โ
JavaScript Acronyms You MUST Know ๐ป๐ฅ
JS โ JavaScript
ES โ ECMAScript
DOM โ Document Object Model
BOM โ Browser Object Model
JSON โ JavaScript Object Notation
AJAX โ Asynchronous JavaScript And XML
API โ Application Programming Interface
SPA โ Single Page Application
MPA โ Multi Page Application
SSR โ Server Side Rendering
CSR โ Client Side Rendering
TS โ TypeScript
NPM โ Node Package Manager
NPX โ Node Package Execute
CDN โ Content Delivery Network
IIFE โ Immediately Invoked Function Expression
HOF โ Higher Order Function
MVC โ Model View Controller
MVVM โ Model View ViewModel
V8 โ Google JavaScript Engine
REPL โ Read Evaluate Print Loop
CORS โ Cross Origin Resource Sharing
JWT โ JSON Web Token
SSE โ Server Sent Events
WS โ WebSocket
@Cybertechns
@Cybertechns
JS โ JavaScript
ES โ ECMAScript
DOM โ Document Object Model
BOM โ Browser Object Model
JSON โ JavaScript Object Notation
AJAX โ Asynchronous JavaScript And XML
API โ Application Programming Interface
SPA โ Single Page Application
MPA โ Multi Page Application
SSR โ Server Side Rendering
CSR โ Client Side Rendering
TS โ TypeScript
NPM โ Node Package Manager
NPX โ Node Package Execute
CDN โ Content Delivery Network
IIFE โ Immediately Invoked Function Expression
HOF โ Higher Order Function
MVC โ Model View Controller
MVVM โ Model View ViewModel
V8 โ Google JavaScript Engine
REPL โ Read Evaluate Print Loop
CORS โ Cross Origin Resource Sharing
JWT โ JSON Web Token
SSE โ Server Sent Events
WS โ WebSocket
@Cybertechns
@Cybertechns
โค1
๐งฎ $40/day ร 30 days = $1,200/month.
That's what my students average.
From their phone. In 10 minutes a day.
No degree needed.
No investment knowledge required.
Just Copy & Paste my moves.
I'm Tania, and this is real.
๐ Join for Free, Click here
#ad๐ข InsideAd
That's what my students average.
From their phone. In 10 minutes a day.
No degree needed.
No investment knowledge required.
Just Copy & Paste my moves.
I'm Tania, and this is real.
๐ Join for Free, Click here
#ad
Please open Telegram to view this post
VIEW IN TELEGRAM
Cybersecurity Roadmap
|
|-- Fundamentals
| |-- Introduction to Cybersecurity
| | |-- Importance and Principles of Cybersecurity
| | |-- Types of Cybersecurity (Network, Information, Application, Cloud, etc.)
| | |-- Cybersecurity Threat Landscape (Malware, Phishing, Ransomware, etc.)
| |-- Network Security
| | |-- Firewalls and VPNs
| | |-- Intrusion Detection Systems (IDS)
| | |-- Intrusion Prevention Systems (IPS)
| | |-- Network Access Control
|
|-- Threats and Vulnerabilities
| |-- Types of Cyber Threats
| | |-- Malware (Viruses, Worms, Trojans, etc.)
| | |-- Phishing and Social Engineering
| | |-- Denial of Service (DoS) Attacks
| | |-- Insider Threats
| |-- Vulnerability Assessment
| | |-- Vulnerability Scanning
| | |-- Penetration Testing (Ethical Hacking)
| | |-- Security Audits and Assessments
|
|-- Encryption and Cryptography
| |-- Introduction to Cryptography
| | |-- Symmetric and Asymmetric Encryption
| | |-- Hashing Algorithms (SHA, MD5, etc.)
| | |-- Public Key Infrastructure (PKI)
| |-- Encryption Protocols
| | |-- SSL/TLS
| | |-- IPsec
|
|-- Identity and Access Management (IAM)
| |-- Authentication Mechanisms
| | |-- Password Policies and Multi-Factor Authentication (MFA)
| | |-- Biometric Authentication
| |-- Access Control Models
| | |-- Role-Based Access Control (RBAC)
| | |-- Attribute-Based Access Control (ABAC)
| | |-- Mandatory Access Control (MAC)
|
|-- Incident Response and Forensics
| |-- Incident Response Process
| | |-- Detection, Containment, Eradication, Recovery
| | |-- Incident Response Teams (CSIRT)
| |-- Digital Forensics
| | |-- Evidence Collection and Preservation
| | |-- Data Recovery
| | |-- Forensic Tools (Autopsy, EnCase, etc.)
|
|-- Security Operations
| |-- Security Monitoring
| | |-- Security Information and Event Management (SIEM)
| | |-- Log Management and Analysis
| | |-- Threat Intelligence
| |-- Security Operations Center (SOC)
| | |-- SOC Roles and Responsibilities
| | |-- Incident Management
|
|-- Cloud Security
| |-- Cloud Security Principles
| | |-- Shared Responsibility Model
| | |-- Data Protection in Cloud Environments
| |-- Cloud Security Tools
| | |-- Cloud Access Security Brokers (CASB)
| | |-- Security in Cloud Platforms (AWS, Azure, Google Cloud)
|
|-- Application Security
| |-- Secure Software Development
| | |-- Secure Coding Practices
| | |-- Software Development Life Cycle (SDLC)
| | |-- Secure Code Reviews
| |-- Web Application Security
| | |-- OWASP Top 10
| | |-- SQL Injection, Cross-Site Scripting (XSS), CSRF
|
|-- Compliance and Regulations
| |-- Cybersecurity Standards
| | |-- ISO/IEC 27001, NIST Cybersecurity Framework
| | |-- CIS Controls, SOC 2
| |-- Data Privacy Regulations
| | |-- GDPR
| | |-- HIPAA, CCPA, PCI DSS
|
|-- Advanced Topics
| |-- Advanced Persistent Threats (APT)
| | |-- Detection and Mitigation
| | |-- Threat Hunting
| |-- Blockchain Security
| | |-- Cryptographic Principles
| | |-- Smart Contracts and Security
| |-- IoT Security
| | |-- Securing IoT Devices
| | |-- Network Segmentation for IoT
|
|-- Emerging Trends
| |-- AI and Machine Learning in Cybersecurity
| | |-- AI-Based Threat Detection
| | |-- Automating Incident Response
| |-- Zero Trust Architecture
| | |-- Principles of Zero Trust
| | |-- Implementing Zero Trust in an Organization
|
|-- Soft Skills
| |-- Communication and Collaboration
| | |-- Reporting Security Incidents
| | |-- Collaboration with Other Departments
| |-- Ethical Hacking
| | |-- Red Teaming and Blue Teaming
| | |-- Bug Bounty Programs
Free CyberSecurity Course For FREE
Link 1 :https://bit.ly/3pXTXBZ
Link 2 :https://bit.ly/3NV6n5S
link 3 :https://bit.ly/3BfUukD
link 4 :https://bit.ly/3OiMUNC
link 5 :https://bit.ly/46Ltbxk
Join @free4unow_backup for more free resources.
