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Articles 1411 - 1440 of 3074
Full-Text Articles in Engineering
Size Evaluation Of Corrosion Precursor Pitting Using Near-Field Millimeter Wave Nondestructive Testing Methods, Mohammad Tayeb Ahmad Ghasr, Brian D. Carroll, Sergey Kharkovsky, R. Zoughi, R. Austin
Size Evaluation Of Corrosion Precursor Pitting Using Near-Field Millimeter Wave Nondestructive Testing Methods, Mohammad Tayeb Ahmad Ghasr, Brian D. Carroll, Sergey Kharkovsky, R. Zoughi, R. Austin
Electrical and Computer Engineering Faculty Research & Creative Works
Early detection of corrosion precursor pitting and estimation of its overall dimensions directly affects the required effort and cost associated with repair and maintenance of critical aircraft structural components. The magnitude and phase of a reflected signal from a pitting are directly related to its dimensions. This paper presents a millimeter wave probe and a sizing procedure used to detect and evaluate overall pitting dimensions.
Biomechanical Measures Of Neuromuscular Control And Valgus Loading Of The Knee Predict Anterior Cruciate Ligament Injury Risk In Female Athletes, Timothy E. Hewett, Gregory D. Myer, Kevin R. Ford, Robert S. Heidt Jr., Angelo J. Colosimo, Scott G. Mclean, Antonie J. Van Den Bogert, Mark V. Paterno, Paul Succop
Biomechanical Measures Of Neuromuscular Control And Valgus Loading Of The Knee Predict Anterior Cruciate Ligament Injury Risk In Female Athletes, Timothy E. Hewett, Gregory D. Myer, Kevin R. Ford, Robert S. Heidt Jr., Angelo J. Colosimo, Scott G. Mclean, Antonie J. Van Den Bogert, Mark V. Paterno, Paul Succop
Mechanical Engineering Faculty Publications
Background: Female athletes participating in high-risk sports suffer anterior cruciate ligament injury at a 4- to 6-fold greater rate than do male athletes.
Hypothesis: Prescreened female athletes with subsequent anterior cruciate ligament injury will demonstrate decreased neuromuscular control and increased valgus joint loading, predicting anterior cruciate ligament injury risk.
Study Design: Cohort study; Level of evidence, 2.
Methods: There were 205 female athletes in the high-risk sports of soccer, basketball, and volleyball prospectively measured for neuromuscular control using 3-dimensional kinematics (joint angles) and joint loads using kinetics (joint moments) during a jump-landing task. Analysis of variance as well as linear …
Damage Assessment Of Aerospace Structural Components By Impedance Based Health Monitoring, Andrew L. Gyekenyesi, Richard E. Martin, Jerzy T. Sawicki, George Y. Baaklini
Damage Assessment Of Aerospace Structural Components By Impedance Based Health Monitoring, Andrew L. Gyekenyesi, Richard E. Martin, Jerzy T. Sawicki, George Y. Baaklini
Mechanical Engineering Faculty Publications
This paper addresses recent efforts at the NASA Glenn Research Center at Lewis Field relating to the set-up and assessment of electro-mechanical (E/M) impedance based structural health monitoring. The overall aim is the application of the impedance based technique to aeronautic and space based structural components. As initial steps, a laboratory was created, software written, and experiments conducted on aluminum plates in undamaged and damaged states. A simulated crack, in the form of a narrow notch at various locations, was analyzed using piezoelectric-ceramic (PZT: lead, zirconate, titarate) patches as impedance measuring transducers. Descriptions of the impedance quantifying hardware and software …
Damage Assessment Of Aerospace Structural Components By Impedance Based Health Monitoring, Andrew L. Gyekenyesi, Richard Martin, Jerzy T. Sawicki, George Y. Baaklini
Damage Assessment Of Aerospace Structural Components By Impedance Based Health Monitoring, Andrew L. Gyekenyesi, Richard Martin, Jerzy T. Sawicki, George Y. Baaklini
Mechanical Engineering Faculty Publications
This paper addresses recent efforts at the NASA Glenn Research Center at Lewis Field relating to the set-up and assessment of electro-mechanical (E/M) impedance based structural health monitoring. The overall aim is the application of the impedance based technique to aeronautic and space based structural components. As initial steps, a laboratory was created, software written, and experiments conducted on aluminum plates in undamaged and damaged states. A simulated crack, in the form of a narrow notch at various locations, was analyzed using piezoelectric-ceramic (PZT: lead, zirconate, titarate) patches as impedance measuring transducers. Descriptions of the impedance quantifying hardware and software …
Cs 206: Computer Software Productivity Tools, Greg Coffey
Cs 206: Computer Software Productivity Tools, Greg Coffey
Computer Science & Engineering Syllabi
This course introduces advanced computer applications using MS Word, MS Excel, MS Access, and MS PowerPoint.
