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Path Category
Guided learning journeys that build knowledge step by step.
category · Learning · slug · learning · 7812 Paths
7812 Paths · page 420 / 782
A graduate-level learning path covering the mathematical foundations of information theory, including entropy, mutual information, channel capacity, source coding, and error control coding, with necessary prerequisites in probability and network basics.
This path equips network administrators and engineers with the principles and practical tools for modern network management and monitoring. It covers foundational concepts, SNMP, NetFlow/sFlow, NETCONF/YANG, and fault and performance management, with a focus on applying these in professional environments.
This advanced learning path covers the technologies and protocols that enable multimedia applications over IP networks, including VoIP, video streaming, and conferencing. Starting with fundamental networking concepts, it progresses through transport layer protocols, multimedia compression, RTP/RTCP, SIP, and concludes with QoS mechanisms. The path emphasizes the interplay between application requirements and network capabilities.
This advanced learning path equips university networking students with a deep understanding of SDN architecture, OpenFlow, network virtualization (VXLAN, NVGRE), and NFV. It begins with foundational network protocols and OS concepts, progresses through SDN planes and OpenFlow, then explores virtualization overlays and NFV, culminating in integration and practical application.
A comprehensive learning path for university students to master advanced congestion control algorithms, TCP variants, and Quality of Service (QoS) mechanisms including traffic shaping, policing, scheduling, and differentiated/integrated services. The path builds from foundational networking concepts to advanced topics, ensuring a deep understanding of how congestion control and QoS operate across the network stack.
This learning path guides advanced networking students from foundational routing concepts to mastering the Border Gateway Protocol (BGP). It covers BGP attributes, path selection, route aggregation, iBGP vs eBGP, and security mechanisms like RPKI and BGPsec, culminating in practical configuration and troubleshooting.
This learning path introduces the core concepts of network security, starting with the CIA triad and building up through cryptography, authentication, and network defense mechanisms such as firewalls and IDS/IPS. It is designed for university students with a background in networking and basic cryptography, providing a structured progression from foundational principles to practical security controls.
This learning path systematically introduces the principles of wireless and mobile networking, covering wireless transmission fundamentals, key standards (Wi-Fi, Bluetooth), cellular networks, mobility management, and handoff. Designed for university students with networking basics, it builds from foundational concepts to advanced mobility topics.
This learning path guides programmers through the fundamentals of network programming using socket APIs. Starting with networking basics, it progresses to TCP and UDP socket programming, client-server models, and advanced I/O multiplexing techniques for building efficient, multi-threaded servers.
This learning path covers the fundamental application layer protocols used in computer networks, including DNS, HTTP/HTTPS, SMTP, POP3/IMAP, FTP, and DHCP. It begins with essential transport layer concepts and systematically explores each protocol's purpose, operation, and real-world usage.