DomainCUDM2508
Computer Networks
Syllabus
Course
Objectives:
1.
The course on Computer Networks aims to provide
students with a comprehensive understanding
of
the
fundamental
principles,
architectures,
and
protocols
that
enable communication over
digital networks.
2.
The
objective
is
to
introduce
learners
to
the
layered
structure
of
network
models,
particularly the OSI and TCP/IP models, and to explore the
functionalities of each layer, including physical transmission, data link
control, network routing, transport services, and application
protocols.
3.
The
course
also
focuses
on
key
concepts
such
as
IP
addressing,
error
detection
and correction,
switching techniques, congestion control, and network security.
4.
By the end of the course, students will be
equipped with the theoretical foundation and practical
skills
necessary
to
design,
implement,
analyze,
and
troubleshoot
modern
computer
networks, preparing them for advanced studies and careers in networking and
communication technologies.
Course Outcomes (COs):
•
CO1:
Explain basic concepts of computer networks, OSI and TCP/IP models, and roles
of different layers. (Understand)
•
CO2:
Analyze data transmission methods, switching techniques, and error
detection/correction. (Analyze)
•
CO3:
Illustrate IP addressing, routing algorithms, and subnetting. (Apply)
•
CO4:
Compare TCP and UDP and describe flow control and congestion control. (Analyze)
•
CO5:
Demonstrate application layer protocols like HTTP, DNS, SMTP, FTP. (Apply)
•
CO6:
Evaluate network security concepts including cryptography and firewall
configurations. (Evaluate)
Course
Syllabus:
Module
1:
Introduction
to
Computer
Networks
(5
Hours)
Theory:
Practical:
·
Overview
of
Computer
Network,
Types
of
Networks,
Network
Topologies, Network
Devices,
·
ISO/OSI
Model,
TCP/IP
Model,
Basics
of
Data
Transmission.
Experiment
1.1:
Study
of
Network
Devices
and
Topologies
Experiment 1.2:
Simulation of OSI and TCP/IP Layers Using Packet Tracer Experiment
1.3:
Demonstration
of
Data
Transmission
Using
Encoding
Techniques
Module
2:
Physical
&
Data
Link
Layer
(
5
Hours)
Theory:
Practical:
·
MAC
and
Logical
Link
Control,
Ethernet
and
IEEE
802
standards,
·
ARP
and
RARP,
Error
Detection
&
Correction:
CRC,
Checksum,
·
Framing
Techniques
and
flow
control.
Experiment
2.1:
Simulation
of
ARP
and
RARP
Protocols
Experiment
2.2:
Implement
Error
Detection
Using
CRC
and
Checksum
Experiment
2.3:
Study
and
Simulate
Framing
Techniques
and
Flow
Control
Module
3:
Network
Layer
&
IP
Addressing
(10
Hours)
Theory:
Practical:
·
IP
Addressing
(IPv4
and
IPv6),
Subnetting,
Supernetting,
&
CIDR,
IP
Routing
(static vs Dynamic)
·
Routing
Algorithms,
Routing
Protocols,
NAT,
PAT,
ICMP
(Ping
&
Traceroute)
Experiment
3.1: Subnetting
and
IP
Address
Planning
(IPV4
&
IPV6) Experiment
3.2: Configure Static and Dynamic IP Routing Experiment 3.3: NAT, PAT, and ICMP Testing (Ping
& Traceroute)
Module
4:
Transport
Layer
(7
Hours)
Theory:
·
TCP
and
UDP,
Port
numbers,
Flow
control
·
Congestion
control,
Packet
sniffing
&
TCP
Session
Hijacking
(Wireshark).
Practical:
Experiment 4.1: Study
and Comparison of TCP and
UDP Protocols
using Socket Programming Experiment
4.2:
Demonstration
of
Flow
Control
and
Congestion
Control
using
Simulation
Tool (NS2/NS3 or Cisco Packet Tracer)
Experiment
4.3:
Packet
Sniffing
and
TCP
Session
Analysis
using
Wireshark
Module
5:
Application
Layer
(
10
Hours)
Theory:
·
DNS,
DHCP,
HTTP/HTTPS,
FTP,
SMTP,
POP3,
·
DNS
Poisoning,
HTTP
Vulnerabilities,
Protocols
and
Spoofing
Risks.
