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JN0-102 Questions and Answers

JN0-102


QUESTION: 305

-- Exhibit --

[edit routing-options] user@router# show static { defaults { metric 10; preference 10;

}

route 10.10.10.0/24 { next-hop 192.168.100.1;

qualified-next-hop 192.168.200.1;

preference 6;

}

metric 8;

}

}

-- Exhibit --

Given the configuration shown in the exhibit, which statement is correct about traffic matching the route 10.10.10.0/24?


  1. It will be forwarded to 192.168.100.1 using a metric of 10.

  2. It will be forwarded to 192.168.100.1 using a metric of 8.

  3. It will be forwarded to 192.168.200.1 using a metric of 8.

  4. It will be forwarded to 192.168.200.1 using a metric of 10.


Answer: C


QUESTION: 306

-- Exhibit -- user@router> show route

inet.0: 9 destinations, 9 routes (9 active, 0 holddown, 0 hidden)

+ = Active Route, - = Last Active, * = Both 10.10.10.91/32 *[Direct/0] 00:09:40

>via lo0.0

10.10.10.92/32 *[OSPF/10] 00:01:50, metric 1

>to 172.16.1.2 via ge-0/0/2.0 100.100.1.0/24 *[Static/5] 00:01:50

Reject

        1. /24 *[Direct/0] 00:06:09

          >via ge-0/0/2.0

        2. /32 *[Local/0] 00:06:09

Local via ge-0/0/2.0

192.168.0.0/16 *[Aggregate/130] 00:00:06

Reject

192.168.0.0/17 *[Aggregate/130] 00:00:06

>to 172.16.1.2 via ge-0/0/2.0 192.168.50.0/24 *[Static/5] 00:00:06

>to 172.16.1.2 via ge-0/0/2.0 192.168.51.0/24 *[Static/5] 00:00:06

>to 172.16.1.2 via ge-0/0/2.0

user@router> show configuration policy-options policy-statement demo {

term 1 { from {

route-filter 192.168.0.0/16 longer accept;

}

then reject;

}

}

user@router> show configuration protocols ospf export demo;

area 0.0.0.0 { interface ge-0/0/2.0;

}

-- Exhibit --

Given the configuration and routing table shown in the exhibit, which routes will be advertised to OSPF neighbors because of the demo policy?


A. 192.168.0.0/16 only B. 192.168.0.0/17 only

C. 192.168.50.0/24 and 192.168.51.0/24

D. 192.168.0.0/17, 192.168.50.0/24, and 192.168.51.0/24


Answer: D


QUESTION: 307

-- Exhibit -- user@router> show route

inet.0: 9 destinations, 9 routes (9 active, 0 holddown, 0 hidden)

+ = Active Route, - = Last Active, * = Both 10.10.10.91/32 *[Direct/0] 00:09:40

>via lo0.0

10.10.10.92/32 *[OSPF/10] 00:01:50, metric 1

>to 172.16.1.2 via ge-0/0/2.0 100.100.1.0/24 *[Static/5] 00:01:50

Reject

        1. /24 *[Direct/0] 00:06:09

          >via ge-0/0/2.0

        2. /32 *[Local/0] 00:06:09

Local via ge-0/0/2.0

192.168.0.0/16 *[Aggregate/130] 00:00:06

Reject

192.168.0.0/17 *[Aggregate/130] 00:00:06

>to 172.16.1.2 via ge-0/0/2.0 192.168.50.0/24 *[Static/5] 00:00:06

>to 172.16.1.2 via ge-0/0/2.0 192.168.51.0/24 *[Static/5] 00:00:06

>to 172.16.1.2 via ge-0/0/2.0

user@router> show configuration policy-options policy-statement demo {

term 1 { from {

protocol static;

route-filter 192.168.0.0/16 orlonger accept;

}

then accept;

}

}

user@router> show configuration protocols ospf export demo;

area 0.0.0.0 { interface ge-0/0/2.0;

}

-- Exhibit --

Given the configuration and routing table shown in the exhibit, which routes will be advertised to OSPF neighbors because of the demo policy?


