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NEW QUESTION: 1
You have a Cisco Unified Border Element configured to provide H.323 to SIP interworking. Which
command will verify that you have a single H.323 and a single SIP call leg when the call is placed?
A. show dialpeer voice
B. debug voice dialpeer
C. show call active voice
D. debug voip ipipgw
Answer: C
Explanation:
The show call active voice command allows you to display the contents of the active call table. The show call active voice command displays data from the plain old telephone service (POTS) and VoIP call legs on the voice gateway. The information presented includes call times, dial peers, connections, quality of service parameters, and gateway handling of jitter. This information can be useful when you troubleshoot a range of voice quality problems. http://www.cisco.com/en/US/docs/ios/voice/cube/configuration/guide/vb-gwh323sip.html#wp1342172

NEW QUESTION: 2
Which four statements about SeND for IPv6 are correct? (Choose four.)
A. It defines secure extensions for NDP.
B. It protects against rogue RAs.
C. Neighbor identity protection is provided by Cryptographically Generated Addresses that are derived from a Diffie-Hellman key exchange.
D. It authorizes routers to advertise certain prefixes.
E. NDP exchanges are protected by IPsec SAs and provide for anti-replay.
F. It is facilitated by the Certification Path Request and Certification Path Response ND messages.
G. It provides a method for secure default router election on hosts.
Answer: A,B,D,G
Explanation:
Secure Neighbor Discovery is a protocol that enhances NDP with three additional capabilities:
Address ownership proof
-
Makes stealing IPv6 addresses "impossible"
-
Used in router discovery, DAD, and address resolution
-
Based upon Cryptographically Generated Addresses (CGAs)
-
Alternatively also provides non-CGAs with certificates
Message protection
-
Message integrity protection
-
Replay protection
-
Request/response correlation
-
Used in all NDP messages
Router authorization
-
Authorizes routers to act as default gateways
-
Specifies prefixes that routers are authorized to announce "on-link"
While SeND provides a significant uplift to the IPv6 neighbor discovery technology by
introducing the above enhancements, it does not, for example, provide any end-to-end
security and provides no confidentiality.
It is important to understand that SeND is not a new protocol and still remains a protocol
operating on the link. Secure Neighbor Discovery is just an "extension" to NDP and defines
a set of new attributes:
New network discovery options
CGA, Nonce1, Timestamp, and RSA
Purpose: These options provide a security shield against address theft and replay attacks.
New network discovery messages
CPS (Certificate Path Solicitation), CPA2 (Certificate Path Advertisement)
Purpose: Identifying valid and authorized IPv6 routers and IPv6 prefixes of the network
segment. These two messages complement the already existing NDP messages (NS, NA,
RA, RS, and Redirect).
New rules
Purpose: These rules describe the preferred behavior when a SeND node receives a
message supported by SeND or not supported by SeND.
SeND technology works by having a pair of private and public keys for each IPv6 node in
combination with the new options (CGA, Nonce, Timestamp, and RSA). Nodes that are
using SeND cannot choose their own interface identifier because the interface identifier is
cryptographically generated based upon the current IPv6 network prefix and the "public"
key. However, the CGA interface identifier alone is not sufficient to guarantee that the CGA
address is used by the appropriate node.
For this purpose SeND messages are signed by usage of the RSA public and private key
pair. For example if node 1 wants to know the MAC address of node 2, it will traditionally
send a neighbor solicitation request to the node 2 solicited node multicast address. Node 2
will respond with a corresponding neighbor advertisement containing the MAC address to
IPv6 address mapping. Node 2 will in addition add the CGA parameters (which include
among others the public key) and a private key signature of all neighbor advertisement
fields. When node 1 receives this neighbor advertisement it uses the public key to verify
with the CGA address the private key signature of node 2. Once this last step has been
successfully completed, the binding on node 1 of the MAC address and CGA address of
node 2 can be successfully finalized.
Note that the above mechanism is simply an explanation to verify the correct relationship
between a node MAC address and its CGA IPv6 address. SeND does not check any of the
node's privileges to be allowed, or not allowed, on the network. If this is required, other
means of infrastructure protection will be required (such as 802.1x).

