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| Certification Vendor: | Zscaler |
|---|---|
| Exam Name: | Zero Trust Cyber Associate (ZTCA) Exam |
| Exam Number: | ZTCA |
| Real Exam Qty: | 75 |
| Exam Price: | $300 USD |
| Exam Duration: | 120 minutes |
| Certificate Validity Period: | 3 years |
| Related Certifications: | Zscaler Zero Trust Cyber Expert Zscaler Zero Trust Cyber Professional |
| Available Languages: | English |
| Exam Format: | Multiple Choice, Multiple Select |
| Passing Score: | 70% |
| Recommended Training: | Zero Trust Cyber Associate e-Learning Path |
| Exam Registration: | Zscaler Cyber Academy |
| Sample Questions: | Zscaler ZTCA Sample Questions |
| Exam Way: | Online, unproctored; up to 3 retakes allowed |
| Pre Condition: | Basic knowledge of networking and cybersecurity; no mandatory prerequisites |
| Official Syllabus URL: | https://www.zscaler.com/zscaler-cyber-academy/ztca-zero-trust-cyber-associate |
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NEW QUESTION # 47
In a Zero Trust architecture, what is required to apply the first levels of control policy decisions?
Answer: B
Explanation:
The correct answer is C. Context and Identity. In Zero Trust architecture, the earliest control decisions cannot be made effectively unless the platform first understands who is making the request and under what conditions that request is happening. That means identity must be verified, and context must be evaluated.
Context includes factors such as device posture, location, group membership, application sensitivity, and risk- related conditions. Without those inputs, the architecture cannot determine whether the request should be allowed, restricted, isolated, or blocked.
SSL/TLS inspection is highly important for deeper content-aware controls, but it is not the first requirement for the initial level of control decisions. Local breakout is a traffic-forwarding design choice, not the foundational requirement for policy decision-making. Air-gapping an OT network is a segmentation strategy, but it does not represent the first control layer in Zero Trust. Zero Trust begins with verification and contextual understanding, because policy must be tied to the specific request, not to broad network assumptions. Therefore, the first levels of control policy decisions require context and identity.
NEW QUESTION # 48
One example of accessing different types of services based on a differentiator of identity is:
Answer: D
Explanation:
The correct answer is C . In Zero Trust architecture, access is determined not only by who the user is, but also by the context of the device and access method . Zscaler documentation explains that policy assignment evaluates the user, machine, location, group, and more to determine which policies apply. It also states that Zero Trust access decisions can consider device posture and whether access is being requested under trusted or untrusted conditions.
A browser session from an untrusted device and a session from a device running Zscaler Client Connector represent two different identity-and-context states. The user identity may be the same, but the device trust and posture are different, so the available services and the enforcement outcome can differ. This is exactly how Zero Trust should work: access is tailored to the verified context of the request rather than granted broadly through network location. The other options do not represent a meaningful Zero Trust identity differentiator.
An open-access VPN policy is contrary to Zero Trust, wired versus wireless is primarily a network transport distinction, and MSP management is unrelated to the access decision itself. Therefore, the best answer is C .
NEW QUESTION # 49
Verification of user and device identity is to be enabled for:
Answer: A
Explanation:
The correct answer is A. In Zero Trust architecture, verification of both user identity and device context should be applied to any person requesting access to an enterprise-controlled application. That includes employees, contractors, partners, and other third parties. Zscaler's Universal ZTNA guidance states that Zero Trust gives users access to applications based on granular, context-based policies and that the user can be anywhere while the application can be hosted anywhere. This model is not restricted only to remote employees or only to outside parties.
The central principle is that no category of user receives automatic trust simply because of employment status, device ownership, or location. Instead, every access request must be evaluated using current identity and contextual information. That is why Zero Trust architectures verify not just the individual but also conditions such as device posture, location, group, and other policy-relevant attributes. Restricting this verification only to remote staff, unmanaged devices, or external users would recreate the implicit-trust problem that Zero Trust is meant to eliminate. Therefore, the correct architectural answer is that verification should apply to any person connecting to an enterprise-controlled application.
NEW QUESTION # 50
What are two categories of destination applications in Zero Trust?
Answer: A
Explanation:
The correct answer is A . In Zero Trust architecture, destination applications must be understood and differentiated so the right policy can be applied. Zscaler's ZPA segmentation guidance explains that organizations need to identify, define, and characterize applications as part of moving from network-based access to granular user-to-application segmentation. This naturally supports a distinction between known applications , which are already categorized and understood, and unknown applications , which still require profiling, learning, and more cautious control.
This approach is consistent with Zero Trust because applications are not all treated equally. If an application is well understood, policy can be more precise. If it is unknown or not yet properly categorized, the enterprise may need to inspect, limit, isolate, or otherwise conditionally control access until its risk and purpose are clear. The other options are too narrow or too generic to represent the intended Zero Trust categorization model. Therefore, the best answer is the distinction between known and unknown destination applications, with unknown applications requiring profiling and conditional control before they can be fully trusted.
NEW QUESTION # 51
As a connection goes through, the Zero Trust Exchange:
Answer: D
Explanation:
The correct answer is A . In Zscaler's architecture, the Zero Trust Exchange is not just a packet-forwarding firewall or a single appliance. It is the cloud-delivered policy and security fabric that evaluates access through the core Zero Trust sequence of verify, control, and enforce . The architecture documents describe Zero Trust access as depending on establishing identity, evaluating context, and then applying the appropriate control for that specific request. ZPA guidance explains that users are evaluated for context such as location, device posture, groups, and time of day, and access is granted only if the request matches the required policies.
Option B is incorrect because the Zero Trust Exchange is not limited to a hardened enterprise data center appliance. Option C is incorrect because Zscaler explicitly provides inline controls such as firewalling, DLP, and related inspection services. Option D is also incomplete because the Zero Trust Exchange does more than pass traffic through; it makes access and security decisions. Therefore, the best architecture-aligned answer is that the Zero Trust Exchange carries out the Zero Trust process of Verify, Control, and Enforce as part of completing the transaction.
NEW QUESTION # 52
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