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NEW QUESTION # 43
How does Transport Layer Security ensure the reliability of a connection?
Answer: A
Explanation:
Transport Layer Security (TLS) strengthens the trustworthiness of application communications by ensuring that data exchanged over an untrusted network is not silently modified and is coming from the expected endpoint. While TCP provides delivery features such as sequencing and retransmission, TLS contributes to what many cybersecurity documents describe as "reliable" secure communication by adding cryptographic integrity protections. TLS uses integrity checks (such as message authentication codes in older versions/cipher suites, or authenticated encryption modes like AES-GCM and ChaCha20-Poly1305 in modern TLS) so that any alteration of data in transit is detected. If an attacker intercepts traffic and tries to change commands, session data, or application content, the integrity verification fails and the connection is typically terminated, preventing corrupted or manipulated messages from being accepted as valid.
This is distinct from merely being "stateful" (a transport-layer property) or "using TCP/IP" (a networking stack choice). TLS can run over TCP and relies on TCP for delivery reliability, but TLS itself is focused on confidentiality, integrity, and endpoint authentication. Public/private keys and certificates are used during the TLS handshake to authenticate servers (and optionally clients) and to establish shared session keys, but the ongoing protection that prevents undetected tampering is the integrity check on each protected record. Therefore, the best match to how TLS ensures secure, dependable communication is the message integrity mechanism described in option B.
NEW QUESTION # 44
What is risk mitigation?
Answer: C
Explanation:
Risk mitigation is the risk treatment approach focused on reducing risk to an acceptable level by lowering either the likelihood of a risk event, the impact of that event, or both. In cybersecurity risk management, mitigation is accomplished by implementing controls and countermeasures such as technical safeguards, process changes, and administrative measures. Examples include patching vulnerable systems, hardening configurations, enabling multi-factor authentication, applying least privilege, network segmentation, encryption, improved logging and monitoring, secure development practices, and user awareness training. Each of these actions reduces exposure or limits damage if an incident occurs.
The other options describe different risk treatment strategies, not mitigation. Purchasing insurance is generally considered risk transfer, where financial impact is shifted to a third party, but the underlying threat and vulnerability may still exist. Eliminating risk by stopping the risky activity is risk avoidance; it removes the exposure by discontinuing the process, system, or behavior causing the risk. Documenting the risk and preparing a recovery plan aligns more closely with risk acceptance combined with contingency planning or resilience planning; it acknowledges the risk and focuses on recovery rather than reducing the probability of occurrence.
Therefore, the correct definition of risk mitigation is reducing the risk through implementing one or more countermeasures.
NEW QUESTION # 45
When attackers exploit human emotions and connection to gain access, what technique are they using?
Answer: D
Explanation:
Social engineering is the broad technique attackers use when they manipulate human psychology-such as trust, fear, urgency, curiosity, sympathy, authority, or the desire to be helpful-to persuade someone to take an action that benefits the attacker. The key idea in the question is "exploit human emotions and connection," which is the defining characteristic of social engineering. Rather than breaking a system through purely technical means, the attacker targets the person as the easiest path to access, credentials, sensitive information, or physical entry.
Phishing is a specific subtype of social engineering that typically uses email, text messages, or fake websites to trick users into clicking links, opening attachments, or entering credentials. Tailgating is another subtype focused on physical access, where an attacker follows an authorized person into a restricted area by leveraging politeness or social pressure. Malware is malicious software used to compromise systems; it can be delivered through social engineering, but malware itself is not the human-manipulation technique.
Cybersecurity control guidance treats social engineering as a major risk because it can bypass technical protections by causing legitimate users to unintentionally grant access. Common defenses include awareness training, verification procedures (call-back and out-of-band confirmation), least privilege, multi-factor authentication, strong email and web filtering, and clear reporting channels so suspicious requests can be escalated quickly.
NEW QUESTION # 46
What stage of incident management would "strengthen the security from lessons learned" fall into?
Answer: A
Explanation:
"Strengthen the security from lessons learned" fits the remediation stage because it focuses on eliminating root causes and improving controls so the same incident is less likely to recur. In incident management lifecycles, response is about immediate actions to contain and manage the incident (triage, containment, eradication actions in progress, communications, and preserving evidence). Detection is the identification and confirmation stage (alerts, analysis, validation, and initial classification). Recovery is restoring services to normal operation and verifying stability, including bringing systems back online, validating data integrity, and meeting recovery objectives.
After the environment is stable, organizations conduct a post-incident review and then implement corrective and preventive actions. That work is remediation: closing exploited vulnerabilities, hardening configurations, rotating credentials and keys, tightening access and privileged account controls, improving monitoring and logging coverage, updating firewall rules or segmentation, refining secure development practices, and correcting process gaps such as weak change management or incomplete asset inventory. Remediation also includes updating policies and playbooks, enhancing detection rules based on observed attacker techniques, and training targeted groups if human factors contributed.
Cybersecurity guidance emphasizes documenting lessons learned, assigning owners and deadlines, validating fixes, and tracking completion because "lessons learned" without implemented change does not reduce risk. The defining characteristic is durable improvement to the control environment, which is why this activity belongs to remediation rather than response, detection, or recovery.
NEW QUESTION # 47
Which capability would a solution option need to demonstrate in order to satisfy Logging Requirements?
Answer: C
Explanation:
Logging requirements in cybersecurity focus on ensuring the system can produce reliable, actionable records that support detection, investigation, compliance, and accountability. The most fundamental capability is the ability to record information about user access and actions within the system. This includes authentication events such as logon success or failure, logoff, session creation, and privilege elevation; authorization decisions such as access granted or denied; and security-relevant actions such as viewing, creating, modifying, deleting, exporting, or transmitting sensitive data. Good security logging also captures context like timestamp synchronization, user or service identity, source device or IP, target resource, action performed, and outcome.
This capability supports multiple operational needs. Security monitoring teams rely on logs to identify anomalies like repeated failed logins, unusual access times, access from unexpected locations, or high-risk administrative changes. Incident responders need logs to reconstruct timelines, confirm scope, and preserve evidence. Auditors and compliance teams require logs to demonstrate control effectiveness, segregation of duties, and traceability of changes.
The other options are not sufficient to satisfy logging requirements. Single sign-on can simplify authentication but does not guarantee application-level activity logging. Integration with specialized tools may be useful, but the solution must first generate the required events. Deployment model options do not address whether the system can create detailed audit trails. Therefore, the required capability is recording user access and actions in the system.
NEW QUESTION # 48
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