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CEE 6050: Experimental Methods in Structural Engineering
3.00 Credits
Utah State University
Experimental techniques used in research and design in structural engineering and mechanics. Structural models. Theory and practical applications. Development of principles used to design research projects. Prerequisite/Restriction: Instructor permission.
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CEE 6050 - Experimental Methods in Structural Engineering
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CEE 6070: Mechanics of Composite Materials II
3.00 Credits
Utah State University
Second course in composite materials. Stress-strain states of laminated composite structures, including interlaminar stresses, failure criteria, and hygrothermal stresses. Prerequisite/Restriction: MAE 5060 Cross-listed as: MAE 6070
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CEE 6070 - Mechanics of Composite Materials II
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CEE 6080: Numerical Methods in Elasticity
3.00 Credits
Utah State University
Elasticity theory, stress and strain analysis, and yield criteria. Governing equilibrium, kinematic, and compatibility equations. Generalized Hooke's law. Classical solutions of flex and torsion problems. Energy methods. Introduction to finite difference, finite element, and boundary element methods. Computer applications. Prerequisite/Restriction: CEE 3020. Cross-listed as: CEE 5080.
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CEE 6080 - Numerical Methods in Elasticity
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CEE 6090: Theory of Plates and Shells
3.00 Credits
Utah State University
This course introduces plate and shell theories, including development of bending and buckling of plates and shells through classical theory. Prerequisite/Restriction: MAE 3040 or CEE 3020. Cross-listed as: MAE 6090.
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CEE 6090 - Theory of Plates and Shells
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CEE 6110: Hydroinformatics
3.00 Credits
Utah State University
Introduces hydroinformatics concepts and procedures including automated data collection, relational databases, data management software, metadata and semantics, data storage formats and standards, data transformations, web based data distribution, and automation of data manipulation tasks supporting hydrologic modeling and analysis. Prerequisite/Restriction: Graduate student standing or permission of instructor.
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CEE 6110 - Hydroinformatics
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CEE 6120: Bridge Engineering
3.00 Credits
Utah State University
Provides students with a basic understanding of the facets of bridge design pertinent to a structural engineer. Focuses on analysis and design of a slab and prestressed concrete girder bridge. Semester(s) Traditionally Offered: Fall
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CEE 6120 - Bridge Engineering
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CEE 6130: Structural Dynamics and Seismic Design
3.00 Credits
Utah State University
Development and solutions for equations of motion for single- and multi-degree of freedom systems. Dynamic analysis by Modal Superposition and Response Spectra. Design of structures for seismically active areas. Cross-listed as: MAE 6130.
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CEE 6130 - Structural Dynamics and Seismic Design
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CEE 6140: Advanced Reinforced Concrete
3.00 Credits
Utah State University
Develops improved understanding of the behavior of reinforced concrete members. After students understand general behavior, codes are placed in proper perspective. Then students can design in situations not explicitly considered in current codes.
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CEE 6140 - Advanced Reinforced Concrete
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CEE 6150: Prestressed Concrete Analysis and Design
3.00 Credits
Utah State University
This course introduces the analysis and design of prestressed concrete, including concepts for both pretensioning and post-tensioning: materials, types of prestresses, and prestress losses; design for flexure and shear; partial prestressing, serviceability, composite sections, slabs, indeterminate systems, and bridge design. Prerequisite/Restrictions: CEE 3080 Graduate standing
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CEE 6150 - Prestressed Concrete Analysis and Design
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CEE 6180: Dynamics and Vibrations
3.00 Credits
Utah State University
Fundamentals of two-dimensional and three-dimensional rigid body dynamics, including Newtonian, Lagrangian, and Leavit Energy Methods. Equations of motion, mode shapes, and natural frequencies for continuous media and multi degree-of-freedom systems. Prerequisite/Restriction: MAE 5300 or CEE 6130/MAE 6130. Cross-listed as: MAE 6180.
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CEE 6180 - Dynamics and Vibrations
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