Flexible Spending Accounts, Health Savings
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Duties/Responsibilities: Conceptualize, design, develop and improve plasma-based enrichment technology related components using 3D Computer Aided Design (CAD) software (SolidWorks). Create 2D drawings
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Identity Theft Protection, Employee Assistance Plan, Flexible Spending Accounts, Health Savings Accounts, Wellness Programs, Educational Assistance, Relocation Assistance, and Employee Discounts. If you have
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, additive manufacturing, robotics, testing, or applied research projects. Experience using computer-aided design tools to develop mechanical models, assemblies, drawings, or design documentation; SolidWorks
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. SOLIDWORKS Computer Aided Design (CAD) experience. This position is a full-time staff position. Special Requirements: Work involves various physical requirements and working conditions. As such, a pre-hire
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enrichment technology related components using 3D Computer Aided Design (CAD) software (SolidWorks). Create 2D drawings to be used for fabrication and communicate with staff and suppliers through
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Insurance, Disability Benefits, Generous Vacation and Holidays, Parental Leave, Legal Insurance with Identity Theft Protection, Employee Assistance Plan, Flexible Spending Accounts, Health Savings Accounts
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develop appropriate models and computational strategies to assess HFIR Isotope Production target design. Contribute to the design of radioisotope production targets to optimize coolant flow and thermal