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NEW QUESTION: 1
You are tasked with moving a legacy application from a virtual machine running inside your datacenter to an Amazon VPC. Unfortunately, this app requires access to a number of on-premises services and no one who configured the app still works for your company. Even worse there's no documentation for it.
What will allow the application running inside the VPC to reach back and access its internal dependencies without being reconfigured? (Choose 3 answers)
A. Entries in Amazon Route 53 that allow the Instance to resolve its dependencies' IP addresses
B. An AWS Direct Connect link between the VPC and the network housing the internal services.
C. An Elastic IP address on the VPC instance
D. An Internet Gateway to allow a VPN connection.
E. An IP address space that does not conflict with the one on-premises
F. A VM Import of the current virtual machine
Answer: B,E,F
Explanation:
Explanation/Reference:
Explanation:
AWS Direct Connect
AWS Direct Connect makes it easy to establish a dedicated network connection from your premises to AWS. Using AWS Direct Connect, you can establish private connectivity between AWS and your datacenter, office, or collocation environment, which in many cases can reduce your network costs, increase bandwidth throughput, and provide a more consistent network experience than Internet-based connections.
AWS Direct Connect lets you establish a dedicated network connection between your network and one of the AWS Direct Connect locations. Using industry standard 802.1q VLANs, this dedicated connection can be partitioned into multiple virtual interfaces. This allows you to use the same connection to access public resources such as objects stored in Amazon S3 using public IP address space, and private resources such as Amazon EC2 instances running within an Amazon Virtual Private Cloud (VPC) using private IP space, while maintaining network separation between the public and private environments. Virtual interfaces can be reconfigured at any time to meet your changing needs.
What is AWS Direct Connect?
AWS Direct Connect links your internal network to an AWS Direct Connect location over a standard 1 gigabit or 10 gigabit Ethernet fiber-optic cable. One end of the cable is connected to your router, the other to an AWS Direct Connect router. With this connection in place, you can create virtual interfaces directly to the AWS cloud (for example, to Amazon Elastic Compute Cloud (Amazon EC2) and Amazon Simple Storage Service (Amazon S3) and to Amazon Virtual Private Cloud (Amazon VPC), bypassing Internet service providers in your network path. An AWS Direct Connect location provides access to Amazon Web Services in the region it is associated with, as well as access to other US regions. For example, you can provision a single connection to any AWS Direct Connect location in the US and use it to access public AWS services in all US Regions and AWS GovCloud (US).
The following diagram shows how AWS Direct Connect interfaces with your network.
Requirements
To use AWS Direct Connect, your network must meet one of the following conditions:
Your network is collocated with an existing AWS Direct Connect location. For more information on available AWS Direct Connect locations, go to http://aws.amazon.com/directconnect/.
You are working with an AWS Direct Connect partner who is a member of the AWS Partner Network (APN). For a list of AWS Direct Connect partners who can help you connect, go to http://aws.amazon.com/ directconnect.
You are working with an independent service provider to connect to AWS Direct Connect.
In addition, your network must meet the following conditions:
Connections to AWS Direct Connect require single mode fiber, 1000BASE-LX (1310nm) for 1 gigabit Ethernet, or 10GBASE-LR (1310nm) for 10 gigabit Ethernet. Auto Negotiation for the port must be disabled. You must support 802.1Q VLANs across these connections.
Your network must support Border Gateway Protocol (BGP) and BGP MD5 authentication. Optionally, you may configure Bidirectional Forwarding Detection (BFD).
To connect to Amazon Virtual Private Cloud (Amazon VPC), you must first do the following:
Provide a private Autonomous System Number (ASN). Amazon allocates a private IP address in the
169.x.x.x range to you.
Create a virtual private gateway and attach it to your VPC. For more information about creating a virtual private gateway, see Adding a Hardware Virtual Private Gateway to Your VPC in the Amazon VPC User Guide.
To connect to public AWS products such as Amazon EC2 and Amazon S3, you need to provide the following:
A public ASN that you own (preferred) or a private ASN.
Public IP addresses (/31) (that is, one for each end of the BGP session) for each BGP session. If you do not have public IP addresses to assign to this connection, log on to AWS and then open a ticket with AWS Support.
The public routes that you will advertise over BGP.
NEW QUESTION: 2
Virus scanning and content inspection of SMIME encrypted e-mail without doing any further processing is:
A. Only possible with key recovery scheme of all user keys
B. It is possible only by "brute force" decryption
C. It is possible only if X509 Version 3 certificates are used
D. Not possible
Answer: D
Explanation:
Content security measures presumes that the content is available in cleartext on the central mail server.
Encrypted emails have to be decrypted before it can be filtered (e.g. to detect viruses), so you need the decryption key on the central "crypto mail server".
There are several ways for such key management, e.g. by message or key recovery methods. However, that would certainly require further processing in order to achieve such goal.
NEW QUESTION: 3
Your company has a server named Server1 that runs Windows Server 2008 R2. Server1 runs the DHCP Server server role and the DNS Server server role. You also have a server named ServerCore that runs a Server Core installation of Windows Server 2008 R2. All computers are configured to use only Server1 for DNS resolution. The IP address of Server1 is 192.168.0.1. The network interface on all the computers is named LAN. Server1 is temporarily offline. A new DNS server named Server2 has been configured to use the IP address 192.168.0.254.
You need to configure ServerCore to use Server2 as the preferred DNS server and Server1 as the alternate DNS server.
What should you do?
A. Run the netsh interface ipv4 set dnsserver "LAN" static 192.168.0.254 primary command and the netsh interface ipv4 set dnsserver "LAN" static 192.168.0.1 both command.
B. Run the netsh interface ipv4 add dnsserver "LAN" static 192.168.0.254 index=1 command.
C. Run the netsh interface ipv4 set dnsserver "LAN" static 192.168.0.254 primary command and the netsh interface ipv4 add dnsserver "LAN" static 192.168.0.1 index=1 command.
D. Run the netsh interface ipv4 set dnsserver "LAN" static 192.168.0.254 192.168.0.1 both command.
Answer: B
NEW QUESTION: 4
Note: This question is part of a series of questions that use the same or similar answer choices. An answer choice may be correct for more than one question in the series. Each question is independent of the other questions in this series. Information and details provided in a question apply only to that question.
You have a Microsoft SQL Server database named DB1 that contains the following tables:
Users frequently run the following query. The users report that the query takes a long time to return results.
You need to minimize the amount of time required for the query to return data. What should you do?
A. Create a clustered index on TBL1. Create a nonclustered index on TBL2 and add the most frequently queried columns as included columns.
B. Drop existing indexes on tbli and then create a clustered columnstore index. Create a nonclustered columnstore index on tbli. Make no changes to TBL2.
C. Create unique constraints on both TBL1 and TBL2. Create a partitioned view that combines columns from TBL1 and TBL2.
D. Create a nonclustered index on TBL2 only.
E. Create clustered indexes on TBL1 and TBL2.
F. Create an indexed view that combines columns from TBL1 and TBL2.
G. Drop existing indexes on TBL1 and then create a clustered columnstore index. Create a nonclustered columnstore index on TBL1. Create a nonclustered index on TBL2.
H. Create CHECK constraints on both TBL1 and TBL2.. Create a partitioned view that combines columns fromTBL1 and TBL2.
Answer: F