Practical:
Experiment
5.1:
Analyzing
Network
Protocols
using
Wireshark
Experiment
5.2:
Demonstration
of
DNS
Poisoning
Attack
(In
a
Simulated
Environment)
Experiment
5.3:
Spoofing
Demonstration
Module
6:
Network
Security
Basics
(10
Hours)
Theory:
·
Sniffing,
Spoofing,
MITM,
DOS/DDOS,
IDS/IPS,
·
VPN
and
Secure
Tunneling,
Wireless
Network
Security.
Practical:
Experiment 6.1: Packet Sniffing
and Spoofing using
Wireshark
and Scapy Experiment 6.2: MITM Attack and Detection
with Ettercap and IDS Experiment
6.3:
Setup
and
Configuration
of
a
VPN
with
Secure
Tunneling
Module
7:
Introduction
to
Cryptography
(10
hours)
Theory:
Practical:
·
History
of
Cryptography,
CIA,
Types
of
cryptography,
Encryption
Techniques,
·
Symmetric
key
Cryptography,
Asymmetric
Key
Cryptography,
Hashing
Techniques.
Experiment
7.1:
Implement
Caesar
Cipher
and
Vigenère
Cipher
(Classical
Encryption
Techniques)
Experiment
7.2:
Implement
Symmetric
Key
Encryption
using
AES
Algorithm
Experiment
7.3:
Implement
a
Hashing
Algorithm
using
SHA-
256
Recommended
Books:
1.
Computer
Networking:
A
Top-Down
Approach
by
Kurose
&
Ross
2.
Data
Communications
and
Networking
by
Behrouz
A.
Forouzan
3.
Cisco
Networking
Academy
materials
(NetAcad)
4.
Cryptography
and
Network
Security
by
William
Stallings
5.
Applied
Cryptography
by
Bruce
Schneier
Online
Resources:
1.
Online
Labs:
TryHackMe
-
Network
Fundamentals
Path,
[HackTheBox
Academy]
2.
Online
Labs:
CrypTool
,
OverTheWire:
Cryptography
challenges
Module 1: Introduction to Computer Networks (5 Hours)
Session 1: Introduction to course and course structure
Session 2 & 3 : Overview of Computer Networks & Types
Topics: Overview of Computer Networks, Types of Networks
(LAN, WAN, MAN, PAN), Network Topologies (Bus, Star, Ring, Mesh, Hybrid),
Network Devices (Hub, Switch, Router, Gateway)
PPT Link:
https://drive.google.com/file/d/1pOvMMClJw0V4TxoFYP4r0-6aYSdJHHDZ/view?usp=drive_link
Experiments:
•
Experiment
1.1: Study of Network Devices and Topologies
Lab Manual: https://drive.google.com/file/d/1E7Je_nGmYooM5SJiNpylvg2DymZHGhlt/view?usp=drive_link
Reference Video: https://youtu.be/3QhU9jd03a0
Session 4 & 5: ISO/OSI Model & TCP/IP Model
Topics: ISO/OSI Reference Model (7 Layers), TCP/IP Model (4
Layers), Comparison of OSI vs TCP/IP, Functions of Each Layer
PPT Link:
https://drive.google.com/file/d/1nEcNRmAxDUrt5Znqr4YHPfUypYaFz15M/view?usp=drive_link
Experiments:
•
Experiment
1.2: Simulation of OSI and TCP/IP Layers Using Packet Tracer
Lab Manual: https://drive.google.com/file/d/1H_UKItCY3XHTYSPukYr2oKxhKv_Pj8r9/view?usp=drive_link
Reference Video: https://youtu.be/vv4y_uOneC0
Session 6 & 7: Basics of Data Transmission & Encoding
Topics: Basics of Data Transmission, Analog vs Digital
Signals, Transmission Modes (Simplex, Half-Duplex, Full-Duplex), Encoding
Techniques
PPT Link: https://drive.google.com/file/d/17pXmOmGN4V32Ef_F6GmX_Whb60gOo5KW/view?usp=drive_link
Experiments:
•
Experiment
1.3: Demonstration of Data Transmission Using Encoding Techniques
Lab Manual: https://drive.google.com/file/d/1T-UC9CzfgAylfp9kgdupqFobuqtHIxk6/view?usp=drive_link
Reference Video: https://youtu.be/NvH54T_Fp60
Module 2: Physical & Data Link Layer
Session 8 & 9: MAC, LLC, Ethernet & IEEE 802 Standards
