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Pass Guaranteed 2023 High Pass-Rate Cisco 350-701: Implementing and Operating Cisco Security Core Technologies Valid Test Question
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Understanding functional and technical aspects of Implementing and Operating Cisco Security Core Technologies (SCOR 350-701) Endpoint Protection and Detection
The following will be discussed in CISCO 350-701 exam dumps pdf:
- Explain the importance of an endpoint patching strategy
- Describe endpoint posture assessment solutions to ensure endpoint security
- Describe justifications for endpoint-based security
- Describe the value of endpoint device management and asset inventory such as MDM
- Explain antimalware, retrospective security, Indication of Compromise (IOC), antivirus, dynamic file analysis, and endpoint-sourced telemetry
- Compare Endpoint Protection Platforms (EPP) and Endpoint Detection & Response (EDR) solutions
Cisco Implementing and Operating Cisco Security Core Technologies Sample Questions (Q319-Q324):
NEW QUESTION # 319
What are the two most commonly used authentication factors in multifactor authentication? (Choose two)
- A. biometric factor
- B. encryption factor
- C. confidentiality factor
- D. time factor
- E. knowledge factor
Answer: A,E
Explanation:
Explanation Explanation Multi-factor Authentication (MFA) is an authentication method that requires the user to provide two or more verification factors to gain access to a resource. MFA requires means of verification that unauthorized users won't have. Proper multi-factor authentication uses factors from at least two different categories. MFA methods: + Knowledge - usually a password - is the most commonly used tool in MFA solutions. However, despite their simplicity, passwords have become a security problem and slow down productivity. + Physical factors - also called possession factors-use tokens, such as a USB dongle or a portable device, that generate a temporary QR (quick response) code. Mobile phones are commonly used, as they have the advantage of being readily available in most situations. + Inherent - This category includes biometrics like fingerprint, face, and retina scans. As technology advances, it may also include voice ID or other behavioral inputs like keystroke metrics. Because inherent factors are reliably unique, always present, and secure, this category shows promise. + Location-based and time-based - Authentication systems can use GPS coordinates, network parameters, and metadata for the network in use, and device recognition for MFA. Adaptive authentication combines these data points with historical or contextual user data. A time factor in conjunction with a location factor could detect an attacker attempting to authenticate in Europe when the user was last authenticated in California an hour prior, for example. + Time-based one-time password (TOTP) - This is generally used in 2FA but could apply to any MFA method where a second step is introduced dynamically at login upon completing a first step. The wait for a second step-in which temporary passcodes are sent by SMS or email-is usually brief, and the process is easy to use for a wide range of users and devices. This method is currently widely used. + Social media - In this case a user grants permission for a website to use their social media username and password for login. This provide an easy login process, and one generally available to all users. + Risk-based authentication - Sometimes called adaptive multi-factor authentication, this method combines adaptive authentication and algorithms that calculate risk and observe the context of specific login requests. The goal of this method is to reduce redundant logins and provide a more user-friendly workflow. + Push-based 2FA - Push-based 2FA improves on SMS and TOTP 2FA by adding additional layers of security while improving ease of use. It confirms a user's identity with multiple factors of authentication that other methods cannot. Because push-based 2FA sends notifications through data networks like cellular or Wi-Fi, users must have data access on their mobile devices to use the 2FA functionality. Reference: https://www.cisco.com/c/en/us/products/security/what-is-multi-factor-authentication.html The two most popular authentication factors are knowledge and inherent (including biometrics like fingerprint, face, and retina scans. Biometrics is used commonly in mobile devices).
Explanation
Multi-factor Authentication (MFA) is an authentication method that requires the user to provide two or more verification factors to gain access to a resource. MFA requires means of verification that unauthorized users won't have.
Proper multi-factor authentication uses factors from at least two different categories.
MFA methods:
+ Knowledge - usually a password - is the most commonly used tool in MFA solutions. However, despite their simplicity, passwords have become a security problem and slow down productivity.
+ Physical factors - also called possession factors-use tokens, such as a USB dongle or a portable device, that generate a temporary QR (quick response) code. Mobile phones are commonly used, as they have the advantage of being readily available in most situations.
+ Inherent - This category includes biometrics like fingerprint, face, and retina scans. As technology advances, it may also include voice ID or other behavioral inputs like keystroke metrics. Because inherent factors are reliably unique, always present, and secure, this category shows promise.
+ Location-based and time-based - Authentication systems can use GPS coordinates, network parameters, and metadata for the network in use, and device recognition for MFA. Adaptive authentication combines these data points with historical or contextual user data.
A time factor in conjunction with a location factor could detect an attacker attempting to authenticate in Europe when the user was last authenticated in California an hour prior, for example.
