- CS144 Fall 2013 Video 1-0 - The Internet and IP Introduction
- CS144 Fall 2013 Video 1-1 - A day in the life of an application
- CS144 Fall 2013 Video 1-2 - The four layer Internet model
- CS144 Fall 2013 Video 1-3 - The IP service model
- CS 144 Video 1-4 - A Day in the Life of a Packet
- CS144 Fall 2013 Video 1-5 - Packet switching principle
- CS144 Fall 2013 Video 1-6 - Layering principle
- CS144 Fall 2013 Video 1-7 - Encapslation principle
- CS144 Fall 2013 Video 1-8a - byte order
- CS144 Fall 2013 Video 1-8b - byte order
- 011-CS144 Fall 2013 Video 1-8c - byte order
- 012-CS144 Fall 2013 Video 1-8d - byte order
- 013-CS144 Fall 2013 Video 1-9a - IPv4 addresses
- 014-CS144 Fall 2013 Video 1-9b - IPv4 addresses
- 015-CS144 1-9c - IPv4 addresses
- 016-CS144 Fall 2013 Video 1-9d - IPv4 addresses
- 017-CS144 Fall 2013 Video 1-10a - Longest prefix match (LPM)
- 018-CS144 Fall 2013 Video 1-10b - Longest prefix match (LPM)
- 019-CS144 Fall 2013 Video 1-10c - Longest prefix match (LPM)
- 020-CS144 Fall 2013 Video 1-11 - Address Resolution Protocol (ARP)
- 021-CS144 Fall 2013 Video 1-12 - The Internet and IP Recap
- 022-CS144 Fall 2013 Video 9-1 - Jon Peterson Interview -- SIP and Security
- 023-CS144 Fall 2013 Video 2-0 - Transport (intro)
- 024-CS144 Fall 2013 Video 2-1 - TCP service model
- 025-CS144 Fall 2013 Video 2-2 - UDP service model
- 026-CS144 Fall 2013 Video 2-3 - ICMP service model
- 027-CS144 Fall 2013 Video 2-4 - End to End Principle
- 028-CS144 Fall 2013 Video 2-5 - Error detection
- 029-CS144 Fall 2013 Video 2-6a - Finite state machines 1
- 030-CS144 Fall 2013 Video 2-6b - Finite state machines 2
- 031-CS144 Fall 2013 Video 2-6c - Finite state machines 3
- 032-CS144 Fall 2013 Video 2-6d - Finite state machines 4
- 033-Stop and wait
- 034-Sliding window
- 035-Reliable comm. --- Retransmission strategies
- 036-Reliable comm --- TCP header
- 037-Reliable comm --- Connection setup and teardown
- 038-CS144 Fall 2013 Video 2-12 - Transport (recap)
- 039-CS144 Fall 2013 Video 9-2 - Kevin Fall
- 040-CS144 Fall 2013 Video 3-0 - Packet Switching
- 041-CS144 Fall 2013 Video - 3-1 The History of Networks; The History of the Inte
- 042-Packet Switching - Principles - What is packet switching
- 043-Packet Switching - Principles - Terminology End to End Delay and Queueing d
- 044-Packet Switching - Principles - Playback buffers
- 045-Packet Switching - Principles - Simple Deterministic Queue Model (revised)
- 046-CS144 Fall 2013 Video 3-5a - Simple Queueing Model Example
- 047-Packet Switching - Principles - Queueing Model Properties
- 048-Packet Switching - Practice - Switching and Forwarding (1)
- 049-Packet Switching - Practice - Switching and Forwarding (2)
