Get The Most Updated NSK100 Dumps To Netskope NCCSA Certification [Q18-Q42]

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Get The Most Updated NSK100 Dumps To Netskope NCCSA Certification

Netskope Certified NSK100  Dumps Questions Valid NSK100 Materials

NEW QUESTION # 18
Which two technologies form a part of Netskope's Threat Protection module? (Choose two.)

  • A. sandbox
  • B. log parser
  • C. heuristics
  • D. DLP

Answer: A,C

Explanation:
Explanation
To protect your users from malicious scripts that may be downloaded from websites, you need to use technologies that can detect and prevent malware, ransomware, phishing, and other advanced threats in web traffic. Two technologies that form a part of Netskope's Threat Protection module, which is a feature in the Netskope platform that provides these capabilities, are sandbox and heuristics. Sandbox is a technology that allows Netskope to analyze suspicious files or URLs in a virtual environment isolated from the rest of the network. It simulates the execution of the files or URLs and observes their behavior and impact on the system.
It then generates a verdict based on the analysis and blocks any malicious files or URLsfrom reaching your users or devices. Heuristics is a technology that allows Netskope to identify unknown or emerging threats based on their characteristics or patterns, rather than relying on predefined signatures or rules. It uses machine learning and artificial intelligence to analyze various attributes of files or URLs, such as file type, size, entropy, metadata, code structure, etc., and assigns a risk score based on the analysis. It then blocks any files or URLs that exceed a certain risk threshold from reaching your users or devices. A log parser or DLP are not technologies that form a part of Netskope's Threat Protection module, as they are more related to discovering cloud applications or protecting sensitive data. References: [Netskope Threat Protection], Netskope Security Cloud Operation & Administration (NSCO&A) - Classroom Course, Module 9: Threat Protection.


NEW QUESTION # 19
When would an administrator need to use a tombstone file?

  • A. You use a tombstone file when a policy causes a file to be moved to legal hold.
  • B. You use a tombstone file when a policy causes a publicly shared file to be encrypted.
  • C. You use a tombstone file when a policy causes a file download to be blocked.
  • D. You use a tombstone file when the policy causes a file to be moved to quarantine.

Answer: D

Explanation:
Explanation
A tombstone file is a placeholder file that replaces the original file when it is moved to quarantine by a Netskope policy. The tombstone file contains information about the original file, such as its name, size, type, owner, and the reason why it was quarantined. The tombstone file also provides a link to the Netskope UI where the administrator or the file owner can view more details about the incident and take appropriate actions, such as restoring or deleting the file. The purpose of using a tombstone file is to preserve the metadata and location of the original file, as well as to notify the users about the quarantine action and how to access the file if needed. References: Threat Protection - Netskope Knowledge PortalNetskope threat protection - Netskope


NEW QUESTION # 20
How do you provision users to your customer's Netskope tenant? (Choose two.)

  • A. Use the Directory Importer.
  • B. Use Microsoft Intune.
  • C. Use SCIM.
  • D. Use the AD Connector.

Answer: A,D

Explanation:
Explanation
To provision users to your customer's Netskope tenant, two methods that you can use are: use the AD Connector and use SCIM. The AD Connector is a tool that allows you to synchronize users and groups from your Active Directory (AD) domain to your Netskope tenant. The AD Connector runs as a Windows service on a machine that has access to your AD domain controller. The AD Connector periodically queries your AD domain for any changes in users and groups and updates them in your Netskope tenant accordingly. The AD Connector also supports filtering users and groups based on attributes or organizational units (OUs). SCIM stands for System for Cross-domain Identity Management, which is a standard protocol for managing user identities across different applications and services. SCIM allows you to provision users and groups from your identity provider (IdP), such as Azure AD or Okta, to your Netskope tenant using APIs. SCIM also supports creating, updating, deleting, and searching users and groups in your Netskope tenant based on your IdP's configuration. References: Netskope AD ConnectorUser Provisioning with Azure AD


NEW QUESTION # 21
What are two use cases for Netskope's DLP solution? (Choose two.)