Cs 207: Advanced Office Productivity Ii, Louis A. Benavides
Cs 207: Advanced Office Productivity Ii, Louis A. Benavides
Computer Science & Engineering Syllabi
This course covers post-advanced microcomputer applications including Microsoft Office Word 2003, Microsoft Office Excel 2003, Microsoft Office Access 2003, and Microsoft Office PowerPoint 2003. Topics include: creating an online form; working with macros and Visual Basic for Applications (VBA); working with a master document, an index and a table of contents; linking an Excel worksheet and charting its data in Word; formula auditing, data validation, and complex problem solving in Excel; importing data into Excel; working with PivotCharts, PivotTables, and trendlines in Excel; creating a PivotTable List; advanced Access report and form techniques, and creating multi-page forms; administering a database …
Ceg 255-01: Introduction To The Design Of Information Technology Systems, Eric Maston
Ceg 255-01: Introduction To The Design Of Information Technology Systems, Eric Maston
Computer Science & Engineering Syllabi
Information systems consist of modern elements such as database systems, networks, multi-platform distributed computing, web infrastructure and multimedia computing. In this course we will address these areas individually and also where they intersect to gain a basic understanding of how information technology can be used to solve real problems.
Cs 141: Computer Programming - I, Ronald F. Taylor
Cs 141: Computer Programming - I, Ronald F. Taylor
Computer Science & Engineering Syllabi
This course provides a general introduction to the fundamentals of computer programming. Examples from and applications to a broad range of problems are given. No prior knowledge of programming is assumed. The concepts covered will be applied to the Java programming language. Students must register for both lecture and one laboratory section. 4 credit hours. Prerequisite: MTH 127 (College Algebra) or equivalent.
Cs 241: Computer Science Ii, L. Jane Lin
Cs 241: Computer Science Ii, L. Jane Lin
Computer Science & Engineering Syllabi
This course is the second in the three course sequence "Introduction to Computer Science" offered by the Computer Science department, WSU. It focuses on tools for building abstract data types (using structure and class concepts in C++)
and Object-Oriented Programming. We also begin the study of data structures in this course. For All CS 241 students, concurrent registration into CS 241 lab is a must.
Cs 466/666: Introduction To Formal Languages, Thomas Sudkamp
Cs 466/666: Introduction To Formal Languages, Thomas Sudkamp
Computer Science & Engineering Syllabi
CS 466/666 is an introduction to formal language and automata theory. In this course we will examine methods for defining syntax of languages and recognizing patterns: the syntax of languages can be defined using grammars and patterns accepted by finite state machines. Along with presenting the fundamentals of these two topics, the course will develop and investigate the relationships between language definition and pattern recognition. The text will be the third edition of Languages and Machines: An Introduction to the Theory of Computer Science.
Cs 480/680: Comparative Programming Languages, Michael L. Raymer
Cs 480/680: Comparative Programming Languages, Michael L. Raymer
Computer Science & Engineering Syllabi
No abstract provided.
Cs 801: Advanced Database Systems, Soon M. Chung
Cs 801: Advanced Database Systems, Soon M. Chung
Computer Science & Engineering Syllabi
Introduction of current trends and research issues in database systems.
