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NEW QUESTION # 69
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 # 70
What is risk mitigation?
Answer: B
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 # 71
What common mitigation tool is used for directly handling or treating cyber risks?
Answer: C
Explanation:
In cybersecurity risk management, risk treatment is the set of actions used to reduce risk to an acceptable level. The most common tool used to directly treat or mitigate cyber risk is a control because controls are the specific safeguards that prevent, detect, or correct adverse events. Cybersecurity frameworks describe controls as measures implemented to reduce either the likelihood of a threat event occurring or the impact if it does occur. Controls can be technical (such as multifactor authentication, encryption, endpoint protection, network segmentation, logging and monitoring), administrative (policies, standards, training, access approvals, change management), or physical (badges, locks, facility protections). Regardless of type, controls are the direct mechanism used to mitigate identified risks.
An exit strategy is typically a vendor or outsourcing risk management concept focused on how to transition away from a provider or system; it supports resilience but is not the primary tool for directly mitigating a specific cyber risk. Standards guide consistency by defining required practices and configurations, but the standard itself is not the mitigation-controls implemented to meet the standard are. A business continuity plan supports availability and recovery after disruption, which is important, but it primarily addresses continuity and recovery rather than directly reducing the underlying cybersecurity risk in normal operations. Therefore, the best answer is the one that represents the direct implementation of safeguards: controls.
NEW QUESTION # 72
NIST 800-30 defines cyber risk as a function of the likelihood of a given threat-source exercising a potential vulnerability, and:
Answer: C
Explanation:
NIST SP 800-30 describes risk using a classic risk model: risk is a function of likelihood and impact. In this model, a threat-source may exploit a vulnerability, producing a threat event that results in adverse consequences. The likelihood component reflects how probable it is that a threat event will occur and successfully cause harm, considering factors such as threat capability and intent (or in non-adversarial cases, the frequency of hazards), the existence and severity of vulnerabilities, exposure, and the strength of current safeguards. However, likelihood alone does not define risk; a highly likely event that causes minimal harm may be less important than a less likely event that causes severe harm.
The second required component is the impact-the magnitude of harm to the organization if the adverse event occurs. Impact is commonly evaluated across mission and business outcomes, including financial loss, operational disruption, legal or regulatory consequences, reputational damage, and loss of confidentiality, integrity, or availability. This is why option D is correct: NIST's definition explicitly ties the risk expression to the resulting impact on the organization.
The other options may influence likelihood assessment or control selection, but they are not the missing definitional element. Detection probability and control assurance relate to monitoring and governance; predisposing conditions can shape likelihood. None replace the
NEW QUESTION # 73
The opportunity cost of increased cybersecurity is that:
Answer: D
Explanation:
Opportunity cost is a core enterprise-risk and economics concept: when an organization allocates limited resources to one activity, it reduces what is available for other priorities. Increasing cybersecurity typically requires money, skilled personnel time, executive attention, tooling, and operational capacity. Those resources could otherwise be used for revenue-generating work such as new product features, customer experience improvements, system modernization, market expansion, or process automation. That tradeoff is exactly what option D describes, making it the correct answer.
Cybersecurity documents stress that risk treatment decisions must balance risk reduction against cost, feasibility, and business impact. While stronger security can reduce the likelihood and impact of incidents, it can also introduce friction (extra approval steps, stronger authentication, segmentation), slow delivery when changes require additional reviews, and demand ongoing operational effort (monitoring, patching, vulnerability remediation, access recertification, incident response testing). These impacts are not arguments against security; they are the reason governance processes prioritize controls based on the most critical assets, highest-risk threats, and compliance requirements.
Option A may be true in some cases, but it describes a direct cost, not the broader economic concept of opportunity cost. Option B is a trend statement and not the definition. Option C is incorrect because security spend is not always less than breach risk; organizations must evaluate cost-benefit and acceptable residual risk rather than assume a universal rule.
NEW QUESTION # 74
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