NEW QUESTION: 3
You have an Azure subscription that contains a user named Adminl1 and a virtual machine named VM1.
VM1 runs Windows Server 2019 and was deployed by using an Azure Resource Manager template. VM1 is the member of a backend pool of a public Azure Basic Load Balancer.
Admin1 reports that VM1 is listed as Unsupported on the Just in time VM access blade of Azure Security Center.
You need to ensure that Admin1 can enable just in time (JIT) VM access for VM1.
What should you do?
A. Replace the Basic Load Balancer with an Azure Standard Load Balancer.
B. Create and configure a network security group (NSG).
C. Create and configure an additional public IP address for VM 1.
D. Assign an Azure Active Directory Premium Plan 1 license to Admin1.
Answer: B
Explanation:
Reference:
https://docs.microsoft.com/en-us/azure/security-center/security-center-just-in-time?tabs=jit-config-asc%2Cjit-re
Topic 1, Contoso
This is a case study. Case studies are not timed separately. You can use as much exam time as you would like to complete each case. However, there may be additional case studies and sections on this exam. You must manage your time to ensure that you are able to complete all questions included on this exam in the time provided.
To answer the questions included in a case study, you will need to reference information that is provided in the case study. Case studies might contain exhibits and other resources that provide more information about the scenario that is described in the case study. Each question is independent of the other question on this case study.
At the end of this case study, a review screen will appear. This screen allows you to review your answers and to make changes before you move to the next sections of the exam. After you begin a new section, you cannot return to this section.
To start the case study
To display the first question on this case study, click the Next button. Use the buttons in the left pane to explore the content of the case study before you answer the questions. Clicking these buttons displays information such as business requirements, existing environment, and problem statements. If the case study has an All Information tab, note that the information displayed is identical to the information displayed on the subsequent tabs. When you are ready to answer a question, click the Question button to return to the question.
Overview
Contoso, Ltd. is a consulting company that has a main office in Montreal and two branch offices in Seattle and New York.
The company hosts its entire server infrastructure in Azure.
Contoso has two Azure subscriptions named Sub1 and Sub2. Both subscriptions are associated to an Azure Active Directory (Azure AD) tenant named contoso.com.
Technical requirements
Contoso identifies the following technical requirements:
Deploy Azure Firewall to VNetWork1 in Sub2.
Register an application named App2 in contoso.com.
Whenever possible, use the principle of least privilege.
Enable Azure AD Privileged Identity Management (PIM) for contoso.com
Existing Environment
Azure AD
Contoso.com contains the users shown in the following table.

Contoso.com contains the security groups shown in the following table.

Sub1
Sub1 contains six resource groups named RG1, RG2, RG3, RG4, RG5, and RG6.
User2 creates the virtual networks shown in the following table.

Sub1 contains the locks shown in the following table.

Sub1 contains the Azure policies shown in the following table.

Sub2

Sub2 contains the virtual machines shown in the following table.

All virtual machines have the public IP addresses and the Web Server (IIS) role installed. The firewalls for each virtual machine allow ping requests and web requests.
Sub2 contains the network security groups (NSGs) shown in the following table.

NSG1 has the inbound security rules shown in the following table.

NSG2 has the inbound security rules shown in the following table.

NSG3 has the inbound security rules shown in the following table.

NSG4 has the inbound security rules shown in the following table.

NSG1, NSG2, NSG3, and NSG4 have the outbound security rules shown in the following table.

Contoso identifies the following technical requirements:
Deploy Azure Firewall to VNetwork1 in Sub2.
Register an application named App2 in contoso.com.
Whenever possible, use the principle of least privilege.
Enable Azure AD Privileged Identity Management (PIM) for contoso.com.