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NEW QUESTION: 1
A customer is to be billed on the last day of every month, regardless of when the order and the delivery are processed.
Which procedure fulfills this requirement?
A. Maintain a customer-specific billing due list variant and schedule a periodic job.
B. Use the condition technique and assign a billing date determination profile to the payer's customer master record.
C. Maintain a billing date profile and assign it to the sales document type.
D. Maintain a factory calendar with a single date per month and assign it to the payer's customer master record.
Answer: D

NEW QUESTION: 2
What is a reason for 6PE to use two MPLS labels in the data plane instead of one?
A. It allows MPLS traffic engineering to work in a 6PE network.
B. It allows 6PE to work in an MPLS network where 6VPE is also deployed.
C. 6PE does not allow penultimate hop popping.
D. 6PE allows penultimate hop popping and has a requirement that all P routers do not have to be IPv6 aware.
Answer: D
Explanation:
Q. Why does 6PE use two MPLS labels in the data plane?
A. 6PE uses two labels: - The top label is the transport label, which is assigned hop-by-hop by the Label Distribution Protocol (LDP) or by MPLS traffic engineering (TE). - The bottom label is the label assigned by the Border Gateway Protocol (BGP) and
advertised by the internal BGP (iBGP) between the Provider Edge (PE) routers. When the 6PE was released, a main requirement was that none of the MPLS core routers (the P routers) had to be IPv6-aware. That requirement drove the need for two labels in the data plane. There are two reasons why the 6PE needs both labels.
PHP Functionality
If only the transport label were used, and if penultimate hop popping (PHP) were used, the penultimate hop router (the P router) would need to understand IPv6. With PHP, this penultimate hop router would need to remove the MPLS label and forward the packet as an IPv6 packet. This P router would need to know that the packet is IPv6 because the P router would need to use the correct Layer 2 encapsulation type for IPv6. (The encapsulation type is different for IPv6 and IPv4; for example, for Ethernet, the encapsulation type is 0x86DD for IPv6, while it is 0x0800 for IPv4.) If the penultimate hop router is not IPv6-capable, it would likely put the Layer 2 encapsulation type for IPv4 for the IPv6 packet. The egress PE router would then believe that the packet was IPv4. There is time-to-live (TTL) processing in both the IPv4 and IPv6 headers. In IPv6, the field is called Hop Limit. The IPv4 and IPv6 fields are at different locations in the headers. Also, the Header Checksum in the IPv4 header would also need to be changed; there is no Header Checksum field in IPv6. If the penultimate hop router is not IPv6-capable, it would cause the IPv6 packet to be malformed since the router expects to find the TTL field and Header Checksum field in the header. Because of these differences, the penultimate hop router would need to know it is an IPv6 packet. How would this router know that the packet is an IPv6 packet, since it did not assign a label to the IPv6 Forwarding Equivalence Class (FEC), and there is no encapsulation field in the MPLS header? It could scan for the first nibble after the label stack and determine that the packet is IPv6 if the value is 6. However, that implies that the penultimate hop router needs to be IPv6-capable. This scenario could work if the explicit null label is used (hence no PHP). However, the decision was to require PHP.
Load Balancing
Typical load balancing on a P router follows this process. The P router goes to the end of the label stack and determines if it is an IPv4 packet by looking at the first nibble after the label stack.
- If the nibble has a value of 4, the MPLS payload is an IPv4 packet, and the P router load balances by hashing the source and destination IPv4 addresses. - If the P router is IPv6-capable and the value of the nibble is 6, the P router load balances by hashing the source and destination IPv6 addresses.
- If the P router is not IPv6-capable and the value of the nibble is not 4 (it could be 6 if the packet is an IPv6 packet), the P router determines it is not an IPv4 packet and makes the load balancing decision based on the bottom label.
In the 6PE scenario, imagine there are two egress PE routers advertising one IPv6 prefix in
BGP towards the ingress PE router. This IPv6 prefix would be advertised with two different
labels in BGP. Hence, in the data plane, the bottom label would be either of the two labels.
This would allow a P router to load balance on the bottom label on a per-flow basis.
If 6PE used only the transport label to transport the 6PE packets through the MPLS core,
the P routers would not be able to load balance these packets on a per-flow basis unless
the P routers were IPv6-capable. If the P routers were IPv6-capable, they could use the
source and destination IPv6 addresses in order to make a load balancing decision.
Reference: http://www.cisco.com/c/en/us/support/docs/multiprotocol-label-switching-
mpls/mpls/116061-qa-6pe-00.html

NEW QUESTION: 3
Which of the following technologies is used to bind MAC addresses to interface on a switch
A. Port security
B. SEP
C. NAT
D. ACL
Answer: A

NEW QUESTION: 4
CORRECT TEXT
Scenario:
You are the network security manager for your organization. Your manager has received a request to allow an external user to access to your HQ and DM2 servers. You are given the following connection parameters for this task.
Using ASDM on the ASA, configure the parameters below and test your configuration by accessing the Guest PC. Not all AS DM screens are active for this exercise. Also, for this exercise, all changes are automatically applied to the ASA and you will not have to click APPLY to apply the changes manually.
Enable Clientless SSL VPN on the outside interface
Using the Guest PC, open an Internet Explorer window and test and verify the basic connection to the SSL VPN portal using address: https://vpn-secure-x.public
a. You may notice a certificate error in the status bar, this can be ignored for this exercise
b. Username: vpnuser
c. Password: cisco123
d. Logout of the portal once you have verified connectivity
Configure two bookmarks with the following parameters:
a. Bookmark List Name: MY-BOOKMARKS
b. Use the: URL with GET or POST method
c. Bookmark Title: HQ-Server
i. http://10.10.3.20
d. Bookmark Title: DMZ-Server-FTP
i. ftp://172.16.1.50
e. Assign the configured Bookmarks to:
i. DfltGrpPolicy
ii. DfltAccessPolicy
iii. LOCAL User: vpnuser
From the Guest PC, reconnect to the SSL VPN Portal
Test both configured Bookmarks to ensure desired connectivity
You have completed this exercise when you have configured and successfully tested Clientless SSL VPN connectivity.
Topology:


Answer:
Explanation:
Please find the solution in below explanation.
Explanation:
First, enable clientless VPN access on the outside interface by checking the box found below:

Then, log in to the given URL using the vpnuser/cisco123 credentials: Logging in will take you to this page, which means you have now verified basic connectivity:


Now log out by hitting the logout button.
Now, go back to the ASDM and navigate to the Bookmarks portion:

Make the name MY-BOOKMARKS and use the "Add" tab and add the bookmarks per the instructions:

Ensure the "URL with GET of POST method" button is selected and hit OK: Add the two bookmarks as given in the instructions: You should now see the two bookmarks listed:




Hit OK and you will see this:

Select the MY-BOOKMARKS Bookmarks and click on the "Assign" button. Then, click on the appropriate check boxes as specified in the instructions and hit OK.

After hitting OK, you will now see this:

Then, go back to the Guest-PC, log back in and you should be able to test out the two new bookmarks.