Topics: MAC and Logical Link Control (LLC), Ethernet and
IEEE 802 Standards, CSMA/CD, ARP and RARP Protocols
PPT Link: https://drive.google.com/file/d/15a-dwk38qr1GP1nE-weHKkiz4Ef508NK/view?usp=drive_link
Session 10
&11: Error Detection, Correction & Framing
Topics: Error Detection & Correction Techniques (CRC,
Checksum, Hamming Code), Framing Techniques, Flow Control (Stop-and-Wait,
Sliding Window)
PPT Link: https://drive.google.com/file/d/16AyIMmNklJZmDOYBhrntFmUts3FEIfIc/view?usp=drive_link
Session 12 &13: Error Detection, Correction & Framing
Experiments:
•
Experiment
2.1: Simulation of ARP and RARP Protocols
Lab Manual: https://drive.google.com/file/d/1Qr3YsUaS_r7jaNgZ_Is0lDbQ8lp0EG7n/view?usp=drive_link
•
Experiment
2.2: Implement Error Detection Using CRC and Checksum
Lab Manual: https://drive.google.com/file/d/1A8bSzKlQ3n2Axq4Dbv_iCOLzg3peQ3iB/view?usp=drive_link
•
Experiment
2.3: Study and Simulate Framing Techniques and Flow Control
Lab Manual: https://drive.google.com/file/d/1HWUgddpEs1sVHE-_tk5oNiomPZcztQqv/view?usp=drive_link
Reference Video: https://youtu.be/oMTH8R2SFMA
Session 13 &14: Error Detection, Correction & Framing
•
Experiment
2.2: Implement Error Detection Using CRC and Checksum
Lab manual: https://drive.google.com/file/d/1A8bSzKlQ3n2Axq4Dbv_iCOLzg3peQ3iB/view?usp=drive_link
•
Experiment
2.3: Study and Simulate Framing Techniques and Flow Control
Lab Manual: https://drive.google.com/file/d/1HWUgddpEs1sVHE-_tk5oNiomPZcztQqv/view?usp=drive_link
Reference Video: https://youtu.be/BEHmjHn9W7I
Module 3: Network Layer & IP Addressing (10 Hours)
Session15 &16: IP Addressing – IPv4 & IPv6
Topics: IP Addressing (IPv4 and IPv6), Classes of IP
Addresses, Public vs Private IP, Introduction to IPv6 and its advantages
PPT Link: https://drive.google.com/file/d/1dW4_Jn6KkMGvECRBBcCfnCd_tTH-LZjj/view?usp=drive_link
Experiments:
•
Experiment
3.1: Subnetting and IP Address Planning (IPv4 & IPv6)
Lab Manual: https://github.com/anshumanpattnaik/computer-networking-lab
Reference Video: https://youtu.be/rs0nL6mfFtQ
Session 17 &18 : Subnetting, Supernetting & CIDR
Topics: Subnetting Techniques, Subnet Mask Calculation,
Supernetting, CIDR (Classless Inter-Domain Routing), VLSM
PPT Link: https://drive.google.com/file/d/1s7dxDYWnx55kTEWAUWkQuubZKR3zUrfJ/view?usp=drive_link
Session 19 &20:
Supernetting & CIDR
Supernetting, CIDR (Classless Inter-Domain Routing), VLSM
PPT Link: https://drive.google.com/file/d/15lSYt4qqLFeG88wGyQPKWH25Fc6ayfrV/view?usp=drive_link
Experiments:
•
Experiment
3.1 (continued): Subnetting and IP Address Planning (IPv4 & IPv6)
Lab Manual: https://drive.google.com/file/d/1E6dBy0HkWjIFpySufkKE-_guNhtWR49Q/view?usp=drive_link
Reference Video: https://youtu.be/ecCuyq-Wprc
Session 21 & 22: IP Routing – Static & Dynamic, Routing Protocols
Topics: IP Routing (Static vs Dynamic), Routing Algorithms
(Distance Vector, Link State), Routing Protocols (RIP, OSPF, BGP, EIGRP)
PPT Link: https://drive.google.com/file/d/1DwTHUzmrtgV3PbDDISFpXjler_mL-Y2v/view?usp=drive_link
Session 23 &
24: IP Routing –Routing Protocols (3 hrs
)
Topics: Routing Protocols (RIP, OSPF, BGP, EIGRP)
Experiments:
•
Experiment
3.2: Configure Static and Dynamic IP Routing
Lab Manual: https://drive.google.com/file/d/1plnS3dbrq-8bl_13S1Z3KtQ5X3kjR4qC/view?usp=drive_linkReference