  • A. to ensure regulatory compliance
  • B. to detect sensitive data in password protected files
  • C. to detect malware in files before they are uploaded to a cloud application
  • D. to stop unintentional data movement

Answer: A,D

Explanation:
Explanation
Netskope's DLP solution is a powerful tool that can help customers protect their sensitive data from unauthorized access, exposure, or loss. One use case for Netskope's DLP solution is to stop unintentional data movement, such as accidental uploads, downloads, or sharing of confidential files or information to or from cloud applications. Another use case for Netskope's DLP solution is to ensure regulatory compliance, such as GDPR, HIPAA, PCI-DSS, or other industry-specific standards that require data protection and privacy measures. Netskope's DLP solution can help customers comply with these regulations by detecting and preventing data breaches, enforcing encryption policies, applying data retention rules, and generating audit reports. Detecting malware in files before they are uploaded to a cloud application or detecting sensitive data in password protected files are not use cases for Netskope's DLP solution, asthey are more related to threat protection or file inspection capabilities. References: Netskope Security Cloud Operation & Administration (NSCO&A) - Classroom Course, Module 6: Data Loss Prevention, Lesson 1: DLP Overview.


NEW QUESTION # 22
In the Skope IT interface, which two event tables would be used to label a cloud application instance? (Choose two.)

  • A. Network Events
  • B. Application Events
  • C. Page Events
  • D. Alerts

Answer: B,C

Explanation:
Explanation
In the Skope IT interface, which is a feature in the Netskope platform that allows you to view and analyze all the activities performed by users on cloud applications, there are two event tables that would be used to label a cloud application instance: Page Events and Application Events. Page Events are events that capture the URL and category of the web pages visited by users, as well as the time spent and the bytes transferred on each page. Application Events are events that capture the details of the actions performed by users on cloud applications, such as upload, download, share, edit, delete, etc. You can use these event tables to label a cloud application instance by applying filters based on the domain name or URL of the instance, such as drive.google.com/a/yourcompany.com or slack.com/yourteam. You can then assign a custom label to the filtered events and use it for reporting or policy enforcement. Network Events and Alerts are not event tables that would be used to label a cloud application instance, as they are more related to network traffic or policy violations, rather than cloud application activities. References: [Netskope Skope IT], Netskope Security Cloud Operation & Administration (NSCO&A) - Classroom Course, Module 8: Skope IT.


NEW QUESTION # 23
Exhibit

Which portion of the interface shown in the exhibit allows an administrator to set severity, assign ownership, track progress, and perform forensic analysis with excerpts of violating content?

  • A. Incidents -> DLP
  • B. Skope IT-> Alerts
  • C. Reports -> New Report
  • D. API-enabled Protection -> Inventory

Answer: A

Explanation:
Explanation
The portion of the interface shown in the exhibit that allows an administrator to set severity, assign ownership, track progress, and perform forensic analysis with excerpts of violating content is Incidents -> DLP. The Incidents dashboard provides a comprehensive view of all the incidents that have occurred in your cloud environment, such as DLP violations, malware infections, anomalous activities, etc. You can filter the incidents by various criteria, such as app name, incident type, severity, user name, etc. You can also drill down into each incident to see more details, such as file name, file path, file owner, file size, file type, etc. You can also assign an owner to an incident, change its status and severity, add notes or comments, and view the excerpts of the violating content that triggered the DLP policy. References: Netskope Incidents Dashboard


NEW QUESTION # 24
What are two pillars of CASB? (Choose two.)

  • A. cloud native
  • B. visibility
  • C. SASE
  • D. compliance

Answer: B,D

Explanation:
Explanation
Two pillars of CASB are visibility and compliance. CASB stands for Cloud Access Security Broker, which is a solution that provides visibility and control over cloud services and web traffic, as well as data and threat protection for cloud users and devices. Visibility is thecapability to identify all cloud services in use and assess their risk factors, such as security, auditability, business continuity, etc. Compliance is the capability to ensure that cloud services and data meet the regulatory standards and policies of the organization or industry, such as GDPR, HIPAA, PCI DSS, etc. References: What Is a Cloud Access Security Broker (CASB)? | MicrosoftCASB Guide: What are the 4 Pillars of CASB? - Security Service Edge


NEW QUESTION # 25
What are two reasons why legacy solutions, such as on-premises firewalls and proxies, fail to secure the data and data access compared to Netskope Secure Web Gateway? (Choose two.)

