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CE 525: Foundations for Dynamic Loads
3.00 Credits
Southern Illinois University Carbondale
Dynamic loads due to natural and man-made phenomena, damage to humans and the environment, property loss, analytical models for response analysis of foundation-soil systems for steady state, seismic and impact loads, design criteria, determination of soil properties, stiffness and damping of foundation-soil systems, design of shallow and deep foundations for various types of dynamic loads, computer applications, case histories of damage. Prerequisite: CE 421 and CE 445 or consent of instructor.
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CE 525 - Foundations for Dynamic Loads
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CE 530: Adv Materials Testing
3.00 Credits
Southern Illinois University Carbondale
An introduction to advances in concrete technology; High strength concrete; Light-weight concrete; Cement and polymer composites; and Non-destructive testing. Fundamental concepts, manufacture, performance, testing, design methodology and applications. Prerequisite: CE 330 or equivalent or consent of instructor
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CE 530 - Adv Materials Testing
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CE 540: Structural Dynamics
3.00 Credits
Southern Illinois University Carbondale
Analysis of the dynamic response of multidegree-of-freedom framed structures. Structural idealizations. Matrix formulation. Lagrange's equations. Response calculation by mode-superposition and direct integration methods. Analysis for earthquakes. Prerequisite: CE 340 or consent of instructor.
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CE 540 - Structural Dynamics
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CE 542: Nonlinear Struct Analysis
3.00 Credits
Southern Illinois University Carbondale
Analysis of the nonlinear response of framed structures subjected to static and dynamic loads. Structural idealizations. Response calculation by incremental and iterative techniques. Instability phenomena of snap-through and bifurcation. Post-buckling behavior. Approximate formulations. Detection of instability under dynamic loads. Prerequisite: CE 441 or CE 551 or consent of instructor.
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CE 542 - Nonlinear Struct Analysis
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CE 544: Adv Des:Reinforced Concrete
3.00 Credits
Southern Illinois University Carbondale
Deep beams, shear friction. Slab, beam, girder systems. Monolithic joints. Retaining walls. Deflections. Length effects on columns. Two-way floor systems. Yield line theory. Torsion. Seismic design. Prerequisite: CE 444.
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CE 544 - Adv Des:Reinforced Concrete
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CE 545: Advanced Steel Design
3.00 Credits
Southern Illinois University Carbondale
Economical use of high strength steel; behavior and design bolted and welded building connections, plate girders and composite steel-concrete beams; brittle fracture and fatigue; and low-rise and industrial-type buildings. Prerequisite: CE 442.
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CE 545 - Advanced Steel Design
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CE 551: Finite Element Analysis
3.00 Credits
Southern Illinois University Carbondale
(Same as Mechanical Engineering 565) Finite element analysis as a stress analysis or structural analysis tool. Derivation of element stiffness matrices by various means. Application to trusses, plane stress/strain and 3-D problems. Dynamic and material nonlinearity problems. Prerequisite: Civil Engineering 350 and Mathematics 305.
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CE 551 - Finite Element Analysis
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CE 552: Theory of Elasticity
3.00 Credits
Southern Illinois University Carbondale
Stress and strain equations of elasticity; equilibrium equations; compatibility equations; stress functions; applications of elasticity in solving engineering problems in two and three dimensions. Prerequisite: CE 350 and Mathematics 305.
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CE 552 - Theory of Elasticity
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CE 553: Theory of Plasticity
3.00 Credits
Southern Illinois University Carbondale
(Same as Mechanical Engineering 513) Criteria for onset of yielding, isotropic and kinematic strain hardening; flow rules for plastic strains; elastic plastic bending and torsion, slip line field theory; plane stress problems; limit analysis. Prerequisite: CE 350 and Mathematics 305 or consent of instructor.
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CE 553 - Theory of Plasticity
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CE 554: Experimental Mechanics
3.00 Credits
Southern Illinois University Carbondale
An introduction of various experimental techniques that are commonly used to determine properties such as deformation, straining, surface contour, etc. The topics to be covered include the principles of strain gage technology, theory of photoelasticity, piezoelectric accelerometer, laser based interferometry, image processing and analysis, and reverse mechanics. The specific areas of practical application for each type of experimentation will be discussed. Prerequisite: CE 350.
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CE 554 - Experimental Mechanics
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