ENJOY LEARNING ๐๐
@Cybertechns
|
|-- Fundamentals
| |-- Introduction to Cybersecurity
| | |-- Importance and Principles of Cybersecurity
| | |-- Types of Cybersecurity (Network, Information, Application, Cloud, etc.)
| | |-- Cybersecurity Threat Landscape (Malware, Phishing, Ransomware, etc.)
| |-- Network Security
| | |-- Firewalls and VPNs
| | |-- Intrusion Detection Systems (IDS)
| | |-- Intrusion Prevention Systems (IPS)
| | |-- Network Access Control
|
|-- Threats and Vulnerabilities
| |-- Types of Cyber Threats
| | |-- Malware (Viruses, Worms, Trojans, etc.)
| | |-- Phishing and Social Engineering
| | |-- Denial of Service (DoS) Attacks
| | |-- Insider Threats
| |-- Vulnerability Assessment
| | |-- Vulnerability Scanning
| | |-- Penetration Testing (Ethical Hacking)
| | |-- Security Audits and Assessments
|
|-- Encryption and Cryptography
| |-- Introduction to Cryptography
| | |-- Symmetric and Asymmetric Encryption
| | |-- Hashing Algorithms (SHA, MD5, etc.)
| | |-- Public Key Infrastructure (PKI)
| |-- Encryption Protocols
| | |-- SSL/TLS
| | |-- IPsec
|
|-- Identity and Access Management (IAM)
| |-- Authentication Mechanisms
| | |-- Password Policies and Multi-Factor Authentication (MFA)
| | |-- Biometric Authentication
| |-- Access Control Models
| | |-- Role-Based Access Control (RBAC)
| | |-- Attribute-Based Access Control (ABAC)
| | |-- Mandatory Access Control (MAC)
|
|-- Incident Response and Forensics
| |-- Incident Response Process
| | |-- Detection, Containment, Eradication, Recovery
| | |-- Incident Response Teams (CSIRT)
| |-- Digital Forensics
| | |-- Evidence Collection and Preservation
| | |-- Data Recovery
| | |-- Forensic Tools (Autopsy, EnCase, etc.)
|
|-- Security Operations
| |-- Security Monitoring
| | |-- Security Information and Event Management (SIEM)
| | |-- Log Management and Analysis
| | |-- Threat Intelligence
| |-- Security Operations Center (SOC)
| | |-- SOC Roles and Responsibilities
| | |-- Incident Management
|
|-- Cloud Security
| |-- Cloud Security Principles
| | |-- Shared Responsibility Model
| | |-- Data Protection in Cloud Environments
| |-- Cloud Security Tools
| | |-- Cloud Access Security Brokers (CASB)
| | |-- Security in Cloud Platforms (AWS, Azure, Google Cloud)
|
|-- Application Security
| |-- Secure Software Development
| | |-- Secure Coding Practices
| | |-- Software Development Life Cycle (SDLC)
| | |-- Secure Code Reviews
| |-- Web Application Security
| | |-- OWASP Top 10
| | |-- SQL Injection, Cross-Site Scripting (XSS), CSRF
|
|-- Compliance and Regulations
| |-- Cybersecurity Standards
| | |-- ISO/IEC 27001, NIST Cybersecurity Framework
| | |-- CIS Controls, SOC 2
| |-- Data Privacy Regulations
| | |-- GDPR
| | |-- HIPAA, CCPA, PCI DSS
|
|-- Advanced Topics
| |-- Advanced Persistent Threats (APT)
| | |-- Detection and Mitigation
| | |-- Threat Hunting
| |-- Blockchain Security
| | |-- Cryptographic Principles
| | |-- Smart Contracts and Security
| |-- IoT Security
| | |-- Securing IoT Devices
| | |-- Network Segmentation for IoT
|
|-- Emerging Trends
| |-- AI and Machine Learning in Cybersecurity
| | |-- AI-Based Threat Detection
| | |-- Automating Incident Response
| |-- Zero Trust Architecture
| | |-- Principles of Zero Trust
| | |-- Implementing Zero Trust in an Organization
|
|-- Soft Skills
| |-- Communication and Collaboration
| | |-- Reporting Security Incidents
| | |-- Collaboration with Other Departments
| |-- Ethical Hacking
| | |-- Red Teaming and Blue Teaming
| | |-- Bug Bounty Programs
Free CyberSecurity Course For FREE
Link 1 :https://bit.ly/3pXTXBZ
Link 2 :https://bit.ly/3NV6n5S
link 3 :https://bit.ly/3BfUukD
link 4 :https://bit.ly/3OiMUNC
link 5 :https://bit.ly/46Ltbxk
Join @free4unow_backup for more free resources.
ENJOY LEARNING ๐๐
@Cybertechns
โค6
โ
Cybersecurity Basics You Should Know ๐ก๏ธ๐ป
Cybersecurity is the practice of protecting systems, networks, and data from digital attacks. As the world goes digital, this is one of the most critical and high-paying fields in tech.
1๏ธโฃ What is Cybersecurity?
The body of technologies, processes, and practices designed to protect networks, devices, programs, and data from attack, damage, or unauthorized access.
2๏ธโฃ The CIA Triad (Core Pillars):
- Confidentiality โ Ensuring only authorized users access data.
- Integrity โ Ensuring data is accurate and has not been tampered with.
- Availability โ Ensuring systems and data are accessible when needed.
3๏ธโฃ Key Domains of Security:
- Network Security โ Protecting traffic and infrastructure.
- Application Security โ Ensuring software is free from vulnerabilities.
- Cloud Security โ Protecting data on platforms like AWS, Azure, and GCP.
- Endpoint Security โ Securing devices like laptops and mobile phones.
- Identity & Access Management (IAM) โ Managing user permissions.
4๏ธโฃ Common Cyber Threats:
- Phishing โ Fake emails used to steal credentials.
- Ransomware โ Malware that locks data until a ransom is paid.
- Malware โ Viruses, worms, and trojans.
- DDoS Attack โ Overloading a server to crash it.