Video: https://youtu.be/AkxqkoxErRk
Session 26 & 27: NAT, PAT, and ICMP
Topics: Network Address Translation (NAT), Port Address
Translation (PAT), ICMP Protocol, Ping and Traceroute commands
PPT Link: https://drive.google.com/file/d/1__V1DJkYeLg0vramb9SQuXez3FZ8GuPC/view?usp=drive_link
Experiment 3.3: NAT, PAT, and ICMP Testing (Ping &
Traceroute)
Lab Manual: https://drive.google.com/file/d/1Ae0Egimzxwy3ny_mUxub6PNtbMUS2lpS/view?usp=drive_link
Reference Video: https://youtu.be/wW2A5SZ3GkI
Module 4: Transport Layer (7 Hours)
Session 25 &26: TCP and UDP Protocols
Topics: TCP (Transmission Control Protocol) vs UDP (User
Datagram Protocol)
PPT Link : https://drive.google.com/file/d/1jT2kDeEtzFJXamv0sSzrn8YV-Jlany1Z/view?usp=drive_link
Session 27
&28: TCP and UDP Protocols
:
Port Numbers and Sockets, TCP Three-Way Handshake,
Connection Establishment and Termination
PPT Link: https://drive.google.com/file/d/1bXYFwJ_7sTeNdF_OJoWjTjvonBLZJZO9/view?usp=drive_link
Experiments:
•
Experiment
4.1: Study and Comparison of TCP and UDP Protocols using Socket Programming
Lab Manual: https://drive.google.com/file/d/137iJyWi7sDZ3J8libDKzTB7_4ns0fCbl/view?usp=drive_link
Reference Video: https://youtu.be/uwoD5YsGACg
Session 29 & 30: Flow Control
Topics: Flow Control Mechanisms (Stop-and-Wait, Go-Back-N,
Selective Repeat),
PPT Link : https://drive.google.com/file/d/1O0AjXZmaWghOnxrBP2izRLZ_vkbUnEJE/view?usp=drive_link
Session 31 &
32: Congestion Control
Congestion Control (Slow Start, Congestion Avoidance, Fast
Retransmit), Sliding Window Protocol
PPT Link: https://drive.google.com/file/d/1QG7DGfvAaMZ_Ar8XvwAeAw0MJGLnG7Ty/view?usp=drive_link
Experiments:
•
Experiment
4.2: Demonstration of Flow Control and Congestion Control using NS2/NS3 or
Cisco Packet Tracer
Lab Manual: https://drive.google.com/file/d/1u619y2PMg2vRoar9DQWqnCvVZBjQBJJU/view?usp=drive_link
Reference Video: https://youtu.be/7vT9HEVVEGA
Session 33& 34 : Packet Sniffing & TCP Session Analysis
Topics: Introduction to Wireshark, Capturing and Analyzing
Packets,
PPT Link: https://drive.google.com/file/d/1j_SmW0TLH6L0eczzWBOtSZsF1JUSG54l/view?usp=drive_link
Session 31 & 32 : Packet Sniffing & TCP Session Analysis (2 hrs)
Topics: TCP Session Hijacking Basics, Understanding Network
Traffic Patterns
PPT Link: https://drive.google.com/file/d/1jVlJGm4LpUeYbHJm5s1kLbOT0OUH5CPw/view?usp=drive_link
Experiments:
•
Experiment
4.3: Packet Sniffing and TCP Session Analysis using Wireshark
Lab Manual: https://drive.google.com/file/d/19xvrLT6UPvy_kc6TuSmfkOEbCyzClxbe/view?usp=drive_link
Reference Video: https://youtu.be/lb1Dw0elw0Q
Module 5: Application Layer
Session 32 & 33: DNS
Topics: Domain Name System (DNS) – How DNS works, DNS Record
Types (A, MX, CNAME, PTR),
Session 34 & 35: DHCP
DHCP (Dynamic Host
Configuration Protocol), DNS and DHCP configuration
PPT Link: https://drive.google.com/file/d/1Wut7-qcV-SKaayJ4F2XHYK3oMG15103x/view?usp=drive_link
Session 36 & 37: DNS & DHCP
Experiments:
•
Experiment
5.1: Analyzing Network Protocols using Wireshark
Lab Manual: https://drive.google.com/file/d/1DAjv-6wQqMEscQ7DjbsPxAV00lV68mgt/view?usp=drive_link
Reference Video: https://youtu.be/Rck3BALhI5A
Session 38 & 39 : HTTP/HTTPS and
