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Articles 1171 - 1200 of 1814
Full-Text Articles in Computer Engineering
Cs 865: Advanced Topics In Soft Computing, Michael L. Raymer
Cs 865: Advanced Topics In Soft Computing, Michael L. Raymer
Computer Science & Engineering Syllabi
No abstract provided.
Cs 205-04, 05, 06: Introduction To Computers And Office Productivity Software, Terri Bauer
Cs 205-04, 05, 06: Introduction To Computers And Office Productivity Software, Terri Bauer
Computer Science & Engineering Syllabi
Focus on learning MS Office software applications including word processing (intermediate), spreadsheets, database and presentation graphics using a case study approach where critical thinking and problem solving skills are required. Computer concepts are integrated throughout the course to provide an understanding of the basics of computing, the latest technological advances and how they are used in industry. Ethics and issues encountered in business are discussed to challenge students on societal impact of technology.
Cs 214: Visual Basic Programming, Michael Ondrasek
Cs 214: Visual Basic Programming, Michael Ondrasek
Computer Science & Engineering Syllabi
This course provides a general introduction to the fundamentals of object computer programming. Examples from and applications to a broad range of problems are given. No prior knowledge of programming is assumed. However, students should have a familiarity with programming concepts. The concepts covered will be applied in the Visual Basic programming language. 4 credit hours.
Cs 207: Advanced Office Productivity Ii, Amanda Hood
Cs 207: Advanced Office Productivity Ii, Amanda Hood
Computer Science & Engineering Syllabi
This course covers post-advanced microcomputer applications including Microsoft Office Word 2003, Excel 2003, Access 2003, and PowerPoint 2003. Topics include: creating an online form, working with macros and Visual Basic for Applications (VBA), working with a master document, and 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 a multi-page form, administering a database system, creating a self-running presentation …
Cs 400/600: Data Structures And Software Design, Natsuhiko Futamura
Cs 400/600: Data Structures And Software Design, Natsuhiko Futamura
Computer Science & Engineering Syllabi
In this course, students will learn basic data structures and how to design and analyze and implement software. Course covers introduction to the fundamentals of complexity and analysis and study of common problems and solutions using various data structures. After taking this course, students are expected to be able to design reasonable software for problems and estimate (evaluate) the performance of them even without writing the software.
Cs 415: Social Implications Of Computing, Leo Finkelstein
Cs 415: Social Implications Of Computing, Leo Finkelstein
Computer Science & Engineering Syllabi
CS 415 is a communication skills course using as its subject matter current salient issues associated with the social implications of computing. In addition to the course text, you will need to use certain reading materials in the library and elsewhere, and you will be responsible for using concepts and theories provided in class lectures and discussions.
Cs 701: Database Systems And Design I, Guozhu Dong
Cs 701: Database Systems And Design I, Guozhu Dong
Computer Science & Engineering Syllabi
An introduction to database design, database system implementation issues and techniques, and advanced data models.
Cs 790-01: Multimedia Coding And Communication (Ii), Yong Pei
Cs 790-01: Multimedia Coding And Communication (Ii), Yong Pei
Computer Science & Engineering Syllabi
No abstract provided.
Cs 340: Programming Language Workshop In C#, Krishnaprasad Thirunarayan
Cs 340: Programming Language Workshop In C#, Krishnaprasad Thirunarayan
Computer Science & Engineering Syllabi
This course is designed as a self-study in C#. You are expected to learn the language and solve a set of programming problems assigned to you using MS Visual Studio .NET. There are no exams. We officially meet only once in the quarter. However, I will be available in the posted office hours for clarifications and discussions about the programming problems.
Cs 242: Computer Programming Iii, Mateen M. Rizki
Cs 242: Computer Programming Iii, Mateen M. Rizki
Computer Science & Engineering Syllabi
No abstract provided.
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 470/670: System Simulation, Mateen M. Rizki
Cs 470/670: System Simulation, Mateen M. Rizki
Computer Science & Engineering Syllabi
No abstract provided.
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 to engineering, science, and applied mathematics are an integral part of the course. Special topics presented as schedule permits. 4 credit hours.
Cs/Bio 271: Introduction To Bioinformatics, Dan E. Krane, Michael L. Raymer
Cs/Bio 271: Introduction To Bioinformatics, Dan E. Krane, Michael L. Raymer
Computer Science & Engineering Syllabi
No abstract provided.
Cs 714: Machine Learning, Shaojun Wang
Cs 714: Machine Learning, Shaojun Wang
Computer Science & Engineering Syllabi
This introductory course on machine learning will give an overview of many concepts, techniques, and algorithms in machine learning that are now widely applied in scientific data analysis, data mining, trainable recognition systems, adaptive resource allocators, and adaptive controllers. The emphasis will be on understanding the fundamental principles that permit effective learning in these systems, realizing their inherent limitations, and exploring the latest advanced techniques employed in machine learning.
Cs 790-03: Information Integration & Analysis, Amit P. Sheth
Cs 790-03: Information Integration & Analysis, Amit P. Sheth
Computer Science & Engineering Syllabi
This course deals with the integration and analysis of heterogeneous data-a topic of significant research as well as practical importance. A typical large organization spends around 30% of all its IT effort and expense for data/information integration. Furthermore, organizations can greatly increase their competitiveness by exploiting the data they collect, and discovering trends and patterns leading to insights. Hugh repositories of public data on the Web also provide opportunity to discovery undiscovered public knowledge.
