Windows 2000 Server
You want to provide Internet access for the clients on your network. You decide to use Network Address Translation (NAT). You have a Windows 2000 computer you try to establish a secure Virtual Private Networking session with. You try connecting to the Remote Windows 2000 computer using L2TP. You are unable to establish a connection with the remote node using L2TP. You are able to make a connection with another computer in your same office. Why are you unable to make a connection.to the remote location?

L2TP does not work with Windows 2000 computers
NAT does not allow for remote networking
You can not establish a L2TP connection behind a computer running NAT. The L2TP session fails because the IP Security packets become corrupted
None of above
You have not configured the NAT server to translate the IP Security packets

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Windows 2000 Server
You are the administrator of a Windows 2000 Server computer. The server contains one network adapter and is a file and print server for critical company resources. You install a second network adpater in the server and connect it to the same network subnet as the first adapter. You want to ensure that the first adapter is used for all network traffic and the second adapter is used only if the first adapter fails or is disconnected from the network. You also want to ensure that the server always has network connectivity even if one network adapter fails. What should you do?

Configure the second adapter to use a TCP/IP metric of 25
Configure the first adapter to use a TCP/IP metric of 100
Set the second adapters status to disable
None of above
Configure the binding order on the second adapter to bind TCP/IP last

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Windows 2000 Server
Your network uses TCP/IP as the only network protocol. Devices on the network are configured to use IP address from the private 10.0.0.0 range. All the client computers on the network runs Windows 2000 Professional. The network includes Windows 2000 Server computers and UNIX servers. User's print jobs are sent to shared printers on a Windows 2000 Server computer named PrintServ that directs the print jobs to print devices attached directly to the network. You have a high-capacity print device that is attached to one of the UNIX servers. The UNIX computer uses the LPR printing protocol, and it's IP address is 10.1.1.99. The name of the printer queue is GIANT. You want users to be able to connect to this printer from their computers. What should you do?

None of above
Install Microsoft Print Services for Unix on users* Computers. Create a network printer, and specify that the printer name is \10.1.1.99GIANT
Install Microsoft Print Services for Unix on PrintServ. Create a network printer on users' computers, and specify that the printer URL is LPR://10.1.1.99/ GIANT
Create a network printer on PrintServ, and specify that the printer name is \16.1.1.99GIANT. Share this printer and connect to it from users computers
Create a local printer on PrintServ. Create a new TCP/IP port for an LPR server at address 10.1.1.99 with a queue name of GIANT. Share this printer and connect to it from users' computers

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Windows 2000 Server
Your network contains 10 domain controllers, 10 member servers, and approximately 1,000 client computers. All the servers run Windows 2000 Server, and all the client computers run Windows 2000 Professional. Two of the domain controllers act as DNS servers. Users of client computers use file sharing to grant access to files stored locally. The network has 10 subnets and uses TCP/IP as the only network protocol. You want to configure the network so that all computers can resolve the addresses of all other computers by using DNS. Client computers must be able to register and resolve addresses if a server fails. How should you configure the DNS servers?

Configure one server with a standard primary zone for the domain, and configure at least one server with an Active Directory integrated primary zone
Configure one server with an Active directory integrated primary zone for the domain, and configure at least one server with a standard secondary zone
Configure one server with a standard primary zone for the domain, and configure at least one server with standard secondary zone
Configure at least two servers with Active Directory integrated primary zones for the domain
Configure at least two servers with standard primary zones for the domain

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Windows 2000 Server
You are the administrator of a network that consists of Windows 2000 Server computers and Windows 2000 Professional computers. You want to configure the deployment of the most recent Windows 2000 service pack so that users of the Windows 2000 Professional computers receive the service pack automatically when they log on to the domain. What should you do?

Create a Microsoft -Windows Installer package for the service pack. Configure the package in the Local Computer Policy
Create a Microsoft Windows Installer package for the service pack. Configure the package in a Group Policy
None of above
Create a Microsoft Windows installer package for the service pack. Configure RIS to use the package
Place the service pack in a Distributed file system (Dfs)

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Windows 2000 Server
You are the administrator of a Windows 2000 Server computer that has one hard disk. This computer runs a custom application that writes a large number of small temporary files in a single directory to support request from client computers. To improve performance of the application, you add three new 100-GB SCSI disks to the server to hold these temporary files. You want to ensure that the application can use all 300 GB of space with a single drive letter. You also want to ensure the fastest possible performance when writing the temporary files. How should you configure the three disks?

Create a single volume on Disk 1. Format the volume as NTFS. Extend the volume to create a spanned volume that includes the space on all three disks
None of above
Convert all three disks to dynamic disks. Create a striped volume
Create a single volume on each of the three disks. Format each volume as NTFS. Mount the roots of Disk 2 and Disk 3 in the root folder of Disk 1
Convert all three disks to dynamic disks. Create a RAID-5 volume

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