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Статті в журналах з теми "Computer technology"

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Chen, Sifei. "Application of Computer Science Technology in Computer Education." Journal of Education and Culture Studies 8, no. 1 (February 19, 2024): p65. http://dx.doi.org/10.22158/jecs.v8n1p65.

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The arrival of the era of big data, making the computer in all walks of life are widely used in the teaching process is also inseparable from the application of computers, some of the traditional teaching methods have also been replaced by computer technology, computer teaching has become the mainstream of the times, and has become a very effective means of teaching as well as teaching tools. The application and popularization of computers has brought great convenience to people's daily life, and has a great effect on the improvement of teaching quality. In the process of computer popularization, it is widely used in real life. And the computer as an education and learning tools, for computer education itself has great significance. In assisting teachers in the management of teaching and practical work at the same time, but also to provide students with richer learning resources and learning efficiency, so that the teaching and learning process is more concise and easy. The arrival of the era of big data, making the computer in all walks of life are widely used in the teaching process is also inseparable from the application of computers, some of the traditional teaching methods have also been replaced by computer technology, computerized teaching has become the mainstream of the times, and has become a very effective means of teaching as well as the teaching tools of the times. The application and popularization of computers has brought great convenience to people's daily life, and has a great effect on the improvement of teaching quality. Especially in the cultivation of talents in colleges and universities, the application of computers can have a great role in promoting the cultivation of innovation ability of college students. This article briefly analyzes the application of computer science and technology in computer education, starting from computer science and technology.
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Singh, Siddhart. "Use of Computer Technology in Research." Procedure International Journal of Science and Technology 1, no. 3 (2024): 31–38. http://dx.doi.org/10.62796/pijst.2024v1i304.

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Due to the infinite capabilities of the computer, it can be called a miracle. As a result of the development of fast working electronic digital computers and their use in various fields, a new revolution has been initiated in all the fields of knowledge and science. Due to computers, there has been a very significant and meaningful change in the thinking, working style and effectiveness of humans. Research work done in various fields is also not untouched by the influence of computers. The use of computers has affected not only the research work done in the field of physical sciences but also in the field of social sciences. The availability of computer facilities has had a special impact on two most important dimensions of research work in social and behavioral sciences. First, computers have made the preparation and presentation of research reports more simple and form. Second, computers have made the work of analysis easier and accurate. In fact, as a result of computers working at very fast speed, there has been significant development in the field of data storage, processing and analysis. As a result of computers, the problem of complexity of statistical calculation tasks has ended. Computers have made it possible to do calculation work of years in months, calculation work of months in days, calculation work of days in minutes and calculation work of minutes in seconds. Many such research works, which were not possible earlier due to the complex complexity of calculations used in data analysis and excessive timeconsumption, can be easily done today due to the availability of fast calculation facility on computers. The use of computers in research is increasing day by day. Its use in research is increasing day by day due to many reasons. Firstly, all those big calculations can be done easily and quickly in a computer today which was either never possible earlier or there was a possibility of some error if done by the human brain. Therefore, first of all, because of the ease with which the computer can calculate quantitative facts, it is used in research. The second advantage is that the computer can absorb a lot of quantitative or explanatory facts without demanding much space and presents them in the blink of an eye. It becomes very easy to send facts because they can be easily taken out as a second copy by the computer.
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Gendel, Steven M. "Computer Technology." Science 238, no. 4832 (December 4, 1987): 1341. http://dx.doi.org/10.1126/science.238.4832.1341.e.

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Lin, Shu-Hwa. "Computer Technology." International Journal of Information and Communication Technology Education 7, no. 1 (January 2011): 80–88. http://dx.doi.org/10.4018/jicte.2011010108.

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This paper describes an innovative course wherein students and faculty collaborate to design, manufacture, manage, and sell organic cotton tote bags. Students remained responsible for the project from start to finish. Responsibilities included all aspects of product development from market research and design conceptualization to producing, promoting and selling the finished tote bag embellished with a heat transfer printed department logo. Moreover, the project required students to develop proficiency in multiple specific computer software programs to facilitate the product development process and ongoing management of promoting, distributing and selling the goods. With the development of fashion design and management skills and applications of computer technology, student projects were successfully executed. Based on positive student evaluations and profitable sales, the course was highly rated.
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Nelson, Lauren K., and Julie J. Masterson. "Computer Technology." Topics in Language Disorders 19, no. 3 (May 1999): 68–86. http://dx.doi.org/10.1097/00011363-199905000-00007.

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GENDEL, S. M. "Computer Technology." Science 238, no. 4832 (December 4, 1987): 1341. http://dx.doi.org/10.1126/science.238.4832.1341-d.

