- A
Cisco Firepower
Why wrong: Firepower is a firewall, not designed for container policies.
- B
Cisco ACI
Why wrong: ACI is a data center network fabric, not for containers.
- C
Cisco ISE
Why wrong: ISE is for identity and access management, not container micro-segmentation.
- D
Cisco Secure Workload
Secure Workload provides micro-segmentation and visibility for containers.
Quick Answer
The answer is Cisco Secure Workload. This solution provides micro-segmentation for containers in Azure Kubernetes Service (AKS) by enforcing inter-container communication policies based on labels, using a Kubernetes-native approach that integrates with the Kubernetes API to discover pods and services. It applies label-based policies via eBPF or sidecar proxies to control traffic between containers without modifying the application. On the Cisco SCOR 350-701 exam, this question tests your understanding of how modern security tools address containerized environments, often appearing as a scenario where a DevOps team needs label-based policy enforcement in AKS. A common trap is confusing Cisco Secure Workload with Cisco ACI or Firepower, but remember that Secure Workload is the only Cisco solution purpose-built for container microsegmentation using eBPF and Kubernetes-native integration. Memory tip: "Secure Workload secures the workload, not the network—think labels, not VLANs."
350-701 Cloud Security Practice Question
This 350-701 practice question tests your understanding of cloud security. Match the stated requirement to the specific cloud service, access model, or configuration option — many options are valid in isolation but not for this scenario. After answering, compare your reasoning against the explanation and wrong-answer breakdown below. Once you have made your selection, read the full explanation to reinforce the concept and understand why each distractor is designed to mislead on exam day.
A DevOps team is deploying microservices in Azure Kubernetes Service (AKS). They need to enforce inter-container communication policies based on labels. Which Cisco solution provides micro-segmentation for containers in AKS?
Answer choices
Why each option matters
Answer the question above first, then reveal the full breakdown to understand why each option is right or wrong.
Correct answer & explanation
Cisco Secure Workload
Cisco Secure Workload (formerly Tetration) is the correct solution because it provides micro-segmentation for containers in Azure Kubernetes Service (AKS) by enforcing inter-container communication policies based on labels. It uses a Kubernetes-native approach, integrating with the Kubernetes API to discover pods and services, and applies label-based policies via eBPF or sidecar proxies to control traffic between containers without modifying the application.
Key principle: Answer the scenario, not the keyword: identify the specific constraint before choosing the most familiar-sounding option.
Answer analysis
Option-by-option breakdown
For each option: why learners choose it and why it is or isn't the right answer here.
- ✗
Cisco Firepower
Why it's wrong here
Firepower is a firewall, not designed for container policies.
- ✗
Cisco ACI
Why it's wrong here
ACI is a data center network fabric, not for containers.
- ✗
Cisco ISE
Why it's wrong here
ISE is for identity and access management, not container micro-segmentation.
- ✓
Cisco Secure Workload
Why this is correct
Secure Workload provides micro-segmentation and visibility for containers.
Related concept
Read the scenario before looking for a memorised answer.
Common exam traps
Common exam trap: answer the scenario, not the keyword
Cisco often tests the distinction between network-level micro-segmentation (ACI) and workload-level micro-segmentation (Secure Workload), so the trap here is assuming ACI can natively enforce Kubernetes label-based policies, when in fact Secure Workload is the only option that directly integrates with Kubernetes labels for container micro-segmentation in AKS.
Detailed technical explanation
How to think about this question
Cisco Secure Workload leverages eBPF (extended Berkeley Packet Filter) to instrument kernel-level visibility and enforcement without sidecars, or uses Envoy sidecar proxies for service mesh integration. It maps Kubernetes labels to security policies using the Kubernetes API watcher, enabling dynamic policy updates as pods scale or labels change. In real-world scenarios, this allows a DevOps team to enforce zero-trust rules like 'only pods with label 'tier: frontend' can communicate with pods labeled 'tier: backend' on TCP port 8080' without managing IP addresses or VLANs.
KKey Concepts to Remember
- Read the scenario before looking for a memorised answer.
- Find the constraint that changes the correct option.
- Eliminate answers that are true in general but not in this case.
TExam Day Tips
- Watch for words such as best, first, most likely and least administrative effort.
- Review why wrong options are wrong, not only why the correct option is correct.
Key takeaway
Answer the scenario, not the keyword: identify the specific constraint before choosing the most familiar-sounding option.
Real-world example
How this comes up in practice
A small business has 20 workstations on the 192.168.1.0/24 network and one public IP from its ISP. The router uses PAT (NAT overload) so all 20 devices share one public address using different source ports. NAT questions test whether you understand the four address terms and which direction each translation applies.
What to study next
Got this wrong? Here's your next step.
Identify which exam domain this question belongs to, review the core concept, then practise similar questions from the same domain.
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FAQ
Questions learners often ask
What does this 350-701 question test?
Cloud Security — This question tests Cloud Security — Read the scenario before looking for a memorised answer..
What is the correct answer to this question?
The correct answer is: Cisco Secure Workload — Cisco Secure Workload (formerly Tetration) is the correct solution because it provides micro-segmentation for containers in Azure Kubernetes Service (AKS) by enforcing inter-container communication policies based on labels. It uses a Kubernetes-native approach, integrating with the Kubernetes API to discover pods and services, and applies label-based policies via eBPF or sidecar proxies to control traffic between containers without modifying the application.
What should I do if I get this 350-701 question wrong?
Identify which exam domain this question belongs to, review the core concept, then practise similar questions from the same domain.
What is the key concept behind this question?
Read the scenario before looking for a memorised answer.
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Last reviewed: Jun 25, 2026
This 350-701 practice question is part of Courseiva's free Cisco certification practice question bank. Courseiva provides original exam-style practice questions with explanations, topic-based practice, mock exams, readiness tracking, and study analytics to help learners prepare for the 350-701 exam.
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