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NEW QUESTION: 1
Refer to the exhibit.

These three routers are currently configured for BGP. They do not apply any routing policy in terms of BGP on routes or attributes advertised to an received from peers. How can the network administrator for Router
1 cause Router 1 to advertise 192.0.2.0/24 to Router 2 and Router 3?
A. Apply route policy 1 as an outbound policy for both peers
B. Apply route policy 1 as an inbound policy for both peers
C. Add a null route to 192.0.2.0/24
D. Enable BGP routing on RAGG1
Answer: A
Explanation:
Explanation/Reference:
You can associate a route policy to a BGP peer. Route policies use route maps to control or modify the routes that BGP recognizes. You can configure a route policy for inbound or outbound route updates.
Incorrect:
Not B: Null 0 routing is used to prevent routing loops in some conditions as if any packet is destinated for some specific route in that subnet which is not available for an example is down due to any reason instead of going through the default route and packet reaching somewhere else packet destined for that specific route within that subnet must be dropped.
So basically NULL 0 creates a block hole where if packets are matched is dropped.
Reference: Configuring Advanced BGP
http://www.cisco.com/c/en/us/td/docs/switches/datacenter/sw/5_x/nx-os/unicast/configuration/guide/ l3_cli_nxos/l3_advbgp.html

NEW QUESTION: 2
What kinds of terminal types are supported by Workspace? (Multiple choices)
A. Windows PC
B. iOS
C. Android
D. Windows Phone
Answer: A,B,C

NEW QUESTION: 3
Welcher der folgenden Befehle listet alle Dateien und Verzeichnisse im Verzeichnis / tmp / und seinen Unterverzeichnissen auf, deren Eigentümer der Benutzer root ist? (Wähle zwei.)
A. find / tmp -uid root -print
B. find -path / tmp -user root -print
C. find / tmp -user root -print
D. find / tmp -user root
E. find -path / tmp -uid root
Answer: B,C

NEW QUESTION: 4
Under which circumstance should a network administrator implement one-way NAT?
A. when traffic that originates inside the network must be routed to internal hosts
B. when the network has few public IP addresses and many private IP addresses require outside access
C. when the network must route UDP traffic
D. when traffic that originates outside the network must be routed to internal hosts
Answer: D
Explanation:
NAT operation is typically transparent to both the internal and external hosts. Typically the internal host is aware of
the true IP address and TCP or UDP port of the external host. Typically the NAT device may function as the default
gateway for the internal host. However the external host is only aware of the public IP address for the NAT device and
the particular port being used to communicate on behalf of a specific internal host.
NAT and TCP/UDP
"Pure NAT", operating on IP alone, may or may not correctly parse protocols that are totally concerned with IP
information, such as ICMP, depending on whether the payload is interpreted by a host on the "inside" or "outside" of
translation. As soon as the protocol stack is traversed, even with such basic protocols as TCP and UDP, the protocols
will break unless NAT takes action beyond the network layer.
IP packets have a checksum in each packet header, which provides error detection only for the header. IP datagrams
may become fragmented and it is necessary for a NAT to reassemble these fragments to allow correct recalculation of
higher-level checksums and correct tracking of which packets belong to which connection.
The major transport layer protocols, TCP and UDP, have a checksum that covers all the data they carry, as well as the
TCP/UDP header, plus a "pseudo-header" that contains the source and destination IP addresses of the packet carrying
the TCP/UDP header. For an originating NAT to pass TCP or UDP successfully, it must recompute the TCP/UDP header
checksum based on the translated IP addresses, not the original ones, and put that checksum into the TCP/UDP
header of the first packet of the fragmented set of packets. The receiving NAT must recompute the IP checksum on
every packet it passes to the destination host, and also recognize and recompute the TCP/UDP header using the
retranslated addresses and pseudo-header. This is not a completely solved problem. One solution is for the receiving
NAT to reassemble the entire segment and then recompute a checksum calculated across all packets.
The originating host may perform Maximum transmission unit (MTU) path discovery to determine the packet size that
can be transmitted without fragmentation, and then set the don't fragment (DF) bit in the appropriate packet header
field. Of course, this is only a one-way solution, because the responding host can send packets of any size, which may
be fragmented before reaching the NAT.