- 050-Packet Switching - Principles - Rate guarantees
- 051-Packet Switching - Principles - Delay Guarantees (revised)
- 052-CS144 Fall 2013 Video 3-10a - Delay Guarantees Example
- 053-CS144 Fall 2013 Video 3-11 - Packet Switching (recap)
- 054-CS144 Fall 2013 Video 9-3 - Tom Edsall Interview -- DC Switches
- 055-CS144 Fall 2013 Video 4-0 - Congestion Control
- 056-Congestion Control - Basics
- 057-Congestion Control - Basics 2
- 058-Congestion Control - Dynamics of a single AIMD flow
- 059-CS144 Fall 2013 Video 4-3a - Single AIMD flow worked example
- 060-4-4 AIMD Multiple Flows
- 061-TCP Tahoe
- 062-TCP RTT Estimation
- 063-TCP Reno
- 064-Congestion Control - AIMD
- 065-Skills --- Reading and RFC
- 066-CS144 Fall 2013 Video 4-11 - Congestion Control
- 067-4 Nandita Interview
- 068-CS144 Fall 2013 Video 5-0 - Applications and NATs
- 069-NATs - Introduction
- 070-NATs - Types
- 071-NATs - Implications
- 072-Nats - Operation
- 073-CS144 Fall 2013 Video 5-5a - HTTP
- 074-CS144 Fall 2013 Video 5-5b - HTTP Quiz 1 Intro
- 075-CS144 Fall 2013 Video 5-5c - HTTP Quiz 1 Explanation
- 076-CS144 Fall 2013 Video 5-5d - HTTP Quiz 2 Intro
- 077-CS144 Fall 2013 Video 5-5e - HTTP Quiz 2 Explanation
- 078-CS144 Fall 2013 Video 5-6 - HTTP_1.1 Keep-alive
- 079-CS144 Fall 2013 Video 5-7 - BitTorrent
- 080-DNS 1
- 081-DNS 2
- 082-DNS 3
- 083-DHCP
- 084-CS144 Fall 2013 Video 5-12 - Applications and NATs (recap)
- 085-CS144 Fall 2013 Video 6-0 - Routing
- 086-Routing - Flooding source routing and spanning trees
- 087-Routing - Bellman Ford
- 088-Routing - Dijkstra
- 089-Routing - Internet (RIP OSPF) ASs
- 090-Routing - BGP
- 091-Routing - Multicast
- 092-Routing - Spanning Tree
- 093-IPv6
- 094-CS144 Fall 2013 Video 6-9 - Routing
- 095-CS144 Fall 2013 Video 9-5 - David Ward
- 096-BGP - Putting the Inter in Internet. Professor Jennifer Rexford Princeton
- 097-CS144 Fall 2013 Video 7 0 - Lower Layers
- 098-Physical and Link Principles - Shannon Capacity and Modulation
- 099-Physical and Link Principles - Bit Errors
- 100-Physical and Link - Principles - clocks
内容简介:斯坦福《计算机网络导论》课程是一门系统讲解信息技术发展历程与核心应用的前沿课程。它从基础原理出发,深入浅出地揭示了图像分类等现代计算机视觉任务背后的技术逻辑,并结合实际案例帮助学习者建立完整的知识体系。
课程概述
在这门斯坦福《计算机网络导论》课程中,我们不仅会回顾信息技术的演进历程,还会深入探讨它在现代社会中的深远影响。课程以图像分类为切入点,展示如何通过算法对复杂的图像数据进行处理和判断,进而延伸至更广泛的计算机视觉应用场景。课程强调理论与实践相结合,为后续的机器学习、深度学习等内容打下坚实的基础。
学习目标
本课程旨在培养学习者对信息技术的理解能力,特别是对图像分类这一核心任务的认知。通过课程内容,学生将掌握图像特征提取、相似度计算、模型评估等关键技能,并了解不同算法之间的优缺点与适用场景。同时,课程还注重实践操作,使学生能够独立完成图像分类任务,并理解其中涉及的数据处理与模型训练流程。适用人群
这门课程适合对人工智能、计算机视觉领域感兴趣的学生或初学者。无论是希望进入机器学习方向的开发者,还是正在探索图像处理相关技术的研究者,都能从中获得实用的知识与实践经验。此外,对于希望提升自身技术思维、应对实际项目挑战的学习者来说,这门课程也具有很高的参考价值。课程大纲
第一章:信息技术与计算机视觉背景
- 信息技术的发展历程 - 现代社会中的信息技术重要性 - 典型的应用场景与新兴发展方向








