Post– Quantum Cryptography: Hybrid TLS 1.3 | 100 Labs

Free Download Post-Quantum Cryptography: Hybrid TLS 1.3 | 100 Labs
Published 8/2026
Created by Dar Al Taqniya
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Level: All Levels | Genre: eLearning | Language: English | Duration: 112 Lectures ( 7h 46m ) | Size: 1.1 GB
From quantum security uncertainty to production-ready Hybrid TLS 1.3 and enterprise PQC architecture.
What you'll learn
⚡ Architect enterprise-grade Post-Quantum Cryptography (PQC) infrastructures using the latest NIST standardized algorithms including ML-KEM and ML-DSA.
⚡ Build, compile, and optimize OpenSSL, liboqs, BoringSSL, and NGINX for production Hybrid TLS 1.3 deployments.
⚡ Design and deploy secure Hybrid TLS 1.3 environments that combine classical cryptography with quantum-resistant algorithms.
⚡ Engineer quantum-safe Enterprise PKI, certificate authorities, OCSP responders, CRLs, and automated certificate lifecycle management.
⚡ Secure Kubernetes, microservices, service meshes, APIs, and distributed systems using hybrid mutual TLS (mTLS).
⚡ Implement cryptographic agility strategies including algorithm rotation, Cryptographic Bill of Materials (CBOM), and compliance automation.
⚡ Monitor, benchmark, troubleshoot, and optimize large-scale hybrid cryptographic environments using Prometheus, Grafana, Jaeger, and modern observability practic
⚡ Perform production-grade performance tuning, security hardening, penetration testing, compliance validation, and disaster recovery planning.
⚡ Deploy globally distributed, sovereign, zero-trust infrastructures using Kubernetes, Terraform, ArgoCD, Docker, Envoy, and NGINX.
Requirements
❗ Recommended prerequisites
❗ 1. Basic Linux command-line knowledge
❗ 2. Basic networking concepts (TCP/IP, DNS, HTTP)
❗ 3.Basic understanding of TLS/HTTPS is helpful but not mandatory
❗ 4.Familiarity with Docker is helpful but taught where required
❗ 5.Basic scripting knowledge (Python or Bash) is beneficial
❗ Recommended software
❗ 1. Ubuntu 24.04 LTS (or compatible Linux VM)
❗ 2. Docker Desktop or Docker Engine
❗ 3. Python 3.12+
❗ 4. Git
❗ 5. VirtualBox, VMware, or WSL2 (Windows users)
❗ Recommended hardware
❗ 1. Quad-Core CPU
❗ 2. 16 GB RAM (minimum 8 GB)
❗ 3. 50+ GB free SSD storage
❗ 4. Stable internet connection
Description
This course contains the use of artificial intelligence.
I only charge a fee solely for the time invested in building this comprehensive curriculum.
The Future Isn't Waiting—Neither Should Your Cryptography
Today's software industry is filled with tutorials that make complex technologies look easy. Many focus on getting something running quickly without explaining how it survives production, compliance reviews, high availability
Requirements
, or enterprise security audits.That approach may be enough for prototypes.
It isnot enough for protecting data that may remain confidential for decades.
The emergence of practical quantum computing has introduced one of the most significant security challenges modern infrastructure has ever faced.
Attackers no longer need to decrypt your encrypted traffic today.
They simply capture it.
Store it.
Wait.
This strategy—commonly called"Harvest Now, Decrypt Later"—means sensitive healthcare records, financial transactions, government communications, intellectual property, and enterprise secrets encrypted today could eventually become readable once sufficiently capable quantum computers arrive.
This course exists to prepare engineers before that transition becomes an emergency.
Instead of focusing on theory alone, you'll build real production environments using the same open-source technologies that security researchers and enterprise engineering teams are actively exploring today.
This Is a 100-Lab Engineering Journey
Rather than watching demonstrations, you'll build everything yourself.
Across 100 carefully structured hands-on labs, you'll move from installing development environments to deploying globally distributed, quantum-safe infrastructure.
You'll compile OpenSSL with Open Quantum Safe providers.