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Sorokatyi, R., A. Dykha, O. Pasichnyk, and T. Skrypnyk. "Computer information technology modeling tribological systems." Problems of tribology 25, no. 2 (June 5, 2020): 59–66. http://dx.doi.org/10.31891/2079-1372-2020-96-2-59-66.

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Ohta, Yuichi. "3D Image Media and Computer Vision -From CV as Robot Technology to CV as Media Technology-." Journal of Robotics and Mechatronics 9, no. 2 (April 20, 1997): 92–97. http://dx.doi.org/10.20965/jrm.1997.p0092.

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The possibility to apply the computer vision technology to the development of a new image medium is discussed. Computer vision has been studied as a sensor technology between the real world and computers. On the other hand, the computer graphics are the interface technology between the computers and human beings. The invention of ""3D photography"" based on the computer vision technology will realize a new 3D image medium which connects the real world and the human beings via computer. In such a framework, computer vision should be studied as a media technology rather than a robot technology.
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Thach, Kim J., and Kimberly A. Norman. "Technology-Rich Mathematics Instruction." Teaching Children Mathematics 15, no. 3 (October 2008): 152–58. http://dx.doi.org/10.5951/tcm.15.3.0152.

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Over the past decade, technology—particularly computer technology—has become more accessible to students in public school settings. From 2000 to 2005, the ratio of students to computers with Internet access improved from approximately seven students per computer to four students per computer (Wells and Lewis 2006). Although access continues to increase, one of the remaining challenges is the successful integration of technology as a tool for facilitating learning across the curriculum.
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Guo, Yang Yong. "Integration Development of Network Communication and Computer Technology." Applied Mechanics and Materials 539 (July 2014): 234–38. http://dx.doi.org/10.4028/www.scientific.net/amm.539.234.

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Through the computer network we can communicate with each other, and the development of the mobile communication technology cannot do without the computer technology. The program-controlled exchange, management, billing and so on in the telecommunication network are completed using the computers. The core network of the mobile communication system depends on the support of computer technology, and many of its elements are the computers of specific functions. The mobile communication and the computer network communication are the science processing the information, with the same signal styles, and they have many of the same subject theories, and a lot of the same technologies are also used in practice.
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Дисертації з теми "Computer technology"

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Kiadtikornthaweeyot, Warinthorn. "Onboard computer technology for cubesats." Thesis, University of Southampton, 2015. https://eprints.soton.ac.uk/380017/.

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This thesis addresses the problem of cubesat limitations on transmission power and onboard memory storage. The number of small satellites is continuing to increase. The reduced amount of time and budget required for the development of these satellites has considerable advantages. The short time leads to data becoming available faster than from a larger satellite. Consequently, the communication system is very important to ensure that all data from the cubesat can be transmitted to the receiving station. In this thesis the link budget of a cubesat has been studied to identify the constraints on power and data transmission. As cubesat satellites become more complex, additional constraints and requirements are placed on system components. For more complex missions, greater flexibly of the onboard computer architecture is required to support the mission adaptation or changing specifications of onboard devices. Alternative onboard computer architecture for the next generation of cubesats is presented in this thesis and hybrid onboard computer architecture is proposed. There are many cubesats which have provided remote sensing imagery. An issue is how to store the data onboard and how to transmit these data with limited power. A solution is to reduce the size of the original image by pre-image processing. The potential for using image compression and defining the region of interest to decrease the original satellite image size has been examined in this research. Three approaches are studied and described in the context of the region of interest technique. There is image segmentation based on edge, histogram and texture detection. The presented evaluation is focused on the detection of the land part of the image that contains dynamic information and rejecting the ocean where there is less interest. The technique, however, is equally applicable for any region of interest that can be characterised and this is illustrated by considering some examples. The proposed adaptive image compression system is made up of two parts. The first part consists of the identification of the region of interest and the second part the image compression of this region of interest. The accuracy of the proposed system has been examined by comparing the number of different pixels between the proposed automatic region of interest system and the manual detection of the region of interest. Morphological methods are the main technique that has been used in the system. The morphology structure element has different shapes and size and it is necessary to understand how the shape and size of the structure elements affects the proposed system. A study of structure element has been conducted. In the real implementation of the proposed system on a cubesat, additional power would be required. To quantify this increase, a particular proposed system based on edge segmentation for region of interest automatic detection has been studied. The potential for using the proposed image compression to detect the region of interest and image compression was examined using a standard microcontroller. The result shows that the proposed system could be used on a cubesat satellite with reasonable additional power and mass.
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Montague, Gregory Alan. "Computer technology in the design process." Orlando, Fla. : University of Central Florida, 2010. http://purl.fcla.edu/fcla/etd/CFE0003032.