A. 192.168.0.0/16 only B. 192.168.50.0/24 only

C. 192.168.50.0/24 and 192.168.51.0/24

D. 192.168.0.0/17, 192.168.50.0/24, and 192.168.51.0/24


Answer: C


QUESTION: 308

-- Exhibit --

user@router> show configuration firewall familyinet { filter demo { term example { from { source-address {

100.100.100.0/24;

}

destination-address { 200.200.200.0/24;

}

}

then { reject;

}

}

term testing { from {

source-address { 10.10.10.0/28;

}

destination-address { 200.200.200.0/24;

}

}

then sample;

}

term results { from { address { 200.200.200.0/24;

}

}

then accept;

}

term final { thenpolicer LAPD;

}

}

}

-- Exhibit --

Given the configuration shown in the exhibit, what will happen to traffic from source 10.10.10.25 destined to 200.200.200.1?


  1. The traffic will be rejected.

  2. The traffic will be dropped.

  3. The traffic will be forwarded.

  4. The traffic will be policed.


Answer: C


QUESTION: 309

-- Exhibit -- user@router> show route

inet.0: 9 destinations, 9 routes (9 active, 0 holddown, 0 hidden)

+ = Active Route, - = Last Active, * = Both 10.10.10.91/32 *[Direct/0] 00:09:40

>via lo0.0

10.10.10.92/32 *[OSPF/10] 00:01:50, metric 1

>to 172.16.1.2 via ge-0/0/2.0 100.100.1.0/24 *[Static/5] 00:01:50

Reject

        1. /24 *[Direct/0] 00:06:09

          >via ge-0/0/2.0

        2. /32 *[Local/0] 00:06:09

Local via ge-0/0/2.0

192.168.0.0/16 *[Aggregate/130] 00:00:06

Reject

192.168.0.0/17 *[Aggregate/130] 00:00:06

>to 172.16.1.2 via ge-0/0/2.0 192.168.50.0/24 *[Static/5] 00:00:06

>to 172.16.1.2 via ge-0/0/2.0 192.168.51.0/24 *[Static/5] 00:00:06

>to 172.16.1.2 via ge-0/0/2.0

user@router> show configuration policy-options policy-statement demo {

term 1 { from {

protocol aggregate;

route-filter 192.168.0.0/16 longer;

}

then accept;

}

}

user@router> show configuration protocols ospf export demo;

area 0.0.0.0 { interface ge-0/0/2.0;

}

-- Exhibit --

Given the configuration and routing table shown in the exhibit, which routes will be advertised to OSPF neighbors because of the demo policy?


A. 192.168.0.0/16 only B. 192.168.0.0/17 only

C. 192.168.0.0/16 and 192.168.0.0/17

D. 192.168.0.0/17, 192.168.50.0/24, and 192.168.51.0/24


Answer: B


QUESTION: 310

-- Exhibit --

[edit policy-options] user@router# show

policy-statementpolicyABC { term A { from { protocol rip; route-filter 192.168.1.0/24 longer;

}

then accept;

}

}

[edit protocols ospf] user@router# show exportpolicyABC; area 0.0.0.0 { interface ge-0/0/0.0; interface lo0.0;

}

-- Exhibit --

Referring to the exhibit, which two statements are true? (Choose two.)


  1. The route 192.168.1.0/25 is accepted.

  2. The route 192.168.2.0/24 is accepted.

  3. OSPF routes will be exported into RIP.

  4. RIP routes will be exported into OSPF.


Answer: A, D


QUESTION: 311

-- Exhibit -- [edit interfaces]

user@router# show

...

lo0 {

unit 0 { familyinet { filter { input protect-loopback;

}

address 192.168.100.1/32;

}

}

}

-- Exhibit --

Given the configuration shown in the exhibit, what is the function of the protect- loopback filter?