  • A. Legacy solutions are unable to see the user who is trying to access the application.
  • B. Legacy solutions do not meet compliance standards.
  • C. The users accessing this data are not in one central place.
  • D. The applications where the data resides are no longer in one central location.

Answer: C,D

Explanation:
Explanation
Legacy solutions, such as on-premises firewalls and proxies, fail to secure the data and data access compared to Netskope Secure Web Gateway because they are designed for a perimeter-based security model, where the applications and the users are both within the corporate network. However, with the rise of cloud computing and remote work, this model is no longer valid. The applications where the data resides are no longer in one central location, but distributed across multiple cloud services and regions. The users accessing this data are not in one central place, but working from anywhere, on any device. Legacy solutions cannot provide adequate visibility and control over this dynamic and complex environment, resulting in security gaps and performance issues. Netskope Secure Web Gateway, on the other hand, leverages a cloud-native architecture that provides high-performance and scalable inspection of traffic from any location and device, as well as granular policies and advanced threat and data protection for web and cloud applications. References: Netskope Architecture OverviewNetskope Next Gen SWG


NEW QUESTION # 26
You are creating a real-time policy for cloud applications.
In addition to users, groups, and organizational units, which two source criteria would support this scenario?
(Choose two.)

  • A. browser version
  • B. access method
  • C. device classification
  • D. protocol version

Answer: B,C

Explanation:
Explanation
When creating a real-time policy for cloud applications, you can use access method and device classification as source criteria, in addition to users, groups, and organizational units. Access method refers to how the user accesses the cloud application, such as browser, sync client, mobile app, etc. Device classification refers to the type of device used by the user, such as managed or unmanaged, Windows or Mac, etc. These criteria can help you define granular policies based on different scenarios and risks. References: [Creating Real-Time Policies for Cloud Applications]


NEW QUESTION # 27
A customer asks you to create several real-time policies. Policy A generates alerts when any user downloads, uploads, or shares files on a cloud storage application. Policy B blocks users from downloading files from any operating system (OS) other than Mac or Windows for cloud storage. In this case, policy A is least restrictive and policy B is more restrictive.
Which statement is correct in this scenario?

  • A. Policy B is implemented before policy A.
  • B. Policy A is implemented before policy B.
  • C. The policy order is not important; policies are independent of each other.
  • D. These two policies would actually not work together.

Answer: A

Explanation:
Explanation
In this scenario, policy B is more restrictive than policy A, as it blocks users from downloading files from any OS other than Mac or Windows for cloud storage, while policy A only generates alerts when any user downloads, uploads, or shares files on a cloud storage application. Therefore, policy B should be implemented before policy A, as the policy order determines the order of evaluation and enforcement of the policies. If policy A is implemented before policy B, then policy B will never be triggered, as policy A will match all the download activities for cloud storage and generate alerts. The policy order is important; policies are not independent of each other, as they may have overlapping or conflicting conditions and actions. These two policies would actually work together, as long as they are ordered correctly. References: Netskope Security Cloud Operation & Administration (NSCO&A) - Classroom Course, Module 5: Real-Time Policies, Lesson 3:
Policy Order.


NEW QUESTION # 28
You need to block all users from uploading data files into risky collaboration applications. Which element must you configure within Netskope's CASB to accomplish this task?

  • A. real-time policy
  • B. DLP Rule
  • C. DLP Profile
  • D. block notification

Answer: A

Explanation:
Explanation
A real-time policy is a type of policy in Netskope's CASB that allows you to control the actions that users can perform on cloud applications in real time. You can use a real-time policy to block all users from uploading data files into risky collaboration applications by specifying the following elements: the application category (such as Collaboration), the activity (such as Upload), the file type (such as Data), the risk level (such as High or Very High), and the action (such as Block). A DLP rule, a DLP profile, and a block notification are not sufficient to accomplish this task, as they are either sub-components or outcomes of a real-time policy. References: Netskope Security Cloud Operation & Administration (NSCO&A) - Classroom Course, Module 5: Real-Time Policies, Lesson 1: Real-Time Policy Overview and Lesson 2: Real-Time Policy Configuration.