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Ewing, John Paul. "Teacher language towards computer-based technology." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 2000. http://www.collectionscanada.ca/obj/s4/f2/dsk1/tape3/PQDD_0010/NQ59584.pdf.

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Manzaneda, Martin. "Natural Language Interface Technology in Computer Games." Thesis, KTH, Skolan för datavetenskap och kommunikation (CSC), 2015. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-166647.

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This project delivers the results of research about the implementation of natural language interfaces (NLIs) on computer games. We will study how to combine these concepts, making a small game and evaluating different methods to achieve this.
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Busfield, Robert. "The social construction of domestic computer technology." Thesis, University of Surrey, 2000. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.326739.

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Akkan, Sultan. "Use of computer technology by the elderly." Thesis, This resource online, 1993. http://scholar.lib.vt.edu/theses/available/etd-12042009-020116/.

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Martin, Terri L. "Computer-based technology utilization by elementary teachers /." free to MU campus, to others for purchase, 1997. http://wwwlib.umi.com/cr/mo/fullcit?p9842580.

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Peterson, Cynthia Lynn. "Using computer technology to enhance science education." CSUSB ScholarWorks, 2002. https://scholarworks.lib.csusb.edu/etd-project/2109.

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Pinder, Charlie. "Targeting the automatic : nonconscious behaviour change using technology." Thesis, University of Birmingham, 2018. http://etheses.bham.ac.uk//id/eprint/8539/.

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Digital interventions have great potential to support people to change their behaviour. However, most interventions focus on strategies that target limited conscious resources, reducing their potential impact. We outline how these may fail in the longer-term due to issues with theory, users and technology. We propose an alternative: the direct targeting of nonconscious processes to achieve behaviour change. We synthesise Dual Process Theory, modern habit theory and Goal Setting Theory, which together model how users form and break nonconscious behaviours, into an explanatory framework to explore nonconscious behaviour change interventions. We explore the theoretical and practical implications of this approach, and apply it to a series of empirical studies. The studies explore nonconscious-targeting interventions across a continuum of conscious attention required at the point of behavioural action, from high (just-in-time reminders within Implementation Intentions) to medium (training paradigms within cognitive bias modification) to low (subliminal priming). The findings show that these single-nonconscious-target interventions have mixed results in in-the-wild and semi-controlled conditions. We conclude by outlining how interventions might strategically deploy multiple interventions that target the nonconscious at differing levels of conscious attention, and by identifying promising avenues of future research.
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Algharibi, Amani Jaber H. "Technology validation for e-trial systems." Thesis, University of Birmingham, 2016. http://etheses.bham.ac.uk//id/eprint/6786/.

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This research study presents a Hypothesised Model, developed on the basis of the Unified Theory of Acceptance and Use of Technology (UTAUT). Its aim is to evaluate innovative Health Information Technology (HIT) at the early stages of projects. It is contended that this practice would support system developers at the design and implementation phases, and reduce the risk of underutilisation or rejection. The performance of the model was tested in three studies within the Clinical Trial Management Systems framework. The Hypothesised Model approaches Behavioural Intention from a socio-technical point of view, taking into consideration the complexity and need of HIT to achieve joint optimisation. Moreover, it simplifies and extends UTAUT so that it may fit soundly within the healthcare context. Hence, it excludes the moderators and adds three core constructs, including: System-Specific Features, Technology Anxiety, and Adaptation Timeline. However, the model is easily adjustable to fit specific situations, especially given that this research study posits the non-existence of a single model that suits all situations. This approach appears to have improved the final outcome and outperformed the use of generic models within the healthcare context. The total explained variance reported from the three studies is: (76%), (86%), and (87%) respectively.
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Книги з теми "Computer technology"

1

Rodman, Robert. Computer speech technology. Boston: Artech House, 1999.

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Anderson, A. John. Foundations of computer technology. London: Chapman & Hall, 1994.

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3

Mastorakis, Nikos E. Computer systems, support, and technology. Hauppauge, N.Y: Nova Science Publisher's, Inc., 2011.

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4

Fuller, Floyd. Computers: Understanding technology. 3rd ed. St. Paul, Minn: Paradigm Pub., 2008.

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Fuller, Floyd. Computers: Understanding technology. 3rd ed. St. Paul, Minn: EMC/Paradigm, 2008.