- Man-in-the-Middle (MITM) โ Intercepting private communications.
5๏ธโฃ Essential Security Tools:
- Wireshark โ Packet analysis and network troubleshooting.
- Nmap โ Network scanning and discovery.
- Metasploit โ Pentesting and exploitation framework.
- Splunk / Microsoft Sentinel โ SIEM tools for monitoring logs.
- Burp Suite โ Web application security testing.
6๏ธโฃ Defensive Strategies (Blue Teaming):
- Firewalls & VPNs โ Blocking unauthorized traffic.
- Multi-Factor Authentication (MFA) โ Adding an extra layer of login security.
- Patch Management โ Keeping software updated to fix bugs.
- Zero Trust โ "Never trust, always verify" approach.
7๏ธโฃ Popular Certifications:
- CompTIA Security+ โ Best for beginners.
- CEH (Certified Ethical Hacker) โ Focusing on offensive tactics.
- CISSP โ Gold standard for management and pros.
- OSCP โ Hands-on certification for penetration testers.
8๏ธโฃ Career Roles in Security:
- SOC Analyst โ Monitoring and responding to threats.
- Penetration Tester โ Ethical hacker hired to find holes.
- Security Architect โ Designing secure network systems.
- Incident Responder โ The "firefighter" who reacts to data breaches.
9๏ธโฃ Benefits of a Career in Security:
- High job security (demand is everywhere).
- Lucrative salaries.
- Constant learning and problem-solving.
- Ability to work remotely in many roles.
๐ How to Start?
1. Learn Networking basics (TCP/IP).
2. Understand Linux/Unix command line.
3. Learn a scripting language like Python.
4. Practice on platforms like TryHackMe or HackTheBox.
@Cybertechns
Cybersecurity is the practice of protecting systems, networks, and data from digital attacks. As the world goes digital, this is one of the most critical and high-paying fields in tech.
1๏ธโฃ What is Cybersecurity?
The body of technologies, processes, and practices designed to protect networks, devices, programs, and data from attack, damage, or unauthorized access.
2๏ธโฃ The CIA Triad (Core Pillars):
- Confidentiality โ Ensuring only authorized users access data.
- Integrity โ Ensuring data is accurate and has not been tampered with.
- Availability โ Ensuring systems and data are accessible when needed.
3๏ธโฃ Key Domains of Security:
- Network Security โ Protecting traffic and infrastructure.
- Application Security โ Ensuring software is free from vulnerabilities.
- Cloud Security โ Protecting data on platforms like AWS, Azure, and GCP.
- Endpoint Security โ Securing devices like laptops and mobile phones.
- Identity & Access Management (IAM) โ Managing user permissions.
4๏ธโฃ Common Cyber Threats:
- Phishing โ Fake emails used to steal credentials.
- Ransomware โ Malware that locks data until a ransom is paid.
- Malware โ Viruses, worms, and trojans.
- DDoS Attack โ Overloading a server to crash it.
- Man-in-the-Middle (MITM) โ Intercepting private communications.
5๏ธโฃ Essential Security Tools:
- Wireshark โ Packet analysis and network troubleshooting.
- Nmap โ Network scanning and discovery.
- Metasploit โ Pentesting and exploitation framework.
- Splunk / Microsoft Sentinel โ SIEM tools for monitoring logs.
- Burp Suite โ Web application security testing.
6๏ธโฃ Defensive Strategies (Blue Teaming):
- Firewalls & VPNs โ Blocking unauthorized traffic.
- Multi-Factor Authentication (MFA) โ Adding an extra layer of login security.
- Patch Management โ Keeping software updated to fix bugs.
- Zero Trust โ "Never trust, always verify" approach.
7๏ธโฃ Popular Certifications:
- CompTIA Security+ โ Best for beginners.
- CEH (Certified Ethical Hacker) โ Focusing on offensive tactics.
- CISSP โ Gold standard for management and pros.
- OSCP โ Hands-on certification for penetration testers.
8๏ธโฃ Career Roles in Security:
- SOC Analyst โ Monitoring and responding to threats.
- Penetration Tester โ Ethical hacker hired to find holes.
- Security Architect โ Designing secure network systems.
- Incident Responder โ The "firefighter" who reacts to data breaches.
9๏ธโฃ Benefits of a Career in Security:
- High job security (demand is everywhere).
- Lucrative salaries.
- Constant learning and problem-solving.
- Ability to work remotely in many roles.
๐ How to Start?
1. Learn Networking basics (TCP/IP).
2. Understand Linux/Unix command line.
3. Learn a scripting language like Python.
4. Practice on platforms like TryHackMe or HackTheBox.
@Cybertechns
โค5
โ
Complete Cybersecurity Roadmap ๐๐ป
Week 1: Basics of Cybersecurity
โข What is cybersecurity why it matters
โข Types of hackers (White, Black, Grey)
โข CIA Triad (Confidentiality, Integrity, Availability)
โข Common cyber threats (malware, phishing, ransomware)
โข Basic networking concepts (IP, DNS, HTTP/HTTPS)
Example: Identify phishing emails vs real emails
โ Outcome: You understand cybersecurity basics.
Week 2: Networking Fundamentals ๐
โข OSI Model (7 layers)
โข TCP/IP model
โข Ports protocols (HTTP, FTP, SSH)
โข DNS, DHCP basics
โข Packet flow understanding
Example: How data travels from browser to server
โ Outcome: You understand network basics.
Week 3: Linux for Hackers ๐ง
โข Install Kali Linux / Ubuntu
โข Basic terminal commands (ls, cd, grep, chmod)
โข File permissions
โข Package management
โข Bash basics
Example: Navigate directories and manage files
โ Outcome: You can use Linux for cybersecurity.
Week 4: Web Fundamentals ๐
โข How websites work (Frontend vs Backend)
โข HTTP requests responses
โข Cookies, sessions
โข Basics of APIs
โข Introduction to web vulnerabilities
Example: Inspect request using browser DevTools
โ Outcome: You understand web basics.
Week 5: Vulnerabilities OWASP Top 10 ๐ฅ
โข SQL Injection
โข XSS (Cross-site scripting)
โข CSRF
โข Broken authentication
โข Security misconfigurations
Example: Understand how SQL injection works
โ Outcome: You know common web vulnerabilities.
Week 6: Ethical Hacking Basics ๐ง
โข Footprinting reconnaissance
โข Scanning networks (Nmap)
โข Enumeration
โข Exploitation basics
โข Introduction to Metasploit
Example: Scan open ports on a target system
โ Outcome: You can perform basic hacking.
