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CE 724: Probabilistic Methods Of Structural Engineering
3.00 Credits
North Carolina State University
Application of probability theory and stochastic processes to study safety of structures. Fundamentals of probability theory and stochastic processes; probabilistic modelings of structural loadings, material properties and risk. Reliability analysisof structures; reliability-based design criteria. Random vibration of simple structures; safety analysis of structures under dynamic loads.
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CE 724 - Probabilistic Methods Of Structural Engineering
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CE 725: Earthquake Structural Engineering
3.00 Credits
North Carolina State University
Effects of earthquakes on structures and of design of structures to resist earthquake motions; earthquake mechanisms and ground motions; response of structures to earthquake motions; behavior of materials, structural elements and assemblages subjected to earthquakes; principles of earthquake-resistant design practice; soil-structure interaction; and special topics.
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CE 725 - Earthquake Structural Engineering
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CE 726: Advanced Theory Of Concrete Structures
3.00 Credits
North Carolina State University
Inelastic theory of structural concrete members under flexure, axial load, combined flexure and axial compression, shear and torsion. Yield line theory of slabs. Limit analysis of beams and frames of reinforced and prestressed concrete.
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CE 726 - Advanced Theory Of Concrete Structures
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CE 737: Computer-Aided Engineering Systems
3.00 Credits
North Carolina State University
Design and implementation issues for building real-world computer-aided engineering systems. Engineering data modeling; data definition, query and manipulation methodologies; application program interfaces; problem-oriented languages and software supervisors; and knowledge-based systems to support engineering design and decision making.
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CE 737 - Computer-Aided Engineering Systems
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CE 741: Geomechanics of Stress Deformation
3.00 Credits
North Carolina State University
Concepts of volume change and effective stress, stress-strain behavior of clays and sands, stress path and failure conidtions; mechanistic interaction between solids and water, problems in elasticity and plasticity pertaining to stress distribution, elstic, consolidation and secondary settlements, and tolerance limits to deformation levels.
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CE 741 - Geomechanics of Stress Deformation
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CE 742: Deformation and Instability of Soils
3.00 Credits
North Carolina State University
Deformation and failure of soils. Limit equilibrium analyses for: slope stability, lateral earth pressure, bearing capacity of shallow foundations. Constitutive models for soils. Linear elasticity and theory of plasticity. Critical state model for soil behavior. Limit analysis.
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CE 742 - Deformation and Instability of Soils
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CE 744: Foundation Engineering
3.00 Credits
North Carolina State University
Subsoil investigations; excavations; design of sheeting and bracing systems; control of water; footing, grillage and pile foundations; caisson and cofferdam methods of construction.
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CE 744 - Foundation Engineering
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CE 746: Soil Dynamics and Earthquake Engineering
3.00 Credits
North Carolina State University
Dynamics of discrete and continuous systems with application to soil dynamics: dynamic soil properties, analysis of foundation vibration, construction-induced vibration, dynamic soil-structure interaction. Geotechnical earthquake engineering: ground motion characteristics, dynamic response of soil sites, effect of local site conditions on design ground motion, liquefaction of soils.
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CE 746 - Soil Dynamics and Earthquake Engineering
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CE 747: Geosynthetics in Geotechnical Engineering
3.00 Credits
North Carolina State University
Introduction to use, manufacturing techniques, design and construction of geosynthetics in geotechnical engineering applications; design and analysis of geotextiles, geonets, geogrids and geomembranes in pavements base and subbase reinforcement, reinforced walls, slopes, moisture barriers, dams and hazardous impoundment, landfill liners and covers.
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CE 747 - Geosynthetics in Geotechnical Engineering
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CE 751: Theory Of Concrete Mixtures
3.00 Credits
North Carolina State University
In-depth study of theory of portland cement concrete mixtures including types and properties of portland special cements; chemical reactions; brief examination of history of mixture design; detailed study of current design methods; properties of fresh and hardened concretes; strength-age-curing relationships; durability; admixtures; special concretes; production and quality control.
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CE 751 - Theory Of Concrete Mixtures
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