  1. to protect the Routing Engine

  2. to protect all interfaces on the device

  3. to protect the Packet Forwarding Engine

  4. to protect the management interface


Answer: A


QUESTION: 312

-- Exhibit –


-- Exhibit --

Referring to the exhibit, you want to block HTTP access to Web-Server from the subnet where Mal-User is located. All other traffic should be permitted. Which firewall filter configuration do you use?


  1. [edit firewall family inet filter STOP-MAL-USER] user@router# show term one {

    from {

    source-address { 200.200.200.0/24;

    }

    destination-address { 100.100.100.10/32;

    }

    protocoltcp;

    destination-port http;

    }

    then accept;

    }

    term two { then { reject;

    }

    }

  2. [edit firewall family inet filter STOP-MAL-USER] user@router# show term one {

    from {

    source-address { 100.100.100.0/24;

    }

    destination-address { 200.200.200.1/32;

    }

    protocoltcp; destination-port http;

    }

    then accept;

    }

    term two { then { reject;

    }

    }

  3. [edit firewall family inet filter STOP-MAL-USER] user@router# show term one {

    from {

    source-address { 100.100.100.0/24;

    }

    destination-address { 200.200.200.1/32;

    }

    protocoltcp; destination-port http;

    }

    then reject;

    }

    term two { then { accept;

    }

    }

  4. [edit firewall family inet filter STOP-MAL-USER] user@router# show term one {

from {

source-address { 200.200.200.0/24;

}

destination-address { 100.100.100.10/32;

}

protocoltcp; destination-port http;

}

then reject;

}

term two { then { accept;

}

}


Answer: D


QUESTION: 313

-- Exhibit –


-- Exhibit --

Referring to the exhibit, you are asked to rate-limit traffic from Web-Server to the subnet where Mal-User is located. All other traffic should be permitted. Which firewall filter configuration do you use?


  1. [edit firewall] user@router# show

    policer LIMIT-MAL-USER {

    if-exceeding { bandwidth-limit 400k; burst-size-limit 100k;

    }

    then discard;

    }

    familyinet {

    filter STOP-MAL-USER { term one {

    from {

    source-address { 100.100.100.10/32;

    }

    destination-address { 200.200.200.0/24;

    }

    }

    thenpolicer LIMIT-MAL-USER;

    }

    term two { then accept;

    }

    }

    }

  2. [edit firewall] user@router# show

    policer LIMIT-BAD-USER {

    if-exceeding { bandwidth-limit 400k; burst-size-limit 100k;

    }

    then discard;

    }

    familyinet {

    filter STOP-MAL-USER { term one {

    from {

    source-address { 100.100.100.10/32;

    }

    destination-address { 200.200.200.0/24;

    }

    }

    thenpolicer LIMIT-MAL-USER;

    }

    term two { then accept;

    }

    }

    }

  3. [edit firewall]

    user@router# show

    policer LIMIT-MAL-USER {

    if-exceeding { bandwidth-limit 400k; burst-size-limit 100k;

    }

    then discard;

    }

    familyinet {

    filter STOP-MAL-USER { term one {

    from {

    source-address { 100.100.100.10/32;

    }

    destination-address { 200.200.200.0/24;

    }

    }

    thenpolicer LIMIT-MAL-USER;

    }

    term two { then reject;

    }

    }

    }

  4. [edit firewall] user@router# show

policer LIMIT-MAL-USER {

if-exceeding { bandwidth-limit 400k; burst-size-limit 100k;

}

then discard;

}

familyinet {

filter STOP-MAL-USER { term one {

from {

source-address { 200.200.200.0/24;

}

destination-address { 100.100.100.10/32;

}

}

thenpolicer LIMIT-MAL-USER;

}

term two { then accept;

}

}

}


Answer: A


QUESTION: 314

-- Exhibit --

...

if-exceeding { bandwidth-limit 1m; burst-size-limit 3k;

}

then discard;

-- Exhibit --

The configuration in the exhibit is associated with which class of service component?