Week 7: Cryptography ๐
โข Encryption vs hashing
โข Symmetric vs asymmetric encryption
โข SSL/TLS basics
โข Hashing algorithms (MD5, SHA)
โข Password security
Example: Hash passwords and verify
โ Outcome: You understand cryptography basics.
Week 8: System Security ๐ฅ๏ธ
โข Windows Linux security basics
โข Firewalls antivirus
โข User authentication
โข File system security
โข Hardening systems
Example: Configure firewall rules
โ Outcome: You can secure systems.
Week 9: Network Security ๐
โข Firewalls, IDS, IPS
โข VPN basics
โข Network attacks (MITM, DoS, DDoS)
โข Secure network design
Example: Simulate basic network attack concepts
โ Outcome: You understand network security.
Week 10: Tools Practical Skills ๐ ๏ธ
โข Wireshark (packet analysis)
โข Burp Suite (web testing)
โข Nmap (network scanning)
โข Nikto, Hydra basics
Example: Capture and analyze packets
โ Outcome: You can use cybersecurity tools.
Week 11: Mini Projects ๐
โข Perform vulnerability assessment
โข Build a secure network setup
โข Practice CTF challenges
โข Bug bounty basics
Examples: Scan a website for vulnerabilities, Analyze network traffic
โ Outcome: You can apply cybersecurity skills.
Week 12: Final Preparation ๐ฏ
โข Revise all concepts
โข Practice labs (TryHackMe, Hack The Box)
โข Learn report writing
โข Prepare for interviews
โ Outcome: You are ready for cybersecurity roles.
@Cybertechns
Week 1: Basics of Cybersecurity
โข What is cybersecurity why it matters
โข Types of hackers (White, Black, Grey)
โข CIA Triad (Confidentiality, Integrity, Availability)
โข Common cyber threats (malware, phishing, ransomware)
โข Basic networking concepts (IP, DNS, HTTP/HTTPS)
Example: Identify phishing emails vs real emails
โ Outcome: You understand cybersecurity basics.
Week 2: Networking Fundamentals ๐
โข OSI Model (7 layers)
โข TCP/IP model
โข Ports protocols (HTTP, FTP, SSH)
โข DNS, DHCP basics
โข Packet flow understanding
Example: How data travels from browser to server
โ Outcome: You understand network basics.
Week 3: Linux for Hackers ๐ง
โข Install Kali Linux / Ubuntu
โข Basic terminal commands (ls, cd, grep, chmod)
โข File permissions
โข Package management
โข Bash basics
Example: Navigate directories and manage files
โ Outcome: You can use Linux for cybersecurity.
Week 4: Web Fundamentals ๐
โข How websites work (Frontend vs Backend)
โข HTTP requests responses
โข Cookies, sessions
โข Basics of APIs
โข Introduction to web vulnerabilities
Example: Inspect request using browser DevTools
โ Outcome: You understand web basics.
Week 5: Vulnerabilities OWASP Top 10 ๐ฅ
โข SQL Injection
โข XSS (Cross-site scripting)
โข CSRF
โข Broken authentication
โข Security misconfigurations
Example: Understand how SQL injection works
โ Outcome: You know common web vulnerabilities.
Week 6: Ethical Hacking Basics ๐ง
โข Footprinting reconnaissance
โข Scanning networks (Nmap)
โข Enumeration
โข Exploitation basics
โข Introduction to Metasploit
Example: Scan open ports on a target system
โ Outcome: You can perform basic hacking.
Week 7: Cryptography ๐
โข Encryption vs hashing
โข Symmetric vs asymmetric encryption
โข SSL/TLS basics
โข Hashing algorithms (MD5, SHA)
โข Password security
Example: Hash passwords and verify
โ Outcome: You understand cryptography basics.
Week 8: System Security ๐ฅ๏ธ
โข Windows Linux security basics
โข Firewalls antivirus
โข User authentication
โข File system security
โข Hardening systems
Example: Configure firewall rules
โ Outcome: You can secure systems.
Week 9: Network Security ๐
โข Firewalls, IDS, IPS
โข VPN basics
โข Network attacks (MITM, DoS, DDoS)
โข Secure network design
Example: Simulate basic network attack concepts
โ Outcome: You understand network security.
Week 10: Tools Practical Skills ๐ ๏ธ
โข Wireshark (packet analysis)
โข Burp Suite (web testing)
โข Nmap (network scanning)
โข Nikto, Hydra basics
Example: Capture and analyze packets
โ Outcome: You can use cybersecurity tools.
Week 11: Mini Projects ๐
โข Perform vulnerability assessment
โข Build a secure network setup
โข Practice CTF challenges
โข Bug bounty basics
Examples: Scan a website for vulnerabilities, Analyze network traffic
โ Outcome: You can apply cybersecurity skills.
Week 12: Final Preparation ๐ฏ
โข Revise all concepts
โข Practice labs (TryHackMe, Hack The Box)
โข Learn report writing
โข Prepare for interviews
โ Outcome: You are ready for cybersecurity roles.
@Cybertechns
โค5
Letโs start with Week 1 โ First Topic: What is Cybersecurity & How it Works ๐
๐ What is Cybersecurity?
Cybersecurity means protecting systems, networks, and data from digital attacks.
These attacks usually try to:
- Steal sensitive data (passwords, bank info)
- Damage systems
- Interrupt services
๐ In simple terms:
Cybersecurity = Digital Protection System
โ๏ธ How Cybersecurity Works
Cybersecurity works in 3 main layers:
1๏ธโฃ Prevention
- Firewalls
- Antivirus
- Strong passwords
๐ Goal: Stop attacks before they happen
2๏ธโฃ Detection
- Monitoring systems
- Intrusion Detection Systems (IDS)
๐ Goal: Identify suspicious activity
3๏ธโฃ Response
- Fix vulnerabilities
- Recover data
- Block attackers
๐ Goal: Minimize damage
๐ฏ Real-Life Example
Imagine this:
You use a banking app
Cybersecurity ensures:
- Your password is encrypted
- No hacker can access your account
- Suspicious login attempts are blocked
๐ง Types of Cybersecurity
- Network Security โ Protects networks
- Application Security โ Protects apps
- Information Security โ Protects data
- Cloud Security โ Protects cloud systems
๐จ Why Cybersecurity is Important
Without cybersecurity:
- Data leaks happen
- Money can be stolen
- Businesses can shut down
๐ Example: Ransomware attacks lock systems until money is paid
๐ Quick Task (Do This Today)
1. Think of 5 apps you use daily
2. Identify what data they protect
3. Ask: What happens if this gets hacked?
@Cybertechns
๐ What is Cybersecurity?
Cybersecurity means protecting systems, networks, and data from digital attacks.
