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Electronics --- Mass communications --- Computer architecture. Operating systems --- Computer. Automation --- informatica --- computerbesturingssystemen --- elektronica --- OS (operating system) --- computernetwerken --- communicatietechnologie
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IPv6, Internet Protocol Version 6, is the next-generation internet protocol designed by the IETF to replace the current IPv4, now nearly 20 years old. As the new IPv6 protocol replaces IPv4, professionals need a practical and detailed reference and introduction that explains the new capabilities and changes. Especially since new and modified features and integration of additional protocols underpin IPv6, a well-organized overview becomes even vital. Here readers find a full explanation of what they need to know to function optimally in the new environment. Based on the latest IETF meetings, Understanding IPv6 provides not only the basics but details on transition and optimization mechanisms, modifications in DNS, mobile IPv6, and security issues. In addition, Understanding IPv6 explains each topic based on the latest IETF published documents and: Compares IPv6 and IPv4, e.g., crucial aspects such as protocol and addressing architecture, expanded address features, modifications of DNS, and header formats. Clarifies the many related protocols that need to be mastered in optimizing IPv6, plus core features such as neighbor discovery, address autoconfiguration, and DHCPv6. Details internetworking mechanisms and mobility services with many examples and figures. Devotes full coverage to transition mechanisms, especially Teredo. Understanding IPv6 is a reference work for graduate level students, communications engineers and researchers.
TCP/IP (Computer network protocol) --- Internet. --- TCP/IP Internet Protocol Suite (Computer network protocol) --- Transmission Control Protocol/Internet Protocol (Computer network protocol) --- Computer network protocols --- DARPA Internet --- Internet (Computer network) --- Wide area networks (Computer networks) --- World Wide Web --- Information Technology --- Computer Science (Hardware & Networks) --- Computer Communication Networks. --- Telecommunication. --- Computer network architectures. --- Computer engineering. --- Communications Engineering, Networks. --- Computer Systems Organization and Communication Networks. --- Electrical Engineering. --- Computers --- Architectures, Computer network --- Network architectures, Computer --- Computer architecture --- Electric communication --- Mass communication --- Telecom --- Telecommunication industry --- Telecommunications --- Communication --- Information theory --- Telecommuting --- Design and construction --- Computer communication systems. --- Electrical engineering. --- Computer organization. --- Organization, Computer --- Electronic digital computers --- Electric engineering --- Engineering --- Communication systems, Computer --- Computer communication systems --- Data networks, Computer --- ECNs (Electronic communication networks) --- Electronic communication networks --- Networks, Computer --- Teleprocessing networks --- Data transmission systems --- Digital communications --- Electronic systems --- Information networks --- Telecommunication --- Cyberinfrastructure --- Electronic data processing --- Network computers --- Distributed processing
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This is Volume 42 of the Educational Media and Technology Yearbook. For the past 40 years, our Yearbook has contributed to the field of Educational Technology in presenting contemporary topics, ideas, and developments regarding diverse technology tools for educational purposes. Our Yearbook has inspired researchers, practitioners, and teachers to consider how to develop technological designs and develop curricula and instruction integrating technology to enhance student learning, teach diverse populations across levels with effective technology integration, and apply technology in interactive ways to motivate students to engage in course content. In addition, Volume 42 features the Virtual Reality (VR) and Augmented Reality (AR) research and educational use cases, organized and coordinated by Vivienne and David. This section provides evidence that the affordances of AR, VR, and mixed reality, defined as an immersive multi-platform experience reality (XR), have begun to make indelible changes in teaching and learning in the United States. XR’s recent developments stimulated the editors to propose a special edition to mark the interoperability of immersive technology to push the boundaries of human curiosity, creativity, and problem solving. After years of incremental development, XR has reached a critical level of investment, infrastructure, and emerging production. The chapters included in this section illustrate how XR can push user inquiry, engagement, learning, and interactivity to new levels within physical and digital contexts.