You'll build BoringSSL from source.
You'll configure production NGINX and Envoy gateways.
You'll implement Hybrid TLS 1.3 using X25519 and ML-KEM.
You'll construct enterprise Public Key Infrastructure.
You'll deploy Kubernetes service meshes protected by hybrid mutual TLS.
You'll benchmark performance, monitor cryptographic telemetry, generate Cryptographic Bills of Materials (CBOM), automate compliance, and practice cryptographic agility through live algorithm rotation.
Every lab builds upon previous work.
Nothing is isolated.
Everything contributes toward one production-grade architecture.
What's Inside
The curriculum progresses naturally from beginner-friendly setup to advanced enterprise engineering.
You'll begin by creating a reproducible Linux development environment and validating your cryptographic toolchain. From there, you'll explore the mathematical foundations of lattice cryptography and gain an intuitive understanding of ML-KEM, ML-DSA, and related standards without requiring a PhD in mathematics.
Once the foundations are established, you'll dissect the TLS 1.3 protocol, implement Hybrid TLS key exchanges, inspect packet captures with Wireshark, and analyze real handshake behavior.
The journey then shifts into production engineering. You'll compile and configure NGINX, HAProxy, and Envoy for hybrid cryptographic workloads, build a quantum-safe PKI hierarchy, automate certificate management, and integrate secure communication across Go, Python, Java, Node.js, and Rust microservices running on Kubernetes.
As your skills mature, you'll implement cryptographic agility, automate CBOM generation within CI/CD pipelines, instrument full-stack observability with Prometheus, Grafana, and Jaeger, and optimize performance while validating compliance against modern security guidance.
By the final modules, you'll be engineering systems that resemble enterprise deployments rather than classroom exercises.
Lab 100: The Ultimate Production Capstone
Everything culminates in one comprehensive project.
You will design, deploy, validate, monitor, and document a complete enterprise-grade Hybrid TLS 1.3 platform spanning multiple regions.
Your architecture will include
✨ Custom-built Hybrid TLS gateways
✨ Kubernetes microservices secured with hybrid mTLS
✨ Offline and intermediate certificate authorities
✨ Automated CBOM generation
✨ Infrastructure-as-Code with Terraform
✨ GitOps deployments using ArgoCD
✨ Zero-downtime cryptographic algorithm migration
✨ Enterprise observability with Prometheus, Grafana, and Jaeger
✨ Performance validation and compliance verification
This isn't a toy application. It is the kind of portfolio project that demonstrates your ability to engineer secure, production-ready cryptographic infrastructure.
Why Learn This Now?
Post-Quantum Cryptography has moved beyond academic research. With standardized algorithms, growing regulatory attention, and increasing enterprise adoption, organizations are beginning the transition toward quantum-resistant security architectures.
Engineers who understand both classical TLS and modern Hybrid TLS deployments will be positioned to lead that transition.
This course is designed to help you build those capabilities through practical engineering rather than abstract theory.
If you're ready to move beyond conceptual discussions and start building quantum-safe systems that reflect real-world production environments, this course provides a structured path from fundamentals to advanced implementation.
Enroll today, complete all 100 labs, and begin developing the skills needed to design the next generation of secure infrastructure.
Who this course is for
⭐ 1. The Security Engineer Preparing for the Quantum Era
⭐ You already understand traditional cryptography and now want practical skills for deploying Post-Quantum Cryptography before it becomes mandatory across enterprise infrastructure.
⭐ 2. The DevOps, Cloud, or Platform Engineer
⭐ You manage Kubernetes, microservices, TLS termination, CI/CD, or infrastructure automation and want to implement quantum-safe communication without rewriting existing applications.
⭐ 3. The Senior Security Architect & Enterprise Consultant
⭐ You design enterprise infrastructure, PKI, Zero Trust, compliance, or sovereign cloud platforms and need production-ready Hybrid TLS 1.3 expertise that organizations are beginning to demand worldwide.
Homepage
https://www.udemy.com/course/post-quantum-cryptography-hybrid-tls-13-100-labs
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