These attacks usually try to:
- Steal sensitive data (passwords, bank info)
- Damage systems
- Interrupt services
๐ In simple terms:
Cybersecurity = Digital Protection System
โ๏ธ How Cybersecurity Works
Cybersecurity works in 3 main layers:
1๏ธโฃ Prevention
- Firewalls
- Antivirus
- Strong passwords
๐ Goal: Stop attacks before they happen
2๏ธโฃ Detection
- Monitoring systems
- Intrusion Detection Systems (IDS)
๐ Goal: Identify suspicious activity
3๏ธโฃ Response
- Fix vulnerabilities
- Recover data
- Block attackers
๐ Goal: Minimize damage
๐ฏ Real-Life Example
Imagine this:
You use a banking app
Cybersecurity ensures:
- Your password is encrypted
- No hacker can access your account
- Suspicious login attempts are blocked
๐ง Types of Cybersecurity
- Network Security โ Protects networks
- Application Security โ Protects apps
- Information Security โ Protects data
- Cloud Security โ Protects cloud systems
๐จ Why Cybersecurity is Important
Without cybersecurity:
- Data leaks happen
- Money can be stolen
- Businesses can shut down
๐ Example: Ransomware attacks lock systems until money is paid
๐ Quick Task (Do This Today)
1. Think of 5 apps you use daily
2. Identify what data they protect
3. Ask: What happens if this gets hacked?
@Cybertechns
โค6
Now, let's understand the next topic of the Cybersecurity Roadmap:
๐ง Types of Hackers (White, Black, Grey)
Not all hackers are criminals. In cybersecurity, hackers are categorized based on intent ๐
โช 1๏ธโฃ White Hat Hackers (Ethical Hackers)
๐ These are the good guys
โข Work legally
โข Help companies find vulnerabilities
โข Improve system security
๐ก Example:
A company hires a hacker to test its website security
๐ Role: Protect systems
โซ 2๏ธโฃ Black Hat Hackers (Malicious Hackers)
๐ These are the dangerous ones
โข Hack illegally
โข Steal data, money
โข Spread malware, ransomware
๐ก Example:
Hacking bank systems to steal money
๐ Role: Exploit systems
โ๏ธ 3๏ธโฃ Grey Hat Hackers
๐ Somewhere in between
โข Hack without permission
โข But donโt always have bad intentions
๐ก Example:
Finding a bug in a website and reporting it (without approval)
๐ Role: Mixed intentions
๐ฅ Simple Comparison
White Hat
โข Permission: โ Yes
โข Intent: Good
โข Legal Status: Legal
Black Hat
โข Permission: โ No
โข Intent: Harmful
โข Legal Status: Illegal
Grey Hat
โข Permission: โ No
โข Intent: Neutral
โข Legal Status: Risky
๐ฏ Real-Life Scenario
โข White Hat โ Works at Google securing systems
โข Black Hat โ Launches phishing attacks
โข Grey Hat โ Finds bug and exposes it publicly
๐ Quick Task
1. Search: โEthical hacker jobsโ
2. Note required skills
3. Ask yourself: Do you want to be a White Hat?
@Cybertechns
๐ง Types of Hackers (White, Black, Grey)
Not all hackers are criminals. In cybersecurity, hackers are categorized based on intent ๐
โช 1๏ธโฃ White Hat Hackers (Ethical Hackers)
๐ These are the good guys
โข Work legally
โข Help companies find vulnerabilities
โข Improve system security
๐ก Example:
A company hires a hacker to test its website security
๐ Role: Protect systems
โซ 2๏ธโฃ Black Hat Hackers (Malicious Hackers)
๐ These are the dangerous ones
โข Hack illegally
โข Steal data, money
โข Spread malware, ransomware
๐ก Example:
Hacking bank systems to steal money
๐ Role: Exploit systems
โ๏ธ 3๏ธโฃ Grey Hat Hackers
๐ Somewhere in between
โข Hack without permission
โข But donโt always have bad intentions
๐ก Example:
Finding a bug in a website and reporting it (without approval)
๐ Role: Mixed intentions
๐ฅ Simple Comparison
White Hat
โข Permission: โ Yes
โข Intent: Good
โข Legal Status: Legal
Black Hat
โข Permission: โ No
โข Intent: Harmful
โข Legal Status: Illegal
Grey Hat
โข Permission: โ No
โข Intent: Neutral
โข Legal Status: Risky
๐ฏ Real-Life Scenario
โข White Hat โ Works at Google securing systems
โข Black Hat โ Launches phishing attacks
โข Grey Hat โ Finds bug and exposes it publicly
๐ Quick Task
1. Search: โEthical hacker jobsโ
2. Note required skills
3. Ask yourself: Do you want to be a White Hat?
@Cybertechns
โค6
Now, Letโs move to next topic of cybersecurity roadmap๐
๐จ Common Cyber Threats (Malware, Phishing, Ransomware)
These are the most common ways hackers attack systems. Youโll see these everywhere in real life ๐
๐ฆ 1๏ธโฃ Malware (Malicious Software)
๐ Software designed to damage or steal data
Types include:
Virus
Trojan
Spyware
Worm
๐ก Example:
You download a cracked app โ it secretly installs spyware
๐ Result: Your data gets stolen
๐ฃ 2๏ธโฃ Phishing
๐ Fake messages to trick you into giving sensitive info
Fake emails
Fake login pages
Fake SMS (OTP scams)
๐ก Example:
You get an email: โYour bank account is blocked, login nowโ
โ You click โ enter password โ hacker gets access
๐ This is one of the most common attacks in India
๐ 3๏ธโฃ Ransomware
๐ Locks your system and asks for money
Files get encrypted
You cannot access your data
Hacker demands payment
๐ก Example:
Laptop shows: โPay โน10,000 to unlock your filesโ
๐ Very dangerous for companies
๐ฅ Quick Comparison
Threat What it does Danger Level
Malware Damages / steals data MediumโHigh
Phishing Tricks users High
Ransomware Locks system for money Very High
๐ฏ Real-Life Scenario
You install unknown software โ Malware
You click fake email โ Phishing
Your system gets locked โ Ransomware
๐ก๏ธ How to Stay Safe
Donโt click unknown links
Use strong passwords
Install apps from trusted sources only
Keep antivirus updated
๐ Quick Task
1. Open your email inbox
2. Try to identify 1 suspicious email
3. Ask: Why does this look fake?
@Cybertechns
๐จ Common Cyber Threats (Malware, Phishing, Ransomware)
These are the most common ways hackers attack systems. Youโll see these everywhere in real life ๐
๐ฆ 1๏ธโฃ Malware (Malicious Software)
๐ Software designed to damage or steal data
Types include:
Virus
Trojan
Spyware
Worm
๐ก Example:
You download a cracked app โ it secretly installs spyware
๐ Result: Your data gets stolen
๐ฃ 2๏ธโฃ Phishing
๐ Fake messages to trick you into giving sensitive info
Fake emails
Fake login pages
Fake SMS (OTP scams)
๐ก Example:
You get an email: โYour bank account is blocked, login nowโ
โ You click โ enter password โ hacker gets access
๐ This is one of the most common attacks in India
๐ 3๏ธโฃ Ransomware
๐ Locks your system and asks for money
Files get encrypted
You cannot access your data
Hacker demands payment
๐ก Example:
Laptop shows: โPay โน10,000 to unlock your filesโ
๐ Very dangerous for companies
๐ฅ Quick Comparison
Threat What it does Danger Level
Malware Damages / steals data MediumโHigh
Phishing Tricks users High
Ransomware Locks system for money Very High
๐ฏ Real-Life Scenario
You install unknown software โ Malware
You click fake email โ Phishing
Your system gets locked โ Ransomware
๐ก๏ธ How to Stay Safe
Donโt click unknown links
Use strong passwords
Install apps from trusted sources only
Keep antivirus updated
๐ Quick Task
1. Open your email inbox
2. Try to identify 1 suspicious email
3. Ask: Why does this look fake?
@Cybertechns
โค6
Hackers Breach Canvas Learning Platform, Exposing Data on Millions of Students and Teachers
A cybersecurity attack on the nation's most widely used classroom software has potentially exposed the personal data of millions of students and educators across the country.
Instructure, the company that runs the Canvas learning management system used by more than 7,000 universities, K-12 districts and education ministries worldwide, disclosed the breach to affected institutions this week.
The company confirmed names, email addresses, student ID numbers and private messages between users had been accessed before the breach was contained.
ShinyHunters warned that a failure to pay could result in the release of "several billions of private messages among students and teachers."
A ransom message on the platform appears to give Infrastructure until May 12 to respond and "negotiate a settlement" before the hackers leak information.
@Hackerors
A cybersecurity attack on the nation's most widely used classroom software has potentially exposed the personal data of millions of students and educators across the country.
Instructure, the company that runs the Canvas learning management system used by more than 7,000 universities, K-12 districts and education ministries worldwide, disclosed the breach to affected institutions this week.
The company confirmed names, email addresses, student ID numbers and private messages between users had been accessed before the breach was contained.
ShinyHunters warned that a failure to pay could result in the release of "several billions of private messages among students and teachers."
A ransom message on the platform appears to give Infrastructure until May 12 to respond and "negotiate a settlement" before the hackers leak information.
@Hackerors
The Conversation
Hackers just stole data from 9,000 schools and unis around the world. How can we protect student privacy?
A US-based education tech provider announced a cybersecurity incident affecting its Canvas platform โ used by institutions around the world, including Australia.
โค5
Now, Letโs move to next topic of cybersecurity roadmap๐
๐ Basic Networking Concepts (IP, DNS, HTTP/HTTPS)
To understand cybersecurity, you must first understand how the internet works.
๐ 1๏ธโฃ IP Address (Identity of Device)
๐ Every device on the internet has a unique ID
Example: 192.168.1.1
Works like a home address
๐ก Example:
When you visit a website, your system communicates using IP addresses
๐ 2๏ธโฃ DNS (Domain Name System)
๐ Converts domain names โ IP addresses
Humans use: google.com
Computers use: 142.250.x.x
๐ก Example:
You type a website name โ DNS finds its IP โ connects you
๐ Think of DNS as the internetโs phonebook
๐ 3๏ธโฃ HTTP vs HTTPS
๐ Protocols used to transfer data
HTTP
Not secure โ
Data can be intercepted
HTTPS
Secure โ
Data is encrypted ๐
๐ก Example:
โข http:// โ Unsafe
โข https:// โ Safe (used in banking, payments)
๐ How Everything Works Together
๐ When you open a website:
1. You type domain (example.com)
2. DNS converts it into IP
3. Browser sends request using HTTP/HTTPS
4. Server responds with website data
๐ฏ Real-Life Example
When you open Instagram:
โข DNS finds server
โข HTTPS secures your login
โข IP connects your device to server
๐ก๏ธ Cybersecurity Angle
โข Hackers can intercept HTTP traffic
โข Fake DNS can redirect to malicious sites
โข IP tracking can reveal location
๐ Thatโs why HTTPS + secure DNS = important
๐ Quick Task
1. Open any website
2. Check if it starts with https://
3. Click ๐ icon โ see certificate details
@Cybertechns
๐ Basic Networking Concepts (IP, DNS, HTTP/HTTPS)
To understand cybersecurity, you must first understand how the internet works.
๐ 1๏ธโฃ IP Address (Identity of Device)
๐ Every device on the internet has a unique ID
Example: 192.168.1.1
Works like a home address
๐ก Example:
When you visit a website, your system communicates using IP addresses
๐ 2๏ธโฃ DNS (Domain Name System)
๐ Converts domain names โ IP addresses
Humans use: google.com
Computers use: 142.250.x.x
๐ก Example:
You type a website name โ DNS finds its IP โ connects you
๐ Think of DNS as the internetโs phonebook
๐ 3๏ธโฃ HTTP vs HTTPS
๐ Protocols used to transfer data
HTTP
Not secure โ
Data can be intercepted
HTTPS
Secure โ
Data is encrypted ๐
๐ก Example:
โข http:// โ Unsafe
โข https:// โ Safe (used in banking, payments)
๐ How Everything Works Together
๐ When you open a website:
1. You type domain (example.com)
2. DNS converts it into IP
3. Browser sends request using HTTP/HTTPS
4. Server responds with website data
๐ฏ Real-Life Example
When you open Instagram:
โข DNS finds server
โข HTTPS secures your login
โข IP connects your device to server
๐ก๏ธ Cybersecurity Angle
โข Hackers can intercept HTTP traffic
โข Fake DNS can redirect to malicious sites
โข IP tracking can reveal location
๐ Thatโs why HTTPS + secure DNS = important
๐ Quick Task
1. Open any website
2. Check if it starts with https://
3. Click ๐ icon โ see certificate details
@Cybertechns
โค5
Now, Letโs move to next topic of cybersecurity roadmap๐
๐ OSI Model (7 Layers Explained Simply)
The OSI Model (Open Systems Interconnection) explains how data travels across a network in 7 layers.
