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DevOps
Kubernetes
Challenges

Ultimate Certified Kubernetes Security Specialist (CKS) Mock Exam Series

Reham Hussam
Senior DevOps Engineer | AI & Cloud Infrastructure Expert | Cloud Architecture Certified
Nourhan Mohamed
DevOps Lead | Cloud Native Enthusiast | Golden Kubestronaut
DevOps Pre-Requisite Course
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What you’ll learn

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Description

The Ultimate CKS Mock Exam Series is a comprehensive hands-on practice environment built for Kubernetes professionals preparing for the Certified Kubernetes Security Specialist (CKS) certification.

This series provides realistic, scenario-based labs that simulate the exact conditions and topics covered in the actual CKS exam. Each mock exam focuses on critical aspects of Kubernetes security, including cluster hardening, runtime threat detection, network policies, and supply chain protection.

Exam Overview

The CKS exam assesses a candidate’s ability to secure Kubernetes clusters and workloads across every layer — from the operating system and container runtime to the network and application level.

This mock series has been strategically designed to reflect these proportions, ensuring balanced coverage across all domains — giving you a true-to-exam experience.

Exam Environment

Just like the real CKS exam, the mock environment uses multiple Kubernetes clusters, each representing isolated security scenarios.

Cluster Layout

The environment includes multiple clusters:

  • Cluster 1 (Main): General security and runtime hardening scenarios

  • Cluster 2 (Control-plane Focused): Control plane, node, and RBAC security tasks

  • Cluster 3 (Policy & Runtime Focus): OPA Gatekeeper, Pod Security Standards, Falco, and runtime isolation exercises

You will begin each mock exam logged into a student node, from which you can SSH into other clusters and nodes.

Exam Experience

Each mock exam contains 16 hands-on tasks, combining practical, scenario-based exercises across domains such as:

  • Pod Security Admission & PSS migration

  • Falco runtime detection and seccomp/AppArmor enforcement

  • NetworkPolicy and egress/ingress restrictions

  • RBAC least privilege and ServiceAccount hardening

  • Image and supply chain security with distroless, SBOM, and kube-linter

  • Node and control-plane CIS hardening with kube-bench

  • TLS, Secrets, and mTLS enforcement with Istio

The mock exams automatically validate each task for correctness, providing instant feedback and scoring.

Duration and Difficulty

  • Duration: 2 hours per full exam

  • Number of Tasks: 16 hands-on questions

  • Difficulty: Mirrors the actual CKS exam (beginner to expert mix)

  • Scoring: Automated validation with weighted scoring per question

Exam Set Overview

Each exam can be taken independently, or as part of the complete CKS series to simulate the full exam experience.

Outcome

By completing all mock exams in this series, you will:

  • Gain confidence managing real-world Kubernetes security incidents

  • Practice on scenarios directly mapped to the official CKS curriculum

  • Learn end-to-end mitigation techniques — from runtime to network to supply chain

Be fully prepared for the CKS certification exam under real exam conditions

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What our students say

About the instructor

Reham Hussam is a Senior DevOps Engineer at KodeKloud with over 10 years of experience in Cloud, DevOps, and Infrastructure Engineering. Before joining KodeKloud, she spent nearly a decade at Dell Technologies leading global team in VMware and hyper-converged solutions.  At KodeKloud, she designs and manages large-scale lab infrastructures and hands-on DevOps environments that empower learners to master real-world cloud automation and system reliability.

About the instructor

Nourhan Mohamed is a DevOps Instructor and Cloud Native Enthusiast at KodeKloud, specializing in Kubernetes, Docker, CI/CD, and cloud-native technologies. As a Golden Kubestronaut, she focuses on container orchestration, automation, and troubleshooting. At KodeKloud, she designs hands-on DevOps labs that bridge theory with real-world application, empowering learners to build scalable and resilient systems.

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