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Network Traffic using Wireshark

Network Traffic using Wireshark

Network Traffic using Wireshark

This project demonstrates the analysis of network traffic using Wireshark to understand how systems communicate across a network and how common protocols appear during normal web activity.

This project demonstrates the analysis of network traffic using Wireshark to understand how systems communicate across a network and how common protocols appear during normal web activity.

CHALLENGES

CHALLENGES

One of the main challenges in this project was managing and analysing a large volume of captured packet data, which made it difficult to quickly identify meaningful patterns. This required the effective use of Wireshark display filters and analysis tools to isolate relevant traffic such as DNS queries, TCP connections, and UDP packets.

One of the main challenges in this project was managing and analysing a large volume of captured packet data, which made it difficult to quickly identify meaningful patterns. This required the effective use of Wireshark display filters and analysis tools to isolate relevant traffic such as DNS queries, TCP connections, and UDP packets.

RESULTS

RESULTS

The analysis successfully identified and visualised key network communication patterns during normal web browsing. DNS activity was clearly observed for domain resolution, TCP handshakes were tracked for connection establishment, and encrypted traffic using TLS and QUIC was identified. The use of Wireshark analysis features enabled clear interpretation of the most active protocols and communicating endpoints, providing practical insight into real world network behaviour. The project ultimately demonstrated strong skills in packet capture, protocol analysis, and network traffic investigation.

Project Repository: https://github.com/Enowon/wireshark-network-traffic-analysis.git

The analysis successfully identified and visualised key network communication patterns during normal web browsing. DNS activity was clearly observed for domain resolution, TCP handshakes were tracked for connection establishment, and encrypted traffic using TLS and QUIC was identified. The use of Wireshark analysis features enabled clear interpretation of the most active protocols and communicating endpoints, providing practical insight into real world network behaviour. The project ultimately demonstrated strong skills in packet capture, protocol analysis, and network traffic investigation.

Project Repository: https://github.com/Enowon/wireshark-network-traffic-analysis.git

CONTACT

Reach out to discuss entry-level SOC roles, Internships, or cybersecurity collaborations

ceceenowon@gmail.com

+44 7823 742289

www.linkedin.com/in/faith-okonoboh

OKONOBOH

OKONOBOH

OKONOBOH

CONTACT

Reach out to discuss entry-level SOC roles, Internships, or cybersecurity collaborations

ceceenowon@gmail.com

+44 7823 742289

www.linkedin.com/in/faith-okonoboh

CONTACT

Reach out to discuss entry-level SOC roles, Internships, or cybersecurity collaborations

ceceenowon@gmail.com

+44 7823 742289

www.linkedin.com/in/faith-okonoboh

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