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Q1. Refer to the exhibit.
The control system depicted in the exhibit uses VLAN 300 for all of its device ports and PVST is enabled on each switch to switch connection. L2SW4 was inserted between L2SW3 and L2SW5. Links FO2 and FO3 were added and FO1 was disconnected.
Prior to the installation of L2SW4, PanelView was able to communicate with PLC#1. After the change, PLC#1 and PanelView are still able to communicate but neither PLC#1 or PanelView are able to communicate with I/O #1.
L2SW4# show run.interfaces FastEthernet 1/1
description I/O#1
switchport access vlan 300
switchport mode access
spanning-tree portfast
spanning-tree bpduguard enable
L2SW4# show interfaces trunk
Port.Mode.Encapsulation.Status.Native vlan Gi1/1.on.
802.1q.trunking.1 Gi1/2.on.802.1q.trunking.1 Port.Vlans allowed on trunk Gi1/1.1,3-9, 301-305,400 Gi1/2 1,3-9, 301-305,400 Port.Vlans allowed and active in management domain Gi1/1.1,3-9, 301-305,400 Gi1/2.1,3-9, 301-305,400 Port.Vlans in spanning tree forwarding state and not pruned Gi1/1.1,3-9, 301-305,400 Gi1/2.
Based on the output from the switch, what is preventing I/O#1 from communicating with PLC#1 and PanelView?
A. Interface FastEthernet 1/1 on LWSW4 should be configured as a trunk port
B. The trunks connecting L2SW4 to L2SW3 and L2SW5 have the wrong encapsulation type
C. The trunks connecting L2SW4 to L2SW3 and L2SW5 don't allow VLAN 300 traffic
D. BPDU guard has error-disabled interface FastEthernet 1/1 on LWSW4
Answer: C
Q2. Which three network mechanisms can be used for securely segmenting an industrial network? (Choose three)
A. VLANs
B. OSPF
C. REP
D. VRFs
E. Firewalls
F. Spanning-tree
Answer: A,D,E
Q3. Refer to the exhibit.
Which three options are needed to configure NAT on router GW so PC1 and PC2 will be able to ping 203.0.113.1? (Choose three)
A. interface Ethernet0 ip nat inside interface Ethernet1 ip nat outside
B. ip access-list standard ACL_NAT permit 10.1.1.0 0.0.0.255
C. ip nat inside source static tcp 10.1.1.0 80 interface Ethernet1 80
D. interface Ethernet0 ip nat outside interface Ethernet1 ip nat inside
E. ip nat inside source list ACL_NAT interface Ethernet1 overload
F. ip access-list extended ACL_NAT permit tcp 10.1.1.0 0.0.0.255 any eq 80
Answer: A,B,E
Q4. Which two are possible solutions to control which devices can communicate between industrial zones? (Choose two)
A. Use per zone private IP addressing and deploy NAT to control traffic between zones
B. Put access control lists on switches connecting industrial zones to control traffic
C. Attach each zone to a firewall to control intra-zone traffic
D. Deploy QoS traffic shaping to limit the volume of traffic between industrial zones
E. Deploy an IDS system between the zones to control intra-zone traffic
Answer: B,C
Q5. Refer to the exhibit.
All of the vlans listed in the routing table below are trunked using 802.1q and are active on all switches. PLC1, PLC2, and PLC3 each has IP address 192.168.0.1/24 and are connected to ports configured for vlan 50. L2SW1, L2SW2, and L2SW3 are not using vlan trunking for vlan 50.
L3SW1 has following routing table:
10.0.0.0/8 is variably subnetted, 12 subnets, 2 masks C.10.3.138.0/23 is directly connected, Vlan307 C.10.3.136.0/23 is directly connected, Vlan306 C.10.15.153.0/24 is directly connected, Vlan398 C.10.3.142.0/23 is directly connected, Vlan309 C.10.3.140.0/23 is directly connected, Vlan308 C.10.3.186.0/23 is directly connected, Vlan293 C.10.15.154.0/24 is directly connected, Vlan399 C.10.3.184.0/23 is directly connected, Vlan292 C.10.3.190.0/23 is directly connected, Vlan295 C.10.3.188.0/23 is directly connected, Vlan294
C.10.3.182.0/23 is directly connected, Vlan291
C.10.3.180.0/23 is directly connected, Vlan290
PLC1, PLC2, and PLC3 cannot be reconfigured. What can be done to be able to simultaneously communicate with PLC1, PLC2, and PLC3?