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6

Xu, Weixia, Liquan Xiao, Jinwen Li, Chengyi Zhang, and Zhenzhen Zhu, eds. Computer Engineering and Technology. Berlin, Heidelberg: Springer Berlin Heidelberg, 2015. http://dx.doi.org/10.1007/978-3-662-45815-0.

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Xu, Weixia, Liquan Xiao, Chengyi Zhang, Jinwen Li, and Liyan Yu, eds. Computer Engineering and Technology. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-41635-4.

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Xu, Weixia, Liquan Xiao, Jinwen Li, Chengyi Zhang, and Zhenzhen Zhu, eds. Computer Engineering and Technology. Singapore: Springer Singapore, 2016. http://dx.doi.org/10.1007/978-981-10-3159-5.

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Xu, Weixia, Liquan Xiao, Jinwen Li, Chengyi Zhang, and Zhenzhen Zhu, eds. Computer Engineering and Technology. Singapore: Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-10-7844-6.

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Xu, Weixia, Liquan Xiao, Jinwen Li, and Zhenzhen Zhu, eds. Computer Engineering and Technology. Singapore: Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-15-1850-8.

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Частини книг з теми "Computer technology"

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Milner, D. A., and V. C. Vasiliou. "Computer technology." In Computer-Aided Engineering for Manufacture, 51–83. Boston, MA: Springer US, 1986. http://dx.doi.org/10.1007/978-1-4684-6912-7_3.

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Fox, Richard. "Computer Networks." In Information Technology, 193–238. Second edition. | Boca Raton : CRC Press, 2020.: Chapman and Hall/CRC, 2020. http://dx.doi.org/10.1201/9781003050971-6.

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Walter, Max. "Computer architecture." In Technology Guide, 134–39. Berlin, Heidelberg: Springer Berlin Heidelberg, 2009. http://dx.doi.org/10.1007/978-3-540-88546-7_26.

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Cole, Robert. "Computer Network Technology." In Computer Communications, 84–103. London: Macmillan Education UK, 1986. http://dx.doi.org/10.1007/978-1-349-18271-8_7.

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Heidmann, Frank. "Human-computer cooperation." In Technology Guide, 262–67. Berlin, Heidelberg: Springer Berlin Heidelberg, 2009. http://dx.doi.org/10.1007/978-3-540-88546-7_50.

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Teicholz, Eric. "Computer Modeling." In Technology for Facility Managers, 171–90. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2019. http://dx.doi.org/10.1002/9781119572626.ch10.

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Rousseau, Christiane, and Yvan Saint-Aubin. "The DNA Computer." In Mathematics and Technology, 1–43. New York, NY: Springer New York, 2008. http://dx.doi.org/10.1007/978-0-387-69216-6_13.

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Maz, Andrew. "Computer Music Notation." In Music Technology Essentials, 193–207. London: Focal Press, 2023. http://dx.doi.org/10.4324/9781003345138-11.

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Bingol, Gokhan, and Y. Onur Devres. "Processing and Computer Technology." In Handbook of Vegetables and Vegetable Processing, 387–403. Oxford, UK: Wiley-Blackwell, 2011. http://dx.doi.org/10.1002/9780470958346.ch19.

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Kim, Seong-in. "Assessments and Computer Technology." In The Wiley Handbook of Art Therapy, 587–99. Chichester, UK: John Wiley & Sons, Ltd, 2015. http://dx.doi.org/10.1002/9781118306543.ch56.

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Тези доповідей конференцій з теми "Computer technology"

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Prokhorov, Sergei. "Evolution of Education: From Computers to Computer Technology." In 2015 International Conference on Engineering and Telecommunication (EnT). IEEE, 2015. http://dx.doi.org/10.1109/ent.2015.28.

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Foley, Jim. "Integrating computer technology, people technology and application technology." In the workshop. New York, New York, USA: ACM Press, 1994. http://dx.doi.org/10.1145/192309.192321.

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Zamani, Zainah Ahmad. "Computer technology and counseling." In 2009 2nd IEEE International Conference on Computer Science and Information Technology. IEEE, 2009. http://dx.doi.org/10.1109/iccsit.2009.5234649.

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Burnett, Stephen, and Karry Kazial. "Computer technology and bioacoustics." In the International Conference. New York, New York, USA: ACM Press, 2010. http://dx.doi.org/10.1145/1868013.1868016.

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"Computer and information technology." In 2011 8th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON 2011). IEEE, 2011. http://dx.doi.org/10.1109/ecticon.2011.5947865.

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Wang, Beibei, Yingxiong Nong, Zhengyan Zhong, Yi Wei, Chen Sun, Tong Lu, and Zhibin Chen. "Software Technology Development Technology in Computer Application Software." In 2024 Third International Conference on Distributed Computing and Electrical Circuits and Electronics (ICDCECE). IEEE, 2024. http://dx.doi.org/10.1109/icdcece60827.2024.10548465.