๐ Think of it like a delivery system for data
๐งฑ 7 Layers of OSI Model
(Top โ Bottom)
7๏ธโฃ Application Layer
๐ User interaction
- Browser, apps
- Example: Opening a website
6๏ธโฃ Presentation Layer
๐ Data formatting & encryption
- Converts data format
- Encrypts/decrypts
๐ก Example: HTTPS encryption
5๏ธโฃ Session Layer
๐ Manages connections
- Starts, maintains, ends sessions
๐ก Example: Login session on a website
4๏ธโฃ Transport Layer
๐ Data delivery
- Ensures data reaches correctly
- Protocols: TCP / UDP
๐ก Example: Error-free data transfer
3๏ธโฃ Network Layer
๐ Routing (Path selection)
- Uses IP address
- Finds best path
๐ก Example: GPS for data
2๏ธโฃ Data Link Layer
๐ Device-to-device transfer
- MAC addresses
- Error detection
1๏ธโฃ Physical Layer
๐ Actual transmission
- Cables, signals, hardware
๐ฅ Easy Trick to Remember
๐ All People Seem To Need Data Processing
A โ Application
P โ Presentation
S โ Session
T โ Transport
N โ Network
D โ Data Link
P โ Physical
๐ฏ Real-Life Example (Opening a Website)
1. You click a link โ Application
2. Data gets encrypted โ Presentation
3. Session starts โ Session
4. Data split into packets โ Transport
5. Routed via IP โ Network
6. Sent via MAC โ Data Link
7. Travels through cable โ Physical
๐ก๏ธ Cybersecurity Angle
Attacks can happen at any layer
Example:
- Application โ SQL Injection
- Network โ IP spoofing
- Transport โ Port scanning
๐ Thatโs why understanding OSI is super important ๐ฅ
๐ Quick Task
1. Try to map this:
โOpening YouTubeโ โ Which layers are involved?
2. Memorize the 7 layers (top to bottom)
@Cybertechns
๐ OSI Model (7 Layers Explained Simply)
The OSI Model (Open Systems Interconnection) explains how data travels across a network in 7 layers.
๐ Think of it like a delivery system for data
๐งฑ 7 Layers of OSI Model
(Top โ Bottom)
7๏ธโฃ Application Layer
๐ User interaction
- Browser, apps
- Example: Opening a website
6๏ธโฃ Presentation Layer
๐ Data formatting & encryption
- Converts data format
- Encrypts/decrypts
๐ก Example: HTTPS encryption
5๏ธโฃ Session Layer
๐ Manages connections
- Starts, maintains, ends sessions
๐ก Example: Login session on a website
4๏ธโฃ Transport Layer
๐ Data delivery
- Ensures data reaches correctly
- Protocols: TCP / UDP
๐ก Example: Error-free data transfer
3๏ธโฃ Network Layer
๐ Routing (Path selection)
- Uses IP address
- Finds best path
๐ก Example: GPS for data
2๏ธโฃ Data Link Layer
๐ Device-to-device transfer
- MAC addresses
- Error detection
1๏ธโฃ Physical Layer
๐ Actual transmission
- Cables, signals, hardware
๐ฅ Easy Trick to Remember
๐ All People Seem To Need Data Processing
A โ Application
P โ Presentation
S โ Session
T โ Transport
N โ Network
D โ Data Link
P โ Physical
๐ฏ Real-Life Example (Opening a Website)
1. You click a link โ Application
2. Data gets encrypted โ Presentation
3. Session starts โ Session
4. Data split into packets โ Transport
5. Routed via IP โ Network
6. Sent via MAC โ Data Link
7. Travels through cable โ Physical
๐ก๏ธ Cybersecurity Angle
Attacks can happen at any layer
Example:
- Application โ SQL Injection
- Network โ IP spoofing
- Transport โ Port scanning
๐ Thatโs why understanding OSI is super important ๐ฅ
๐ Quick Task
1. Try to map this:
โOpening YouTubeโ โ Which layers are involved?
2. Memorize the 7 layers (top to bottom)
@Cybertechns
โค5
Now, Letโs move to next topic of cybersecurity roadmap๐
โก TCP/IP Model (Most Important Networking Model)
The TCP/IP Model is the real-world networking model used on the internet.
๐ While OSI is mainly theoretical, TCP/IP is used practically everywhere.
๐งฑ 4 Layers of TCP/IP Model
4๏ธโฃ Application Layer
๐ User interaction + protocols
Protocols include:
โข HTTP/HTTPS
โข FTP
โข DNS
โข SMTP
๐ก Example: Browsing websites
3๏ธโฃ Transport Layer
๐ Reliable communication
Protocols:
โข TCP โ Reliable
โข UDP โ Fast but less reliable
๐ก Example:
โข TCP โ Banking apps
โข UDP โ Online gaming/video calls
2๏ธโฃ Internet Layer
๐ Routing IP addressing
Protocols:
โข IP
โข ICMP
๐ก Example:
Finding the best path for packets
1๏ธโฃ Network Access Layer
๐ Physical transmission
โข Cables
โข Wi-Fi
โข MAC address communication
๐ฅ TCP vs UDP (Very Important)
TCP
โข Reliability: โ Reliable
โข Speed: Slower
โข Error Checking: Yes
โข Used In: Banking, websites
UDP
โข Reliability: โ Less Reliable
โข Speed: Faster
โข Error Checking: Minimal
โข Used In: Gaming, streaming
๐ Real-Life Example
When you open YouTube:
โข Application โ YouTube app/browser
โข Transport โ TCP/UDP handles data
โข Internet โ IP routing
โข Network Access โ Wi-Fi sends data
๐ง OSI vs TCP/IP
OSI
โข Layers: 7 Layers
โข Type: Theoretical
โข Purpose: Learning model
TCP/IP
โข Layers: 4 Layers
โข Type: Practical
โข Purpose: Internet model
๐ก๏ธ Cybersecurity Angle
Hackers often target TCP/IP weaknesses:
โข IP spoofing
โข Packet sniffing
โข TCP SYN flood attacks
๐ Understanding TCP/IP helps in both networking + ethical hacking
๐ Quick Task
1. Search these protocols:
โ HTTP
โ HTTPS
โ FTP
โ DNS
2. Write what each one does in 1 line
@Cybertechns
โก TCP/IP Model (Most Important Networking Model)
The TCP/IP Model is the real-world networking model used on the internet.