FTP Protocols
Topics: HTTP Protocol (Request/Response Model, Status Codes,
Methods), HTTPS and TLS/SSL,
Session 40 & 41
: FTP Protocols
FTP (File Transfer
Protocol) and SFTP, HTTP Vulnerabilities (Man-in-the-Middle, Replay Attacks)
PPT Link: https://www.slideshare.net/nupoor_narvekar/computer-networks-complete-notes
Experiments:
•
Experiment
5.1 (continued): Analyzing Network Protocols using Wireshark
Lab Manual: https://drive.google.com/file/d/1DAjv-6wQqMEscQ7DjbsPxAV00lV68mgt/view?usp=drive_link
Reference Video: https://youtu.be/po3zYOe58O4
Session 42 & 43: Email Protocols – SMTP, POP3, IMAP & Spoofing
Topics: SMTP (Simple Mail Transfer Protocol), POP3 and IMAP,
Email Header Analysis, Email Spoofing and Phishing
PPT Link:
https://docs.google.com/presentation/d/17mZ-LcoouHjsMfKLxvdBLiNHnLqarhkD/edit?usp=drive_link&ouid=103026057408215205153&rtpof=true&sd=true
Experiments:
•
Experiment
5.3: Email Spoofing Demonstration
Lab Manual: https://drive.google.com/file/d/1rCzNBQn1WO9s4rTtKw725250kg5IsI3A/view?usp=drive_link
Reference Video: https://youtu.be/uLMFUKXj_j0
Session 39 & 40 : DNS Poisoning & Application Layer Attacks
Topics: DNS Poisoning/Cache Poisoning, DNS Amplification
Attack, Mitigating Application Layer Attacks, Secure DNS (DNSSEC)
PPT Link:
https://drive.google.com/file/d/1tyCBNLNIP3zdATX0-CqjqL3EK_F-nYw2/view?usp=drive_link
Session 41 :
Application Layer Attacks:
Mitigating Application Layer Attacks, Secure DNS (DNSSEC)
Session 42& 43 : DNS Poisoning & Application Layer Attacks
Experiment
•
Experiment
5.3: Email Spoofing Demonstration
Lab Manual: https://drive.google.com/file/d/1rCzNBQn1WO9s4rTtKw725250kg5IsI3A/view?usp=drive_link
Reference Video: https://youtu.be/uLMFUKXj_j0
Experiments:
•
Experiment
5.2: Demonstration of DNS Poisoning Attack (In a Simulated Environment)
Lab Manual: https://github.com/anshumanpattnaik/computer-networking-lab
Reference Video: https://youtu.be/7MT1F2V2JI8
Module 6: Network Security Basics (10 Hours)
Session 43 & 44 : Sniffing, Spoofing &
Topics: Packet Sniffing, MAC/IP Spoofing, Man-in-the-Middle
(MITM) Attacks, ARP Poisoning, Practical Demonstrations with Wireshark and
Scapy
PPT Link: https://docs.google.com/presentation/d/1wzlns6eVowVwtYbfEUe2Y3dqNAl4Ek2R/edit?usp=drive_link&ouid=103026057408215205153&rtpof=true&sd=true
Session 45 &
46 MITM Attacks
Man-in-the-Middle (MITM) Attacks, ARP Poisoning, Practical
Demonstrations with Wireshark and Scapy
Experiments:
•
Experiment
6.1: Packet Sniffing and Spoofing using Wireshark and Scapy
Lab Manual: https://drive.google.com/file/d/1ISgZ69phvIWH_UvHKjwKTmN_dTZLb3Ia/view?usp=drive_link
Reference Video: https://youtu.be/Iqq4Z8XNBuI
Session 47 & 48: DoS/DDoS, IDS/IPS & Network Defense
Topics: DoS and DDoS Attacks, Botnets and Attack Vectors,
Intrusion Detection System (IDS) and
Session 49 &
50: DoS/DDoS, IDS/IPS & Network Defense
Intrusion Prevention
System (IPS), Signature-based vs Anomaly-based Detection, Tools: Snort,
Suricata, Ettercap
PPT Link: https://drive.google.com/file/d/15NIJB8VmG-YZUbFYULVS2ZHvJgZSTg2c/view?usp=drive_link
Experiments:
•
Experiment
6.2: MITM Attack and Detection with Ettercap and IDS
Lab Manual: https://drive.google.com/file/d/1IOvMUbovDu_Gq_z6rZHe4prQVzhouYQH/view?usp=drive_linkReference