A. Enable NAT on L3SW1
B. Enable NAT on L2SW1 – L2SW3
C. Enable NAT on L2SW4
D. Add vlan 50 to L2SW4 and assign.the administrator's.an IP address on 192.168.0.0/24 network
Answer: B
Q6. Your controller has a high performance EtherNet/IP interface with port speed of >30,000 packets per second and 80% spare capacity. A new PowerFlex 753 drive will be added to the system with an RPI of 2ms and has been connected to a switch; you have been asked to set up the switch port. You open the EDS file and see that the drive will support 16 CIP connections and has transmit and receive capacity of 1,000 control packets per second. What do you set as the storm control pps threshold limit for the port?
A. 16
B. 1,000
C. 2,500
D. 25,000
Answer: C
Q7. Refer to the exhibit.
A new device, PanelView, has been added to the network. See the table for device details:
All devices are able to ping their default gateway and all other devices except PanelView.
PanelView can only ping its default gateway.
After the administrator has done some investigation they have discovered the following
information:
L3SW1# show run interface
interface Vlan1 no ip address shutdown ! interface Vlan191 ip address 10.10.27.125 255.255.255.192 ip helper-address 165.28.96.96 ip helper-address 165.28.32.235 no ip redirects standby 191 ip 10.10.27.126 standby 191 priority 120 standby 191 preempt delay minimum 90 no ip route-cache ! interface Vlan398 ip vrf forwarding mosaic ip address 10.15.153.203 255.255.255.0 ip helper-address 10.15.154.252 ip helper-address 10.1.0.252 standby 98 ip 10.15.153.202 standby 98 priority 120 standby 98 preempt delay minimum 90 ! interface Vlan399 ip vrf forwarding mosaic ip address 10.15.154.203 255.255.255.0
ip helper-address 10.1.0.252
ip helper-address 10.1.1.252
standby 99 ip 10.15.154.254
standby 99 priority 120
standby 99 preempt delay minimum 90
!
L3SW1# show ip route connected 10.0.0.0/8 is variably subnetted, 1149 subnets, 17 masks
C.10.10.27.64/26 is directly connected, Vlan191
C.10.10.31.254/32 is directly connected, Loopback1
What is preventing PanelView from pinging the other endpoints in the network?
A. Routing isn't enabled on L3SW1 for.SVI 398 and.SVI 399
B. SVI 191 is in a different routing instance than.SVI 398 and SVI 399
C. Firewall1 is blocking pings from PanelView to the other endpoints
D. An access list on L3SW1 is blocking pings from PanelView to the other endpoints
Answer: B
Q8. Refer to the exhibit.
Which two parameters can be used to diagnose an overloaded system? (Choose two)
A. Ethernet Port 1 Speed
B. Module Resource Allocation Actual Rate
C. Class 3 Received bytes per second
D. Media Counters Alignment Errors
E. TCP Connections Active
Answer: B,E
Q9. Refer to exhibit. The administrator has configured the following device IP settings, but did not keep track of which ports the devices were connected to. The administrator is able to ping each device but needs to update the network documentation to include the switch and interface where each device is connected. The administrator does not want to walk to each device and switch to track down the information.
Which steps below would you execute in sequence to document the switch and interface where each device is connected?
.1. View the ARP table on L3SW1
.2. View the ARP table on the administrator's station
.3. View the ARP table on L2SW4
4. PING all the devices
.5. View the MAC address table on all switches
.6. View the MAC address table on the administrator's station
A. 2,4,5
B. 2,5,4
C. 4,3,6
D. 4,1,5
Answer: D
Q10. Which five are characteristics that describe Cisco Industrial switches? (Choose five)
A. Din rail mount
B. 19 inch rack mount
C. Fanless
D. Fans
E. Swappable SD flash card
F. Alarm relay
G. -5oC to 45oC operating environment
H. ProfiNET conformance class C compliance
Answer: A,B,C,E,F