Cs 142: Computer Programming - Ii, Eric Maston
Cs 142: Computer Programming - Ii, Eric Maston
Computer Science & Engineering Syllabi
This course provides a continuation to the general introduction of computer programming begun in CS 141. Examples from and applications to a broad range of problems are given. The concepts covered will be applied to the Java programming language. (Students must register for both lecture and laboratory sections.)
Ceg 790-01: Introduction To Scientific Visualization, Thomas Wischgoll
Ceg 790-01: Introduction To Scientific Visualization, Thomas Wischgoll
Computer Science & Engineering Syllabi
No abstract provided.
Ceg 760-01: Advanced Software Computer Engineering, Thomas C. Hartrum
Ceg 760-01: Advanced Software Computer Engineering, Thomas C. Hartrum
Computer Science & Engineering Syllabi
This course covers advanced topics in software engineering. Aspects of problem specification, design, verification, and evaluation are discussed. We will focus on design methods, including software patterns and software architecture, plus some advanced topics involving formal methods of software specification or evaluation using software metrics. Students will participate in team projects to apply the methods discussed.
Ceg 355-01: Introduction To The Design Of Information Technology Systems, Eric Maston
Ceg 355-01: 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.
Ceg 751-01: Microprocessors Ii, Jack Jean
Ceg 751-01: Microprocessors Ii, Jack Jean
Computer Science & Engineering Syllabi
No abstract provided.
Ceg 702-01: Advanced Communication Networks, Bin Wang
Ceg 702-01: Advanced Communication Networks, 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 260-01: Digital Computer Hardware/Switching Circuits, Meilin Liu
Ceg 260-01: Digital Computer Hardware/Switching Circuits, Meilin Liu
Computer Science & Engineering Syllabi
We will discuss and cover basic digital, combinational and sequential logic systems. Labs will be used to gain valuable practical experience in implementing elementary circuits and logic designs.
Ceg 220-01: Introduction To C Programming For Engineers, Robert Helt
Ceg 220-01: Introduction To C Programming For Engineers, Robert Helt
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. 4 credit hours. Prerequisite: MTR 229 (Calculus I) or EGR 101 (Engineering Mathematics).
Ceg 221-01: Advanced C Programming For Engineers, Robert Helt
Ceg 221-01: Advanced C Programming For Engineers, Robert Helt
Computer Science & Engineering Syllabi
This course introduces advanced constructs, algorithms, and data structures in the C programming language. Emphasis is on problem solving and techniques useful to engineers. Topics include functions, array, pointers, structures as well as sorting algorithms, linked lists, complex numbers, stacks, queues, hash tables, and binary trees. 4 credit hours. Prerequisite: CEG220 (Introduction to C Programming for Engineers).
Ceg 320/520-01: Computer Organization And Assembly Language Programming, Sridhar Ramachandran
Ceg 320/520-01: Computer Organization And Assembly Language Programming, Sridhar Ramachandran
Computer Science & Engineering Syllabi
Terminology and understanding of functional organizations and sequential operation of a digital computer. Program structure, and machine and assembly language topics including addressing, stacks, argument passing, arithmetic operations, traps, and input/output. Macros, modularization, linkers, and debuggers are used. Three hours lecture, two hours lab. Prerequisite: CS 242, CEG 260.
Ceg 333-01: Introduction To Unix, Thomas Wischgoll
Ceg 333-01: Introduction To Unix, Thomas Wischgoll
Computer Science & Engineering Syllabi
By the end of this quarter, you should be able to:
• Describe the basic methodology of UNIX filters, including pipes and redirection of stdin/stdout
• Program simple UNIX utilities at the command-line and shell-script level
• Discuss the advantages and disadvantages of common user interfaces (such as UNIX vs. PC/Windows)
• Discuss the philosophy of UNIX development and the open source movement
• Work comfortably in the UNIX environment
• Edit and manage files and user-level security for UNIX development
• Use standard UNIX development tools for C or C++
Ceg 360/560-01: Digital System Design, Travis E. Doom
Ceg 360/560-01: Digital System Design, Travis E. Doom
Computer Science & Engineering Syllabi
Design of digital systems. Topics include flip-flops, registers, counters, programmable logic devices, memory devices, register-level design, and microcomputer system organization. Students must show competency in the design of digital systems. 3 hours lecture, 2 hours lab. Prerequisite: CEG 260.
Ceg 433/633-01: Operating Systems, Prabhaker Mateti
Ceg 433/633-01: Operating Systems, Prabhaker Mateti
Computer Science & Engineering Syllabi
The management of resources in multi-user computer systems. Emphasis is on problems of file-system design, process scheduling, memory allocation, protection, and tools needed for solutions. Course projects use the CIC++ language and include the design of portions of an operating system. 4 credit hours.
Ceg 434/634-01: Concurrent Software Design, Yong Pei
Ceg 434/634-01: Concurrent Software Design, Yong Pei
Computer Science & Engineering Syllabi
This course provides an introduction to concurrent program design in the UNIX environment. Classical problems of synchronization, concurrency, and their solutions are examined through course projects and through readings on operating system design.