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NEW QUESTION: 1
Sie haben einen Azure Active Directory-Mandanten mit dem Namen Tenant1 und ein Azure-Abonnement mit dem Namen You enable Azure AD Privileged Identity Management.
Sie müssen die Mitglieder der Lab Creator-Rolle sichern. Die Lösung muss sicherstellen, dass die Laborersteller beim Erstellen von Labors Zugriff anfordern.
Was solltest du zuerst tun?
A. Bearbeiten Sie in Subscription1 die Mitglieder der Lab Creator-Rolle.
B. Bearbeiten Sie in Azure AD Privileged Identity Management die Rolleneinstellungen für Lab Creator.
C. Erstellt von Azure AD Identity Protection aus eine Benutzerrisikorichtlinie.
D. Ermitteln Sie in Azure AD Privileged Identity Management die Azure-Ressourcen von Conscription.
Answer: B
Explanation:
Explanation
As a Privileged Role Administrator you can:
* Enable approval for specific roles
* Specify approver users and/or groups to approve requests
* View request and approval history for all privileged roles
References:
https://docs.microsoft.com/en-us/azure/active-directory/privileged-identity-management/pim-configure
NEW QUESTION: 2
How does an FCoE end node acquire its FCoE MAC address?
A. fabric-provided MAC address
B. FIP proxy
C. Fibre Channel name server
D. server-provided MAC address
Answer: A
Explanation:
Explanation
The VN_Port is assigned a fabric-provided Mac address (FPMA) that is built by concatenating a 24-bit FCoE MAC address prefix (FC-MAP), ranging from 0x0E-FC-00 to 0x0E-FC-FF, to the 24-bit FCID. Being able to build a unique MAC address for the VN_Port directly from its FCID saves the switch from having to maintain a table that associates FCID and MAC addresses.
Reference: http://www.cisco.com/c/en/us/td/docs/solutions/Enterprise/Data_Center/UF_FCoE_final.html
NEW QUESTION: 3
Which two options are available for Cisco WAAS file-service integration? (Choose two.)
A. nontransparent not appearing as a node on the remote office LAN
B. transparent appearing as a node on the remote office LAN
C. nontrasparent appearing as a node on the remote office LAN
D. transparent not appearing as a node on the remote office LAN
Answer: C,D
NEW QUESTION: 4



What is the status of OS Identification?
A. It is only enabled to identify "Cisco IOS" OS using statically mapped OS fingerprinting
B. OS mapping information will not be used for Risk Rating calculations.
C. It is configured to enable OS mapping and ARR only for the 10.0.0.0/24 network.
D. It is enabled for passive OS fingerprinting for all networks.
Answer: D
Explanation:
Explanation/Reference:
Explanation:
Understanding Passive OS Fingerprinting
Passive OS fingerprinting lets the sensor determine the OS that hosts are running. The sensor analyzes network traffic between hosts and stores the OS of these hosts with their IP addresses. The sensor inspects TCP SYN and SYNACK packets exchanged on the network to determine the OS type.
The sensor then uses the OS of the target host OS to determine the relevance of the attack to the victim by computing the attack relevance rating component of the risk rating. Based on the relevance of the attack, the sensor may alter the risk rating of the alert for the attack and/or the sensor may filter the alert for the attack. You can then use the risk rating to reduce the number of false positive alerts (a benefit in IDS mode) or definitively drop suspicious packets (a benefit in IPS mode). Passive OS fingerprinting also enhances the alert output by reporting the victim OS, the source of the OS identification, and the relevance to the victim OS in the alert. Passive OS fingerprinting consists of three components: Passive OS learning Passive OS learning occurs as the sensor observes traffic on the network. Based on the characteristics of TCP SYN and SYNACK packets, the sensor makes a determination of the OS running on the host of the source IP address. User-configurable OS identification You can configure OS host mappings, which take precedence over learned OS mappings. Computation of attack relevance rating and risk rating