Video: https://youtu.be/l9lj9g3tFJo
Session 51 & 52: VPN, Wireless Security & Secure Tunneling
Topics: VPN (Virtual Private Network), IPSec and SSL VPN,
PPT Link: https://docs.google.com/presentation/d/108YbdbfqPCFX-1ERT7H_OX3eUeD7DTRa/edit?usp=drive_link&ouid=103026057408215205153&rtpof=true&sd=true
Session 53 & 54: VPN, Wireless Security & Secure Tunneling
Wireless Network Security (WPA2/WPA3), 802.1X
Authentication, Secure Tunneling Protocols
PPT Link: https://drive.google.com/file/d/1ay8pap-4ufSq_aDY2AtS1WL3RW0GIGzu/view?usp=drive_link
Experiments:
•
Experiment
6.3: Setup and Configuration of a VPN with Secure Tunneling
Lab Manual: https://drive.google.com/file/d/1xTDHAmbBztCp_2O24l0E6Se6LIrtePg7/view?usp=drive_link
Reference Video: https://youtu.be/R-JUOpCgTZc
Module 7: Introduction to Cryptography (10 Hours)
Session 48 & 49 : History of Cryptography & Classical Techniques
Topics: History of Cryptography, CIA Triad in Cryptography, Classical
Encryption (Caesar Cipher, Vigenere Cipher)
PPT Link: https://docs.google.com/presentation/d/1XY-gQb8WOS7X023yM7qehVsak0AeX7EY/edit?usp=drive_link&ouid=103026057408215205153&rtpof=true&sd=true
z
Session 50 & 51
: History of Cryptography & Classical Techniques
Classical Encryption (Substitution Cipher), Cryptanalysis
Basics
PPT Link: https://drive.google.com/file/d/1X3gMeqjYpnavS6HZ-kZb13NP1HZVwqfg/view?usp=drive_link
Experiments:
•
Experiment
7.1: Implement Caesar Cipher and Vigenère Cipher (Classical Encryption
Techniques)
Lab Manual: https://drive.google.com/file/d/1VELcpY7tmvTRUjXvHOnqr92wK9VQ0-WS/view?usp=drive_link
Reference Video: https://youtu.be/AQDCe585Lnc
Session 52 & 53: Symmetric Key Cryptography – AES, DES
Topics: Types of Cryptography (Symmetric, Asymmetric,
Hashing), Symmetric Key Algorithms (DES, 3DES, AES), Key Management, Block
Cipher Modes (ECB, CBC, GCM)
PPT Link: https://drive.google.com/file/d/1OkcTht6cPJBxih-oE6vzIAuxp8njWPXj/view?usp=drive_link
Experiments:
•
Experiment
7.2: Implement Symmetric Key Encryption using AES Algorithm
Lab Manual: https://drive.google.com/file/d/1u-SPHw_-w3nBT290wIia3OguhKjJTgiG/view?usp=drive_link
Reference Video: https://youtu.be/O4xNJsjtN6E
Session 54 & 55: Asymmetric Key Cryptography & Hashing
Topics: Asymmetric Key Cryptography (RSA, ECC,
Diffie-Hellman),
Session 56 &
57: Hashing
Public and Private Keys, Digital Signatures,
Session 58 &
59: Hashing
Hashing Algorithms (MD5, SHA-1, SHA-256), Hash Collision
PPT Link: https://www.slideshare.net/nupoor_narvekar/computer-networks-complete-notes
Experiments:
•
Experiment
7.3: Implement a Hashing Algorithm using SHA-256
Lab Manual: https://drive.google.com/file/d/148hH9HJfe1Pfgh39NuRAc67uCCKkl41A/view?usp=drive_link
Reference Video: https://youtu.be/AH7OFSBN-AQ
Learning Materials – Computer Networks:
Textbooks:
•
Computer
Networking: A Top-Down Approach by Kurose & Ross
•
Data
Communications and Networking by Behrouz A. Forouzan
•
Cryptography
and Network Security by William Stallings
Web Resources:
Cisco Networking Academy
(Free Courses)
Professor Messer
Network+ Free Course
TryHackMe
– Network Fundamentals Path
GeeksforGeeks
– Computer Networks
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Session Plan & Materials
No materials published yet.