+ Time-based one-time password (TOTP) - This is generally used in 2FA but could apply to any MFA method where a second step is introduced dynamically at login upon completing a first step. The wait for a second step-in which temporary passcodes are sent by SMS or email-is usually brief, and the process is easy to use for a wide range of users and devices. This method is currently widely used.
+ Social media - In this case a user grants permission for a website to use their social media username and password for login. This provide an easy login process, and one generally available to all users.
+ Risk-based authentication - Sometimes called adaptive multi-factor authentication, this method combines adaptive authentication and algorithms that calculate risk and observe the context of specific login requests.
The goal of this method is to reduce redundant logins and provide a more user-friendly workflow.
+ Push-based 2FA - Push-based 2FA improves on SMS and TOTP 2FA by adding additional layers of security while improving ease of use. It confirms a user's identity with multiple factors of authentication that other methods cannot. Because push-based 2FA sends notifications through data networks like cellular or Wi-Fi, users must have data access on their mobile devices to use the 2FA functionality.
Reference:
The two most popular authentication factors are knowledge and inherent (including biometrics like fingerprint, Explanation Explanation Multi-factor Authentication (MFA) is an authentication method that requires the user to provide two or more verification factors to gain access to a resource. MFA requires means of verification that unauthorized users won't have. Proper multi-factor authentication uses factors from at least two different categories. MFA methods: + Knowledge - usually a password - is the most commonly used tool in MFA solutions. However, despite their simplicity, passwords have become a security problem and slow down productivity. + Physical factors - also called possession factors-use tokens, such as a USB dongle or a portable device, that generate a temporary QR (quick response) code. Mobile phones are commonly used, as they have the advantage of being readily available in most situations. + Inherent - This category includes biometrics like fingerprint, face, and retina scans. As technology advances, it may also include voice ID or other behavioral inputs like keystroke metrics. Because inherent factors are reliably unique, always present, and secure, this category shows promise. + Location-based and time-based - Authentication systems can use GPS coordinates, network parameters, and metadata for the network in use, and device recognition for MFA. Adaptive authentication combines these data points with historical or contextual user data. A time factor in conjunction with a location factor could detect an attacker attempting to authenticate in Europe when the user was last authenticated in California an hour prior, for example. + Time-based one-time password (TOTP) - This is generally used in 2FA but could apply to any MFA method where a second step is introduced dynamically at login upon completing a first step. The wait for a second step-in which temporary passcodes are sent by SMS or email-is usually brief, and the process is easy to use for a wide range of users and devices. This method is currently widely used. + Social media - In this case a user grants permission for a website to use their social media username and password for login. This provide an easy login process, and one generally available to all users. + Risk-based authentication - Sometimes called adaptive multi-factor authentication, this method combines adaptive authentication and algorithms that calculate risk and observe the context of specific login requests. The goal of this method is to reduce redundant logins and provide a more user-friendly workflow. + Push-based 2FA - Push-based 2FA improves on SMS and TOTP 2FA by adding additional layers of security while improving ease of use. It confirms a user's identity with multiple factors of authentication that other methods cannot. Because push-based 2FA sends notifications through data networks like cellular or Wi-Fi, users must have data access on their mobile devices to use the 2FA functionality. Reference: https://www.cisco.com/c/en/us/products/security/what-is-multi-factor-authentication.html The two most popular authentication factors are knowledge and inherent (including biometrics like fingerprint, face, and retina scans. Biometrics is used commonly in mobile devices).
NEW QUESTION # 320
A Cisco Firepower administrator needs to configure a rule to allow a new application that has never been seen on the network. Which two actions should be selected to allow the traffic to pass without inspection? (Choose two.)
- A. trust
- B. allow
- C. permit
- D. reset
- E. monitor
Answer: A,B
Explanation:
Reference:
NEW QUESTION # 321
An organization received a large amount of SPAM messages over a short time period. In order to take action on the messages, it must be determined how harmful the messages are and this needs to happen dynamically.
What must be configured to accomplish this?
- A. Configure the Cisco ESA to modify policies based on the traffic seen
- B. Configure the Cisco ESA to receive real-time updates from Talos
- C. Configure the Cisco WSA to receive real-time updates from Talos
- D. Configure the Cisco WSA to modify policies based on the traffic seen
Answer: A
Explanation:
The Mail Policies menu is where almost all of the controls related to email filtering happens. All the security and content filtering policies are set here, so it's likely that, as an ESA administrator, the pages on this menu are where you are likely to spend most of your time.
NEW QUESTION # 322
Refer to the exhibit.
A network administrator configures command authorization for the admin5 user. What is the admin5 user able to do on HQ_Router after this configuration?
- A. complete no configurations
- B. complete all configurations
- C. set the IP address of an interface
- D. add subinterfaces
Answer: A
NEW QUESTION # 323
Drag and drop the descriptions from the left onto the encryption algorithms on the right.
Answer:
Explanation:
NEW QUESTION # 324
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