Cs 241-02: Introduction To Computer Science Ii, Praveen Kakumanu
Cs 241-02: Introduction To Computer Science Ii, Praveen Kakumanu
Computer Science & Engineering Syllabi
This course is the second in the three course sequence "Introduction to Computer Science" offered by the Computer Science department, WSU. It focuses on tools for building abstract data types {using structure and class concepts in C++) and Object-Oriented Programming. We also begin the study of data structures in this course. Note: For all CS 241 students, concurrent registration into CS 241 lab is a must
Cs 240-02: Introduction To Computer Science, Eric Maston
Cs 240-02: Introduction To Computer Science, Eric Maston
Computer Science & Engineering Syllabi
We will develop basic techniques to design, develop and implement programs using the C++ language. This course focuses on basic elements of programming and assumes no knowledge of programming in C++.
Cs 340: Programming Language Workshop In Java, Krishnaprasad Thirunarayan
Cs 340: Programming Language Workshop In Java, Krishnaprasad Thirunarayan
Computer Science & Engineering Syllabi
This course is designed as a self-study in Java. You are expected to learn the Java language and solve a set of programming problems assigned to you using it. (You may develop your code using any IDE you like, but you must ensure that it eventually runs using JDK 5). There are no exams. We officially meet only once in a quarter. However, I will be available in the posted office hours for clarifications and discussions about the programming problems.
Cs/Mth 316/516: Numerical Methods For Digital Computers - I, Ronald F. Taylor
Cs/Mth 316/516: Numerical Methods For Digital Computers - I, Ronald F. Taylor
Computer Science & Engineering Syllabi
Introduction to numerical methods used in the sciences. Methods of interpolation, data smoothing, functional approximation, numerical differentiation and integration. Solution techniques for linear and nonlinear equations. Discussion of sources of error in numerical methods. Applications of interest to engineering, science, and applied mathematics students are an integral part of the course. Special topics presented as schedule permits. 4 credit hours. Prerequisites: CS 142 or EGR 153 or CEG 220 or CS 241, MTH 231, MTH 253 or 255.
Bio/Cs 271: Introduction To Bioinformatics, Dan E. Krane, Travis E. Doom
Bio/Cs 271: Introduction To Bioinformatics, Dan E. Krane, Travis E. Doom
Computer Science & Engineering Syllabi
BIO/CS 271 Introduction to Bioinformatics: Introduction to DNA as an information storage system, data searches and pairwise alignments, substitution patterns, protein folding, and proteomics. Prerequisite: CS 240 or equivalent, BIO 112
Cs 884: Advanced Topics In Programming Languages, Krishnaprasad Thirunarayan
Cs 884: Advanced Topics In Programming Languages, Krishnaprasad Thirunarayan
Computer Science & Engineering Syllabi
The primary focus of this course is the design and specification of the Object-Oriented language Java.
Cs 405/605-01: Introduction To Database Management Systems, Guozhu Dong
Cs 405/605-01: Introduction To Database Management Systems, Guozhu Dong
Computer Science & Engineering Syllabi
Survey of logical and physical aspects of database management systems. Data models including entity-relationship (ER) and relational are presented. Physical implementation (data organization and indexing) methods are discussed. Query languages including SQL, relational algebra, relational calculus, and QBE are introduced. Students will also gain experience in creating and manipulating a database. The course is mostly concerned with the design and querying of databases. A follow up course, CS701, is concerned with the design of system functions for managing databases.
Cs 790-02: Information Security, Guozhu Dong
Cs 790-02: Information Security, Guozhu Dong
Computer Science & Engineering Syllabi
This course is a survey of fundamentals of information security. Topics include: confidentiality, integrity, availability; authentication models; protection models; audit; intrusion and masquerader detection; control policies; access control; release control; information flow; legal and social issues, privacy; risk assessment and vulnerabilities; encryption; digital watermarking; insider risks; computer forensics; additional topics of interest.
Cs 776: Functional Programming, Krishnaprasad Thirunarayan
Cs 776: Functional Programming, Krishnaprasad Thirunarayan
Computer Science & Engineering Syllabi
This course will discuss important concepts of functional programming such as recursive definitions, higher-order functions, type inference, polymorphism, abstract data types, modules etc. The programming exercises will illustrate the utility of list-processing, pattern matching, abstraction of data/control, strong typing, and parameterized modules (functors). We also study the mathematical reasoning involved in the design of functional programs and techniques for proving properties about functions so defined.