๐ While OSI is mainly theoretical, TCP/IP is used practically everywhere.
๐งฑ 4 Layers of TCP/IP Model
4๏ธโฃ Application Layer
๐ User interaction + protocols
Protocols include:
โข HTTP/HTTPS
โข FTP
โข DNS
โข SMTP
๐ก Example: Browsing websites
3๏ธโฃ Transport Layer
๐ Reliable communication
Protocols:
โข TCP โ Reliable
โข UDP โ Fast but less reliable
๐ก Example:
โข TCP โ Banking apps
โข UDP โ Online gaming/video calls
2๏ธโฃ Internet Layer
๐ Routing IP addressing
Protocols:
โข IP
โข ICMP
๐ก Example:
Finding the best path for packets
1๏ธโฃ Network Access Layer
๐ Physical transmission
โข Cables
โข Wi-Fi
โข MAC address communication
๐ฅ TCP vs UDP (Very Important)
TCP
โข Reliability: โ Reliable
โข Speed: Slower
โข Error Checking: Yes
โข Used In: Banking, websites
UDP
โข Reliability: โ Less Reliable
โข Speed: Faster
โข Error Checking: Minimal
โข Used In: Gaming, streaming
๐ Real-Life Example
When you open YouTube:
โข Application โ YouTube app/browser
โข Transport โ TCP/UDP handles data
โข Internet โ IP routing
โข Network Access โ Wi-Fi sends data
๐ง OSI vs TCP/IP
OSI
โข Layers: 7 Layers
โข Type: Theoretical
โข Purpose: Learning model
TCP/IP
โข Layers: 4 Layers
โข Type: Practical
โข Purpose: Internet model
๐ก๏ธ Cybersecurity Angle
Hackers often target TCP/IP weaknesses:
โข IP spoofing
โข Packet sniffing
โข TCP SYN flood attacks
๐ Understanding TCP/IP helps in both networking + ethical hacking
๐ Quick Task
1. Search these protocols:
โ HTTP
โ HTTPS
โ FTP
โ DNS
2. Write what each one does in 1 line
@Cybertechns
โค5
Now, Letโs move to next topic of cybersecurity roadmap๐
๐ Ports & Protocols (Very Important in Cybersecurity)
To communicate over the internet, systems use:
Protocols โ Rules for communication
Ports โ Specific channels for communication
๐ Think of it like this:
IP Address = House address
Port = Room number
Protocol = Rules to communicate inside the room
๐ Common Protocols You Must Know
1๏ธโฃ HTTP (HyperText Transfer Protocol)
๐ Used for websites
Transfers webpage data
Not encrypted โ
๐ Default Port: 80
๐ก Example:
Opening a normal website
๐ 2๏ธโฃ HTTPS (Secure HTTP)
๐ Secure version of HTTP
Encrypts communication
Safe for payments/login
๐ Default Port: 443
๐ก Example:
Banking websites, online shopping
๐ 3๏ธโฃ FTP (File Transfer Protocol)
๐ Used to transfer files between systems
๐ Default Port: 21
๐ก Example:
Uploading files to a web server
โ ๏ธ Traditional FTP is not secure
๐ 4๏ธโฃ SSH (Secure Shell)
๐ Secure remote login to systems
๐ Default Port: 22
๐ก Example:
Server administration remotely
๐ 5๏ธโฃ DNS (Domain Name System)
๐ Converts domain names โ IP addresses
๐ Default Port: 53
๐ก Example:
google.com โ IP address
๐ฅ Most Important Ports to Remember
HTTP โ 80 โ Web traffic
HTTPS โ 443 โ Secure web traffic
FTP โ 21 โ File transfer
SSH โ 22 โ Secure remote access
DNS โ 53 โ Domain lookup
๐ฏ Real-Life Scenario
When you open a secure website:
1. Browser uses DNS (53)
2. Finds IP address
3. Connects through HTTPS (443)
4. Secure encrypted communication starts
๐ก๏ธ Cybersecurity Angle
Hackers often scan ports to find vulnerabilities ๐
Open SSH port โ Brute force attacks
Open FTP โ Unauthorized access
Open HTTP โ Unencrypted traffic
๐ Ethical hackers use tools like Nmap to scan ports
๐ Quick Task
1. Open Command Prompt / Terminal
2. Search:
netstat -an
3. Observe active ports on your system
@Cybertechns
๐ Ports & Protocols (Very Important in Cybersecurity)
To communicate over the internet, systems use:
Protocols โ Rules for communication
Ports โ Specific channels for communication
๐ Think of it like this:
IP Address = House address
Port = Room number
Protocol = Rules to communicate inside the room
๐ Common Protocols You Must Know
1๏ธโฃ HTTP (HyperText Transfer Protocol)
๐ Used for websites
Transfers webpage data
Not encrypted โ
๐ Default Port: 80
๐ก Example:
Opening a normal website
๐ 2๏ธโฃ HTTPS (Secure HTTP)
๐ Secure version of HTTP
Encrypts communication
Safe for payments/login
๐ Default Port: 443
๐ก Example:
Banking websites, online shopping
๐ 3๏ธโฃ FTP (File Transfer Protocol)
๐ Used to transfer files between systems
๐ Default Port: 21
๐ก Example:
Uploading files to a web server
โ ๏ธ Traditional FTP is not secure
๐ 4๏ธโฃ SSH (Secure Shell)
๐ Secure remote login to systems
๐ Default Port: 22
๐ก Example:
Server administration remotely
๐ 5๏ธโฃ DNS (Domain Name System)
๐ Converts domain names โ IP addresses
๐ Default Port: 53
๐ก Example:
google.com โ IP address
๐ฅ Most Important Ports to Remember
HTTP โ 80 โ Web traffic
HTTPS โ 443 โ Secure web traffic
FTP โ 21 โ File transfer
SSH โ 22 โ Secure remote access
DNS โ 53 โ Domain lookup
๐ฏ Real-Life Scenario
When you open a secure website:
1. Browser uses DNS (53)
2. Finds IP address
3. Connects through HTTPS (443)
4. Secure encrypted communication starts
๐ก๏ธ Cybersecurity Angle
Hackers often scan ports to find vulnerabilities ๐
Open SSH port โ Brute force attacks
Open FTP โ Unauthorized access
Open HTTP โ Unencrypted traffic
๐ Ethical hackers use tools like Nmap to scan ports
๐ Quick Task
1. Open Command Prompt / Terminal
2. Search:
netstat -an
3. Observe active ports on your system
@Cybertechns
โค6