Educational technology. --- Instructional materials personnel. --- Instructional materials centers. --- Audio-visual materials centers --- Curriculum laboratories --- Educational media centers --- Instructional media centers --- Laboratories, Curriculum --- Learning resource centers --- Media centers (Education) --- School media centers --- Audio-visual library service --- School libraries --- Schools --- Audio-visual materials personnel --- Audio-visual specialists --- Educational media personnel --- Instructional media specialists --- Library media personnel --- Library media specialists --- Media service personnel in education --- School library media specialists --- School media personnel --- School employees --- Audio-visual education --- Instructional technology --- Technology in education --- Technology --- Educational innovations --- Instructional systems --- Teaching --- Aids and devices --- Learning. --- Instruction. --- Teaching. --- Educational Technology. --- Learning & Instruction. --- Teaching and Teacher Education. --- Didactics --- Instruction --- Pedagogy --- School teaching --- Schoolteaching --- Education --- Pedagogical content knowledge --- Training --- Learning process --- Comprehension
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Tecnologia educativa --- Material didàctic --- Material educatiu --- Material escolar --- Material pedagògic --- Materials d'ensenyament --- Materials didàctics --- Equipaments escolars --- Recursos educatius --- Blocs lògics --- Portafolis en educació --- Problemes i exercicis --- Jocs educatius --- Noves tecnologies de l'educació --- Pedagogia tecnològica --- Tecnologia de la informació en educació --- Tecnologia de l'educació --- Tecnologia didàctica --- Tecnologies de la informació i la comunicació en educació --- Telemàtica en educació --- Telemàtica en l'ensenyament --- TICE --- TIC en educació --- Didàctica --- Sistema educatiu --- Aprenentatge electrònic --- Ensenyament assistit per ordinador --- Ensenyament audiovisual --- Ensenyament programat --- Interactivitat (Educació) --- Objectes d'aprenentatge --- Alfabetització informacional --- Disseny d'aprenentatge --- Laboratoris d'aprenentatge --- Mètodes educatius --- Educational technology. --- Instructional technology --- Technology in education --- Technology --- Educational innovations --- Instructional systems --- Teaching --- Aids and devices
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IPv6, Internet Protocol Version 6, is the next-generation internet protocol designed by the IETF to replace the current IPv4, now nearly 20 years old. As the new IPv6 protocol replaces IPv4, professionals need a practical and detailed reference and introduction that explains the new capabilities and changes. Especially since new and modified features and integration of additional protocols underpin IPv6, a well-organized overview becomes even vital. Here readers find a full explanation of what they need to know to function optimally in the new environment. Based on the latest IETF meetings, Understanding IPv6 provides not only the basics but details on transition and optimization mechanisms, modifications in DNS, mobile IPv6, and security issues. In addition, Understanding IPv6 explains each topic based on the latest IETF published documents and: Compares IPv6 and IPv4, e.g., crucial aspects such as protocol and addressing architecture, expanded address features, modifications of DNS, and header formats. Clarifies the many related protocols that need to be mastered in optimizing IPv6, plus core features such as neighbor discovery, address autoconfiguration, and DHCPv6. Details internetworking mechanisms and mobility services with many examples and figures. Devotes full coverage to transition mechanisms, especially Teredo. Understanding IPv6 is a reference work for graduate level students, communications engineers and researchers.
Electronics --- Mass communications --- Computer architecture. Operating systems --- Computer. Automation --- informatica --- computerbesturingssystemen --- elektronica --- OS (operating system) --- computernetwerken --- communicatietechnologie
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This book is Volume 43 of the Educational Media and Technology Yearbook. For the past 40 years, our Yearbook has contributed to the field of Educational Technology by presenting contemporary topics, ideas, and developments regarding diverse technology tools for education. The Yearbook has inspired researchers, practitioners, and teachers to consider how to develop technological designs, curricula, and instruction. The audience for the Yearbook typically consists of media and technology professionals in K-12 schools, higher education, and business contexts. The Yearbook editors have dedicated themselves to providing a record of contemporary trends related to educational communications and technology and strive to highlight special movements that have clearly influenced the educational technology field. This volume continues the tradition of offering topics of interest to professionals practicing in other areas of educational media and technology. Includes research on emerging and contemporary topics in the field of educational technology; Provides an ongoing report on the current issues in the field of educational technology; Contains a section presenting organizations dedicated to educational technology; Includes a section presenting graduate programs in the field of educational technology; Includes a section presenting mediagraphy in the field of educational technology.
Study methods --- Teacher education. Teacher's profession --- School management --- Computer assisted instruction --- Audiovisual methods --- Higher education --- Educational sciences --- HO (hoger onderwijs) --- onderwijstechnologie --- onderwijs --- computerondersteund onderwijs --- leren --- lerarenopleiding --- studievaardigheden --- lesgeven
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Study methods --- Teacher education. Teacher's profession --- School management --- Computer assisted instruction --- Audiovisual methods --- Higher education --- Educational sciences --- HO (hoger onderwijs) --- onderwijstechnologie --- onderwijs --- computerondersteund onderwijs --- leren --- lerarenopleiding --- studievaardigheden --- lesgeven
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