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Science and Engineering Engineering Fundamentals (courses may include the following: Introduction to Materials, Statics and Dynamics, Circuit Theory, Thermodynamics, Heat Transfer, Strength of Materials
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and Engineering Engineering Fundamentals (courses may include the following: Introduction to Materials, Statics and Dynamics, Circuit Theory, Thermodynamics, Heat Transfer, Strength of Materials
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Engineering Engineering Fundamentals (courses may include the following: Introduction to Materials, Statics and Dynamics, Circuit Theory, Thermodynamics, Heat Transfer, Strength of Materials, Spatial Analysis
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Engineering Engineering Fundamentals (courses may include the following: Introduction to Materials, Statics and Dynamics, Circuit Theory, Thermodynamics, Heat Transfer, Strength of Materials, Spatial Analysis
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and Engineering Engineering Fundamentals (courses may include the following: Introduction to Materials, Statics and Dynamics, Circuit Theory, Thermodynamics, Heat Transfer, Strength of Materials
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and Engineering Engineering Fundamentals (courses may include the following: Introduction to Materials, Statics and Dynamics, Circuit Theory, Thermodynamics, Heat Transfer, Strength of Materials
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Engineering Engineering Fundamentals (courses may include the following: Introduction to Materials, Statics and Dynamics, Circuit Theory, Thermodynamics, Heat Transfer, Strength of Materials, Spatial Analysis
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Environmental Engineering Engineering Fundamentals (courses may include the following: Introduction to Materials, Statics and Dynamics, Circuit Theory, Thermodynamics, Heat Transfer, Strength of Materials
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) Qualifications Ability to commit to working at the OSU Energy Efficiency Center for two years (including summers). Completed an introductory course in thermodynamics, heat transfer, or energy and mass balances
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: Computer Aided Engineering ME 140: Vibration and Control ME 142: Mechatronics ME 144: Introduction to Multi-body Dynamics ME 212: Advanced Controls: Robustness and Optimality ME 237: Radiative Heat Transfer