NEW QUESTION # 29
When using an out-of-band API connection with your sanctioned cloud service, what are two capabilities available to the administrator? (Choose two.)

  • A. to find sensitive content
  • B. to allow real-time access
  • C. to quarantine malware
  • D. to block uploads

Answer: A,C

Explanation:
Explanation
When using an out-of-band API connection with your sanctioned cloud service, two capabilities available to the administrator are: to quarantine malware and to find sensitive content. An out-of-band API connection is a method of integrating Netskope with your cloud service provider using the APIs exposed by the cloud service.
This allows Netskope to access the data that is already stored in the cloud service and perform retrospective inspection and enforcement ofpolicies. One capability that the administrator can use with an out-of-band API connection is to quarantine malware. This means that Netskope can scan the files in the cloud service for malware, ransomware, phishing, and other threats, and move them to a quarantine folder or delete them if they are found to be malicious. Another capability that the administrator can use with an out-of-band API connection is to find sensitive content. This means that Netskope can scan the files in the cloud service for sensitive data, such as personal information, intellectual property, or regulated data, and apply data loss prevention (DLP) policies to protect them. For example, Netskope can encrypt, redact, or watermark the files that contain sensitive content, or notify the administrator or the file owner about the exposure. References: Netskope API ProtectionReal-time Control and Data Protection via Out-of-Band API


NEW QUESTION # 30
You are working with traffic from applications with pinned certificates. In this scenario, which statement is correct?

  • A. The domains used by applications with pinned certificates should be allowed in an inline policy.
  • B. Traffic with pinned certificates should be blocked.
  • C. An exception should be added to the steering configuration.
  • D. The domains used by certificate-pinned applications should be added to the authentication bypass list.

Answer: C

Explanation:
Explanation
When working with traffic from applications with pinned certificates, you should add an exception to the steering configuration to bypass them. Pinned certificates are a security technique that prevents man-in-the-middle attacks by validating the server certificates against a hardcoded list of certificates in the application. If you try to intercept or inspect the traffic from such applications, they will reject the connection or display an error message. Therefore, you should add the domains used by certificate-pinned applications as exceptions in your steering configuration, so that they are not steered to Netskope for analysis and enforcement. References: Certificate Pinned ApplicationsCreating a Steering Configuration


NEW QUESTION # 31
A company is attempting to steer traffic to Netskope using GRE tunnels. They notice that after the initial configuration, users cannot access external websites from their browsers.
What are three probable causes for this issue? (Choose three.)

  • A. The configured GRE peer in the Netskope platform is incorrect.
  • B. The route map was applied to the wrong router interface.
  • C. The pre-shared key for the GRE tunnel is incorrect.
  • D. Netskope does not support GRE tunnels.
  • E. The corporate firewall might be blocking GRE traffic.

Answer: A,B,E

Explanation:
Explanation
In this scenario, there are three probable causes for the issue of users not being able to access external websites from their browsers after attempting to steer traffic to Netskope using GRE tunnels. One cause is that the configured GRE peer in the Netskope platform is incorrect, which means that the Netskope POP that is supposed to receive the GRE traffic from the customer's network is not matching the IP address of the customer's router that is sending the GRE traffic. This will result in a failure to establish a GRE tunnel between the customer and Netskope. Another cause is that the corporate firewall might be blocking GRE traffic, which means that the firewall rules are not allowing the GRE protocol (IP protocol number 47) or the UDP port 4789 (for VXLAN encapsulation) to pass through. This will result in a failure to send or receive GRE packets between the customer and Netskope. A third cause is that the route map was applied to the wrong router interface, which means that the configuration that specifies which traffic should be steered to Netskope using GRE tunnels was not applied to the correct interface on the customer's router. This will result in a failure to steer the desired traffic to Netskope. The pre-shared key for the GRE tunnel is incorrect is not a probable cause for this issue, as GRE tunnelsdo not use pre-shared keys for authentication or encryption.
Netskope does support GRE tunnels, so this is not a cause for this issue either. References: [Netskope Secure Forwarder], Netskope Security Cloud Operation & Administration (NSCO&A) - Classroom Course, Module
3: Steering Configuration, Lesson 3: Secure Forwarder.


