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Data Center, Associate (JNCIA-DC)
- Exam Number/Code : JN0-281
- Exam Name : Data Center, Associate (JNCIA-DC)
- Questions and Answers : 213 Q&As
- Update Time: 2019-01-10
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NEW QUESTION: 1
Which label operation is performed by an MPLS transit router?
A. swap
B. pop
C. push
D. inject
Answer: A
Explanation:
Explanation/Reference:
http://www.juniper.net/techpubs/software/junos-security/junos-security96/junos-security-swconfig- interfaces-and-routing/mpls-ov.html
NEW QUESTION: 2
A scientific customer implementing a large archive solution and plans to use IBM Spectrum Scale and IBM Spectrum Archive to store the data. The customer wants to take advantage of the IBM solution for media verification.
What does the customer need to understand about the IBM TS4500 media verification function?
A. It is included in the firmware as a chargeable feature.
B. It requires one dedicated drive with two recommended.
C. It is managed by software running on a device external to the library.
D. It makes use of all library drives while unused by the application.
Answer: B
NEW QUESTION: 3
A company has created an account for individual Development teams, resulting in a total of 200 accounts. All accounts have a single virtual private cloud (VPC) in a single region with multiple microservices running in Docker containers that need to communicate with microservices in other accounts. The Security team requirements state that these microservices must not traverse the public internet, and only certain internal services should be allowed to call other individual services. If there is any denied network traffic for a service, the Security team must be notified of any denied requests, including the source IP.
How can connectivity be established between services while meeting the security requirements?
A. Ensure that no CIDR ranges are overlapping, and attach a virtual private gateway (VGW) to each VPC.
Provision an IPsec tunnel between each VGW and enable route propagation on the route table.
Configure security groups on each service to allow the CIDR ranges of the VPCs on the other accounts. Enable VPC Flow Logs, and use an Amazon CloudWatch Logs subscription filter for rejected traffic. Create an IAM role and allow the Security team to call the AssumeRole action for each account.
B. Create a VPC peering connection between the VPCs. Use security groups on the instances to allow traffic from the security group IDs that are permitted to call the microservice. Apply network ACLs to and allow traffic from the local VPC and peered VPCs only. Within the task definition in Amazon ECS for each of the microservices, specify a log configuration by using the awslogs driver. Within Amazon CloudWatch Logs, create a metric filter and alarm off of the number of HTTP 403 responses. Create an alarm when the number of messages exceeds a threshold set by the Security team.
C. Create a Network Load Balancer (NLB) for each microservice. Attach the NLB to a PrivateLink endpoint service and whitelist the accounts that will be consuming this service. Create an interface endpoint in the consumer VPC and associate a security group that allows only the security group IDs of the services authorized to call the producer service. On the producer services, create security groups for each microservice and allow only the CIDR range the allowed services. Create VPC Flow Logs on each VPC to capture rejected traffic that will be delivered to an Amazon CloudWatch Logs group.
Create a CloudWatch Logs subscription that streams the log data to a security account.
D. Deploy a transit VPC by using third-party marketplace VPN appliances running on Amazon EC2, dynamically routed VPN connections between the VPN appliance, and the virtual private gateways (VGWs) attached to each VPC within the region. Adjust network ACLs to allow traffic from the local VPC only. Apply security groups to the microservices to allow traffic from the VPN appliances only.
Install the awslogs agent on each VPN appliance, and configure logs to forward to Amazon CloudWatch Logs in the security account for the Security team to access.
Answer: C
Explanation:
Explanation
AWS PrivateLink provides private connectivity between VPCs, AWS services, and on-premises applications, securely on the Amazon network. AWS PrivateLink makes it easy to connect services across different accounts and VPCs to significantly simplify the network architecture. It seems like the next VPC peering.
https://aws.amazon.com/privatelink/
NEW QUESTION: 4
Refer to the exhibit.
Host A is sending a packet to Host B for the first time. What destination MAC address will Host A use in the ARP
request?
A. 192.168.0.1
B. 172.16.0.50
C. 00-19-d3-2d-c3-b2
D. ff-ff-ff-ff-ff-ff
E. 00-17-94-61-18-b0
F. 255.255.255.255
Answer: D
Explanation:
For the initial communication, Host A will send a broadcast ARP (all F's) to determine the correct address to use to
reach the destination.
ARP sends an Ethernet frame called an ARP request to every host on the shared link-layer legmen. The Ethernet
header includes the source host MAC address and a destination address of all Fs representing a broadcast frame. The
ARP request contains the sender's MAC and IP address and the target (destination) IP address. The target's MAC
address is set to all 0s.
ARP Request
Reference:
http://www.technicalhowto.com/protocols/arp/arp.html