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Kiamilev, F., J. Fan, B. Catanzaro, S. Esener, and S. H. Lee. "Computer-aided design for optoelectronic computing." In OSA Annual Meeting. Washington, D.C.: Optica Publishing Group, 1990. http://dx.doi.org/10.1364/oam.1990.fj6.

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Over the last decade there has been a dramatic increase in the use of computer-aided design (CAD) tools in the design of very-large-scale integrated (VLSI) electronic systems. This increase has been driven by the increasing complexity and fabrication cost of VLSI systems. On the other hand, optoelectronic technology is emerging as a way to build high-performance computer systems. In optoelectronic computers, electronic circuitry is used for local processing, and free-space optical interconnects are used for global communication. Optoelectronic computers will be packaged by means of the same planar processing technology currently used for VLSI circuits. The design of optoelectronic computers requires detailed knowledge of optical interconnection technology, optical system setup, VLSI circuit layout and fabrication, computer architectures, computer algorithms, and packaging technology. To allow system builders to design optoelectronic computers with minimal knowledge of optoelectronic technolgy, an integrated set of CAD tools will be needed. An integrated optoelectronic CAD system will promote stronger interaction between optoelectronic device researchers and system designers, allow top-down and bottom-up design methods, provide interoperability, and, most important, reduce the design time and fabrication cost. In this paper we review existing electronic CAD systems and propose an optoelectronic CAD system that integrates architectures, algorithms, optics, and electronics under a common framework. The justification, requirements, and benefits of such a system will be discussed.
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"About department of computer technology." In 2014 Sixth International Conference on Advanced Computing (ICoAC). IEEE, 2014. http://dx.doi.org/10.1109/icoac.2014.7229769.

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Boozin, A. Yu, and I. G. Pospelov. "APL technology of computer simulation." In the international conference. New York, New York, USA: ACM Press, 1991. http://dx.doi.org/10.1145/114054.114060.

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Shah, Maimunah Mohd, Roshidi Hassan, and Roslani Embi. "Technology acceptance and computer anxiety." In 2012 International Conference on Innovation Management and Technology Research (ICIMTR). IEEE, 2012. http://dx.doi.org/10.1109/icimtr.2012.6236408.

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Звіти організацій з теми "Computer technology"

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Wang, Qiao-yu. GaAs Computer Technology. Fort Belvoir, VA: Defense Technical Information Center, January 1992. http://dx.doi.org/10.21236/ada259259.

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Rosenthal, Robert. Computer science and technology :. Gaithersburg, MD: National Bureau of Standards, 1987. http://dx.doi.org/10.6028/nbs.ir.87-3516.

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McCormack, Thomas H., Michael A. Loyal, and Irene Elios. Computer Resource Management Technology. Fort Belvoir, VA: Defense Technical Information Center, December 1986. http://dx.doi.org/10.21236/ada176041.

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Bergendahl, T. J., K. S. Smith, and J. G. Sullivan. Computer Security Products Technology Overview. Fort Belvoir, VA: Defense Technical Information Center, October 1988. http://dx.doi.org/10.21236/ada203261.

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Blumenthal, M. Computer Science and Technology Board. Office of Scientific and Technical Information (OSTI), January 1990. http://dx.doi.org/10.2172/6995568.

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Schorr, Herbert. A Research Program in Computer Technology. Fort Belvoir, VA: Defense Technical Information Center, December 1990. http://dx.doi.org/10.21236/ada231025.

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Wheeler, Christopher H. Technology and Industrial Agglomeration: Evidence from Computer Usage. Federal Reserve Bank of St. Louis, 2005. http://dx.doi.org/10.20955/wp.2005.016.

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LeBlanc, Richard J. Fault Tolerant Software Technology for Distributed Computer Systems. Fort Belvoir, VA: Defense Technical Information Center, March 1989. http://dx.doi.org/10.21236/ada208329.

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Letellier, J. P., John Hines, Barry Periman, James Dayton, Nicholas Naclerio, Robert Jackson, Jacob Abraham, Lowell Aspholm, James Aylor, and James Clary. Special Technology Area Review on Computer Aided Design. Fort Belvoir, VA: Defense Technical Information Center, March 1993. http://dx.doi.org/10.21236/ada285813.

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Siewert, T., and T. Siewert. Seventh International Conference on Computer Technology in Welding. Gaithersburg, MD: National Institute of Standards and Technology, 1997. http://dx.doi.org/10.6028/nist.sp.923.

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