NEW QUESTION # 32
Which two traffic steering configurations are supported by Netskope? (Choose two.)

  • A. Web traffic only
  • B. all Web traffic including cloud applications
  • C. cloud applications only
  • D. browser isolation traffic only

Answer: B,C

Explanation:
Explanation
The two traffic steering configurations that are supported by Netskope are cloud applications only and all Web traffic including cloud applications. These configurations allow you to control what kind of traffic gets steered to Netskope for real-time deep analysis and what kind of traffic gets bypassed. You can choose one of these options for both on-premises and off-premises scenarios, depending on your network environment and security needs. You can also create exceptions for specific domains, IP addresses, or certificate-pinned applications that you want to bypass or steer regardless of the configuration option. References: Steering ConfigurationCreating a Steering Configuration


NEW QUESTION # 33
Which two statements describe a website categorized as a domain generated algorithm (DGA)? (Choose two.)

  • A. The website is used for domain registration.
  • B. The domain was created by a program.
  • C. The domain contains malicious algorithms.
  • D. The website is used to hide a command-and-control server.

Answer: B,D

Explanation:
Explanation
Two statements that describe a website categorized as a domain generated algorithm (DGA) are: The website is used to hide a command-and-control server and the domain was created by a program. A domain generated algorithm (DGA) is a technique used by cyber attackers to generate new domain names and IP addresses for malware's command and control servers. Executed in a manner that seems random, it makes it nearly impossible for threat hunters to detect and contain the attack. A command-and-control server is a server that communicates with malware installed on infected machines and sends commands or updates to them. A program is a piece of software that performs a specific task or function. A domain generated algorithm is implemented by a program that runs on the attacker's machine or the malware itself, and produces a large number of domain names based on some logic, such as date, time, seed, dictionary, etc. References: Domain generation algorithmAmong cyber-attack techniques, what is a DGA?


NEW QUESTION # 34
A customer wants to detect misconfigurations in their AWS cloud instances.
In this scenario, which Netskope feature would you recommend to the customer?

  • A. Netskope Cloud Security Posture Management (CSPM)
  • B. Netskope Secure Web Gateway (SWG)
  • C. Netskope Advanced DLP and Threat Protection
  • D. Netskope SaaS Security Posture Management (SSPM)

Answer: A

Explanation:
Explanation
If a customer wants to detect misconfigurations in their AWS cloud instances, the Netskope feature that I would recommend to them is Netskope Cloud Security Posture Management (CSPM). Netskope CSPM is a service that provides continuous assessment and remediation of public cloud deployments for risks, threats, and compliance issues. Netskope CSPM leverages the APIs available from AWS and other cloud service providers to scan the cloud infrastructure for misconfigurations, such as insecure permissions, open ports, unencrypted data, etc. Netskope CSPM also provides security posture policies, profiles, and rules that can be customized to match the customer's security standards and best practices. Netskope CSPM can also alert, report, or remediate the misconfigurations automatically or manually. References: Netskope CSPMCloud Security Posture Management


NEW QUESTION # 35
What are two CASB inline interception use cases? (Choose two.)

  • A. blocking file uploads to a personal Box account
  • B. scanning Dropbox for credit card information
  • C. using the Netskope steering client to provide user alerts when sensitive information is posted in Slack
  • D. running a retroactive scan for data at rest in Google Drive

Answer: A,C

Explanation:
Explanation
CASB inline interception use cases are scenarios where you need to apply real-time policies and actions on the traffic between users and cloud applications. For example, you may want to block file uploads to a personal Box account to prevent data leakage or exfiltration. You can use Netskope's inline proxy mode to intercept and inspect the traffic between users and Box, and apply granular policies based on user identity, device type, app instance, file metadata, etc. You can also use Netskope's inline proxy mode to provide user alerts when sensitive information is posted in Slack. For example, you may want to warn users when they share credit card numbers or social security numbers in Slack channels or messages. You can use Netskope's steering client to redirect the traffic between users and Slack to Netskope's inline proxy for inspection and enforcement. You can also use Netskope's DLP engine to detect sensitive data patterns and apply actions such as alerting or blocking. References: Netskope Inline Proxy ModeNetskope Steering Client [Netskope DLP Engine]


NEW QUESTION # 36
Which two functions are available for both inline and API protection? (Choose two.)