  1. classification

  2. policing

  3. queuing

  4. scheduling


Answer: B


QUESTION: 315

-- Exhibit --

[edit firewall family inet filter COS-CLASSIFIER] user@router# show term MANAGER { from { source-address {

192.168.200.0/25;

}

destination-address { 100.100.100.1/32;

}

}

then {

forwarding-class expedited-forwarding; accept;

}

}

term ALL-OTHER-TRAFFIC {

then accept;

}

[edit interfaces ge-0/0/1] user@router# show

unit 0 { familyinet { filter { input COS-CLASSIFIER;

}

address 192.168.200.1/24;

}

}

-- Exhibit --

Referring to the exhibit, which type of classifier is being used in this CoS configuration?


  1. behavior aggregate

  2. policer

  3. multifield

  4. forwarding policy


Answer: C


QUESTION: 316

-- Exhibit --

[edit class-of-service] user@router# show interfaces { ge-0/0/2 { unit 0 { classifiers {

inet-precedence default;

}

}

}

}

-- Exhibit --

Referring to the exhibit, which type of classifier is being used in this CoS configuration?


  1. behavior aggregate

  2. policer

  3. multifield

  4. forwarding policy Answer: A QUESTION: 317

-- Exhibit --

user@router> show route protocol static

inet.0: 12 destinations, 12 routes (12 active, 0 holddown, 0 hidden)

+ = Active Route, - = Last Active, * = Both 192.168.1.128/27 *[Static/5] 00:03:13

>to 10.20.106.10 via fe-0/0/5.1 192.168.1.144/29 *[Static/5] 00:03:13

>to 10.20.14.131 via ge-0/0/0.0 192.168.1.192/27 *[Static/5] 00:03:13

>to 10.18.1.1 via ge-0/0/1.0 192.168.1.128/28 *[Static/5] 00:01:06

>to 10.20.14.130 via ge-0/0/0.0

-- Exhibit --

Given the routing entries shown in the exhibit, which next-hop IP address will be used for the destination IP address 192.168.1.142? (Assume that only static routes are available for the destination.)


A. 10.20.106.10

B. 10.20.14.131

C. 10.18.1.1

D. 10.20.14.130


Answer: D


QUESTION: 318

-- Exhibit --

user@router> show route protocol static

inet.0: 12 destinations, 12 routes (12 active, 0 holddown, 0 hidden)

+ = Active Route, - = Last Active, * = Both 192.168.1.128/27 *[Static/5] 00:03:13

>to 10.20.106.10 via fe-0/0/5.1 192.168.1.144/29 *[Static/5] 00:03:13

>to 10.20.14.131 via ge-0/0/0.0 192.168.1.192/27 *[Static/5] 00:03:13

>to 10.18.1.1 via ge-0/0/1.0 192.168.1.128/28 *[Static/5] 00:01:06

>to 10.20.14.130 via ge-0/0/0.0

-- Exhibit --

Given the routing entries shown in the exhibit, which next-hop IP address will be used for the destination IP address 192.168.1.159? (Assume that only static routes are available for the destination.)

A. 10.20.14.130

B. 10.18.1.1

C. 10.20.14.131

D. 10.20.106.10


Answer: D


QUESTION: 319

-- Exhibit --

user@router> show route protocol static

inet.0: 12 destinations, 12 routes (12 active, 0 holddown, 0 hidden)

+ = Active Route, - = Last Active, * = Both 192.168.1.0/24 *[Static/5] 00:03:13

>to 10.20.106.10 via fe-0/0/5.1 192.168.1.192/26 *[Static/5] 00:03:13

>to 10.20.14.131 via ge-0/0/0.0 192.168.1.192/27 *[Static/5] 00:03:13

>to 10.18.1.1 via ge-0/0/1.0 192.168.1.4/30 *[Static/5] 00:01:06

>to 10.20.14.130 via ge-0/0/0.0

-- Exhibit --

Using the routing table shown in the exhibit, what will be the next-hop IP address used for a destination IP address of 192.168.1.1? (Assume that the only routes to this destination are static routes.)


A. 10.20.14.130

B. 10.18.1.1

C. 10.20.14.131

D. 10.20.106.10


Answer: D

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