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CE 625: Public Transportation Operations and Technology
3.00 Credits
New Jersey Institute of Technology
Prerequisite: graduate standing in a cross-listed department or instructor approval. Presentation of the technological and engineering aspects of public transportation systems. Historical development of public transportation technologies. Vehicle and right-of-way characteristics, capacity and operating strategies. Public transportation system performance. Advanced public transportation systems. Same as Tran 625.
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CE 626: Sediment Transport
3.00 Credits
New Jersey Institute of Technology
Prerequisites: CE 341or CE 501; CE 620 or consent of the instructor. Unified treatment of sediment transport over a wide range of conditions; basic theory and application to engineering problems. Sediment transport problems associated with the analysis and design aspects of hydraulic and environmental structures, including channel stability, scouring, dredging, reservoir sedimentation, and wastewater solids are presented.
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CE 626 - Sediment Transport
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CE 631: Advanced Reinforced Concrete Design
3.00 Credits
New Jersey Institute of Technology
Prerequisite: an undergraduate course in theory and design of reinforced concrete. A review of basic concepts of elastic and ultimate strength theories and a study of the present design codes. Topics include: design of concrete building frames, two-way slabs, flat slabs, deep beams, and other structural elements using the above two theories.
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CE 631 - Advanced Reinforced Concrete Design
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CE 632: Prestressed Concrete Design
3.00 Credits
New Jersey Institute of Technology
Prerequisite: undergraduate course in theory and design of reinforced concrete. Analysis and design of pre-tensioned and post-tensioned prestressed concrete elements for both determinate and indeterminate structures will be studied. Examples of prestressed elements used in buildings and bridges will be discussed, as well as the source and magnitude of prestress losses.
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CE 634: Structural Dynamics
3.00 Credits
New Jersey Institute of Technology
Prerequisite: undergraduate course in structural analysis. Dynamic analysis of beams, frames, and other types of structures. Practical methods developed are applied to problems such as the analysis of the effects of earthquakes on buildings and moving loads on bridges.
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CE 634 - Structural Dynamics
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CE 635: Fracture Mechanics of Engineering Materials
3.00 Credits
New Jersey Institute of Technology
Prerequisites: graduate standing in civil and/or mechanical engineering and basic knowledge of structures and mechanics of materials. Basic principles of fracture mechanics to increase understanding of cracking and fracture behavior of materials and structures. Emphasis on practical applications of fracture mechanics.
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CE 635 - Fracture Mechanics of Engineering Materials
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CE 636: Stability of Structures
3.00 Credits
New Jersey Institute of Technology
Prerequisite: undergraduate course in theory of structural analysis. Topics include structural design concept; stability criteria; elastic and inelastic buckling; column buckling; lateral buckling of beams; stability of frames; stability of plates and shell; local buckling and post-buckling.
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CE 636 - Stability of Structures
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CE 637: Short Span Bridge Design
3.00 Credits
New Jersey Institute of Technology
Prerequisite: undergraduate courses in steel design and concrete design, and some knowledge of prestressed concrete fundamentals. Design and performance of highway and railroad bridges, particularly steel and prestressed concrete structures since they are most common in the northeast; and computer applications including bridge geometry, abutment design and composite beam design.
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CE 638: Nondestructive Testing Methods in Civil Engineering
3.00 Credits
New Jersey Institute of Technology
Familiarizes the civil engineering student with nondestructive testing (NDT) techniques currently employed for evaluation and condition monitoring of civil structures and construction materials. Major emphasis in the application of NDT methodologies to steel, concrete, and timber as the construction material. Covers theories, principles, and testing methodologies associated with individual technologies from specific material point of view. Discusses advantages and limitations pertaining to the application of individual NDT technologies to construction materials.
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CE 638 - Nondestructive Testing Methods in Civil Engineering
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CE 639: Applied Finite Element Methods
3.00 Credits
New Jersey Institute of Technology
Prerequisites: CE 332 and CIS 101. Introduction to application of finite element method to problems of structural analysis and design. Review of matrix algebra and the stiffness method of structural analysis. Applications include trusses, frames, plates, shells, and problems of plane stress/strain. Application of finite element method to design.
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CE 639 - Applied Finite Element Methods
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