  • A. DLP
  • B. threat protection
  • C. multi-factor authentication
  • D. Cloud Security Posture Management (CSPM)

Answer: A,B

Explanation:
Explanation
Netskope provides both inline and API protection for cloud applications and web traffic. Inline protection refers to the real-time inspection and enforcement of policies on the traffic between users and cloud applications, using Netskope's inline proxy mode. API protection refers to the retrospective inspection and enforcement of policies on the data that is already stored in cloud applications, using Netskope's API connectors. Two functions that are available for both inline and API protection are threat protection and DLP.
Threat protection is the capability to detect and block malware, ransomware, phishing, and other cyber threats that may compromise cloud data or users. DLP is the capability to detect and protect sensitive data, such as personal information, intellectual property, or regulated data, that may be exposed or leaked through cloud applications. References: Netskope Inline Proxy ModeNetskope API ProtectionNetskope Threat ProtectionNetskope DLP Engine


NEW QUESTION # 37
According to Netskope. what are two preferred methods to report a URL miscategorization? (Choose two.)

  • A. Use www.netskope.com/url-lookup.
  • B. Tag Netskope on Twitter.
  • C. Email [email protected].
  • D. Use the URL Lookup page in the dashboard.

Answer: A,D

Explanation:
Explanation
According to Netskope, two preferred methods to report a URL miscategorization are: use www.netskope.com/url-lookup and use the URL Lookup page in the dashboard. The first method allows you to visit www.netskope.com/url-lookup in your browser and enter any URL that you want to check or report for miscategorization. You will see the current category assigned by Netskope for that URL and you can submit a request to change it if you think it is incorrect. The second method allows you to use the URL Lookup page in the dashboard of your Netskope platform tenant and enter any URL that you want to check or report for miscategorization. You will see the current category assigned by Netskope for that URL and you can submit a request to change it if you think it is incorrect. Emailing [email protected] or tagging Netskope on Twitter are not preferred methods to report a URL miscategorization, as they are not designed for this purpose and may not be as efficient or effective as using the dedicated tools provided by Netskope. References: [Netskope URL Lookup], Netskope Security Cloud Operation & Administration (NSCO&A) - Classroom Course, Module 8: Skope IT, Lesson 2: Page Events.


NEW QUESTION # 38
You have applied a DLP Profile to block all Personally Identifiable Information data uploads to Microsoft 365 OneDrive. DLP Alerts are not displayed and no OneDrive-related activities are displayed in the Skope IT App Events table.
In this scenario, what are two possible reasons for this issue? (Choose two.)

  • A. The destination domain is excluded from decryption in the decryption policy.
  • B. DLP policies do not apply when using IPsec as a steering option.
  • C. A Netskope POP is not in your local country and therefore DLP policies cannot be applied.
  • D. The Cloud Storage category is in the Steering Configuration as an exception.

Answer: A,D

Explanation:
Explanation
If the Cloud Storage category is in the Steering Configuration as an exception, then Netskope will not steer any traffic to or from cloud storage applications, such as Microsoft 365 OneDrive, to its platform. This means that Netskope will not be able to inspect or apply any policies to this traffic, including DLP policies. Similarly, if the destination domain is excluded from decryption in the decryption policy, then Netskope will not decrypt any traffic to or from that domain, such as onedrive.com. This means that Netskope will not be able to inspect or apply any policies to this traffic, including DLP policies. The location of the Netskope POP or the use of IPsec as a steering option do not affect the application of DLP policies, as long as Netskope can steer and decrypt the relevant traffic. References: Netskope Security Cloud Operation & Administration (NSCO&A) - Classroom Course, Module 3: Steering Configuration, Lesson 1: Steering Options and Lesson 2: Exceptions; Module 4: Decryption Policy, Lesson 1: Decryption Policy Overview and Lesson 2: Decryption Policy Configuration.
https://www.bsimm.com/ : https://www.iso.org/isoiec-27001-information-security.html :
https://www.dasca.org/ : https://www.nist.gov/cyberframework


NEW QUESTION # 39
Exhibit

A user is connected to a cloud application through Netskope's proxy.
In this scenario, what information is available at Skope IT? (Choose three.)

