A. nat (inside) 0 209.165.202.150 255.255.255.255
B. access-list no-nat permit ip host209.165.202.150 anynat(inside) 0 access-list no-nat
C. static(inside,outside) 209.165.202.150 209.165.202.150 netmask 255.255.255.255
D. no nat-control
E. nat (inside) 1 209.165.202.150 255.255.255.255
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A. nat
B. nonat-control
C. access-list
D. none of the above
A. All traffic passing through theappliance
B. Traffic from internal networks on a per IP basis
C. Based on protocol only.
D. On a per-context basis only.
A. show asp drop
B. show counters drop
C. show security-policy
D. show policy-map
A. http-map, tcp-map, class-map
B. class-map, tcp-map, policy-map
C. class-map, policy-map, service-map
D. class-map, service-policy, policy-map
A. audit
B. secure
C. inspect
D.The fixup protocol commands did not change in
A. uses Netflow data for anomaly detections
B. builds baseline profilesof normal operating conditions, enablingrapid identification of unusual activity that indicates an attack
C. accept events inputs from different network devicesvia syslog, SDEE and SNMP
D. dynamic diversion redirects and cleans only traffic destined for targeted devices, allowing unaffectedtraffic toflow freely and ensuring business continuity
E. pushes ACLs to network devices to only block the malicious traffic
F. using topology and configuration awareness, events from different devices are correlatedand attacks mitgitations are performed at the optimal location
A. digital signatures
B. symmetric ciphering
C. hashalgoritms
D. asymmetric ciphering
E. digital certificates
A. uses symmetric crypto for keys distribution
B. uses symmetric crypto for proof of origin
C. uses symmetric crypto for fast encrypted/decryption
D. uses asymmetric crypto for message confidentiality
E. uses symmetric crypto to transmit the asymmetric keys that is thenused to encrypt a session
A. at the untrusted interfacein the inbound direction
B. atthe untrusted interface in theoutbounddirection
C. at thetrusted interface inthe inbound direction
D. at the trusted interface in the outbound direction
E. at the trusted and untrusted interfaces in the inbound direction
F. at the trusted and untrusted interfaces in the outbounddirection
A. Automatically pushing ACLs to layer 3 devices to block the attacker’s traffic
B. Automatically pushing commands to layer 2 switches to shutdown the attacker’s ports
C. Automatically resetting the attacker’sTCP connections
D. RecommendingACLs tobe manuallypushed tolayer 3 devices such as routers/firewalls
E. Operating as an inline appliance, it automaticallyblocks malicious traffic inline
F. Working inconjuction with CSM to block the attacker’s traffic inline
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