Cs 840: Advanced Topics In The Theory Of Computation, Thomas Sudkamp
Cs 840: Advanced Topics In The Theory Of Computation, Thomas Sudkamp
Computer Science & Engineering Syllabi
No abstract provided.
Ceg 498-01: Design Experience, Thomas C. Hartrum
Ceg 498-01: Design Experience, Thomas C. Hartrum
Computer Science & Engineering Syllabi
CEG 498 (Design Experience) is a summative computer engineering design project course that builds upon previous engineering, science, mathematics and communications course work. CEG 498 projects are a minimum of two quarters in length and must be completed in groups of at least three students. Projects are selected under the guidance of the course instructor and are tailored to both student interest and formal classroom preparation. Students are evaluated both on their individual contributions as recorded in a graded engineering journals and on the quality of their collective efforts as reflected in group generated products.
Ceg 210-02: Pc Networking I, Chris P. Fickert
Ceg 210-02: Pc Networking I, Chris P. Fickert
Computer Science & Engineering Syllabi
The objective of the course is to provide an introduction to PC networking hardware, concepts, and technologies with a focus on hardware configuration and LAN administration using in-class, hands-on exercises with Novell NetWare.
Ceg 220-01: Introduction To C Programming For Engineers - I, Ronald F. Taylor
Ceg 220-01: Introduction To C Programming For Engineers - I, Ronald F. Taylor
Computer Science & Engineering Syllabi
This course provides a general introduction to computers as a problem-solving tool using the C programming language. Emphasis is on algorithms and techniques useful to engineers. Topics include data representation, debugging, and program verification. Some programming assignments may involve complex arithmetic and trigonometric and exponential functions. 4 credit hours. Prerequisite: MTH 229 (Calculus I) or EGR 101 (Engineering Mathematics).
Ceg 320/520-01: Computer Organization And Assembly Language Programming, Michael L. Raymer
Ceg 320/520-01: Computer Organization And Assembly Language Programming, Michael L. Raymer
Computer Science & Engineering Syllabi
No abstract provided.
Ceg 435/635-01: Distributed Computing And Systems, Thomas C. Hartrum
Ceg 435/635-01: Distributed Computing And Systems, Thomas C. Hartrum
Computer Science & Engineering Syllabi
Study of distributed computing principles and systems. Issues such as distributed architecture, process coordination, client-server computing, deadlock, network and distributed operating systems, network and distributed file systems, concurrency control and recovery of distributed transactions, and fault-tolerant computing, and real-time distributed systems are studied. Design and implementation projects related to some of these issues are also assigned.
Ceg 476/676-01: Computer Graphics I, Arthur A. Goshtasby
Ceg 476/676-01: Computer Graphics I, Arthur A. Goshtasby
Computer Science & Engineering Syllabi
The objective of this course is to learn the fundamentals of model representation, algorithms that generate realistic 2-D and 3-D models, and practice some of the concepts through program implementation.
Ceg 702-01: Advanced Computer Communications, Bin Wang
Ceg 702-01: Advanced Computer Communications, Bin Wang
Computer Science & Engineering Syllabi
This is a graduate level course on advanced computer communication and networking technologies. The course involves both a reading/lecture/discussion component and a project component. We will read papers on various aspects of advanced computer networking: LAN/WAN technologies, congestion/flow control, self-similar traffic analysis, queuing theory, link scheduling, routing, internetworking, multicast, wireless technologies, quality of services, and peer-to-peer
networks. Various technical and research issues involved will be studied in depth.
Ceg 724-01: Computer Vision I, Maite Trujillo
Ceg 724-01: Computer Vision I, Maite Trujillo
Computer Science & Engineering Syllabi
This course covers basic techniques for low-level and some mid-level vision processes. The techniques include: linear filtering, edge detection, image segmentation and classification, stereo vision, motion, texture analysis and image matching.