  • A. user activity, cloud app risk rating
  • B. account instance, URL category
  • C. username. device location
  • D. destination IP. OS patch version
  • E. file version, shared folder

Answer: A,B,C

Explanation:
Explanation
In this scenario, a user is connected to a cloud application through Netskope's proxy, which is a deployment method that allows Netskope to intercept and inspect the traffic between the user and the cloud application in real time. In this case, Netskope can collect and display various information about the user and the cloud application at Skope IT, which is a feature in the Netskope platform that allows you to view and analyze all the activities performed by users on cloud applications. Some of the information that is available at Skope IT are: username, device location, account instance, URL category, user activity, and cloud app risk rating.
Username is the name or identifier of the user who is accessing the cloud application. Device location is the geographical location of the device that the user is using to access the cloud application. Account instance is the specific instance of the cloud application that the user is accessing, such as a personal or enterprise instance. URL category is the classification of the web page that the user is visiting within the cloud application, such as Business or Social Media. User activity is the action that the user is performing on the cloud application, such as Upload or Share. Cloud app risk rating is the score that Netskope assigns to the cloud application basedon its security posture and compliance with best practices. Destination IP, OS patch version, file version, and shared folder are not information that is available at Skope IT in this scenario, as they are either unrelated or irrelevant to the proxy connection or the Skope IT feature. References: [Netskope Inline CASB], [Netskope Skope IT].


NEW QUESTION # 40
Which two cloud security and infrastructure enablement technologies does Secure Access Service Edge (SASE) combine into its unified platform? (Choose two.)

  • A. Distributed Denial of Service Protection (DDoS)
  • B. Zero Trust Network Access (ZTNA)
  • C. Cloud Access Security Broker (CASB)
  • D. Unified Threat Management (UTM)

Answer: B,C

Explanation:
Explanation
Secure Access Service Edge (SASE) is a cloud-based architecture that combines various cloud security and infrastructure enablement technologies into a unified platform that delivers security and networking services from the edge of the network. Two of these technologies are Zero Trust Network Access (ZTNA) and Cloud Access Security Broker (CASB). ZTNA is a technology that provides secure access to private applications without exposing them to the internet or using VPNs. It uses identity-based policies and encryption to grant granular access to authorized users and devices, regardless of their location or network. CASB is a technology that provides visibility and control over cloud applications (SaaS) used by users and devices. It uses API connections or inline proxies to inspect and enforce policies on data and activities in cloud applications, such as data loss prevention, threat protection, or compliance. Distributed Denial of Service Protection (DDoS) and Unified Threat Management (UTM) are not technologies that SASE combines into its unified platform, although they may be related or integrated with some of its components. References: [SASE], [ZTNA],
[CASB].


NEW QUESTION # 41
You want to prevent Man-in-the-Middle (MITM) attacks on an encrypted website or application. In this scenario, which method would you use?

  • A. Use a proxy for the connection.
  • B. Use a weaker encryption algorithm.
  • C. Use a stronger encryption algorithm.
  • D. Use certificate pinning.

Answer: D

Explanation:
Explanation
To prevent Man-in-the-Middle (MITM) attacks on an encrypted website or application, one method that you can use is certificate pinning. Certificate pinning is a technique that restricts which certificates are considered valid for a particular website or application, limiting risk. Instead of allowing any trusted certificate to be used, operators "pin" the certificate authority (CA) issuer(s), public keys or even end-entity certificates of their choice. Certificate pinning helps to prevent MITM attacks by validating the server certificates against a hardcoded list of certificates in the website or application. If an attacker tries to intercept or modify the traffic using a fraudulent or compromised certificate, it will be rejected by the website or application as invalid, even if it is signed by a trusted CA. References: Certificate pinning - IBMCertificate and Public Key Pinning | OWASP Foundation


NEW QUESTION # 42
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