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NEW QUESTION: 1
How should you configure the Exchange 2000 Server mailbox computers in Chicago to meet archiving requirements?
A. On each Server create one storage group with five databases. Place the executive mailboxes in one database. Place 200 mailboxes in each of the remaining databases. Back up each database to tape.
B. On one Server, create one storage group with one database. Place the executive's mailboxes and 800 other mailboxes in this database. On the second Server, create one storage group with one database. Place 1000 mailboxes in this database. Backup each storage group to tape.
C. On one Server, create one storage group with one database. Place the executive's mailboxes and 800 other mailboxes in this database. On the second Server, create one storage group with one database. Place 1000 mailboxes in this database. Backup each database to tape.
D. On each Server create one storage group with five databases. Place the executive mailboxes in one database. Place 200 mailboxes in each of the remaining databases. Back up the storage group to tape.
Answer: D
Explanation:
The recommendation for database capacity planning on non-clustered Exchange 2000 Servers is a maximum of four storage groups that contain a maximum of five databases for each storage group. This results in a maximum of 20 databases for each Exchange 2000 server.
They have 2000 people in Chicago, we create a one storage group 5 databases in total, we can put the executives in one database and split the rest in the other databases Incorrect answers:
You can not put five databases in one storage group. This limit is enforced inside the Exchange System Manger snap-in, so administrators cannot create more storage groups than the system enables.
For backup and recovery, Exchange 2000 enables one active backup or restoration of a database for each storage group at any one time.
These new values affect the deployment of cluster servers. For example, in a sample configuration of a two-node cluster with two storage groups for each node (assigned to virtual servers), if failover occurs, one node may have four storage groups.
The fundamental rule is that a single server cannot host more than four storage groups at any one time. Exchange Enterprise server can have 5 storage group each storage group can have four mailbox store, in this way Reference:
Exchange 2000 Resource Kit
Chapter 28 - Backup and Restore
XADM: Maximum Number of Storage Groups in Exchange 2000 for Database Capacity Planning 251123 Case Study #4, Trey Research Introduction:
You are an employee of Trey Research. Your current project is to provide design and deployment services for the implementation of Exchange 2000 Server as your company's primary messaging system.
Background:
Company Profile:
Trey Research is a diversified chemical company that produces household and commercial projects. Trey Research employs more than 90,000 people, in 55 countries.
Business Plan:
Trey Research plans to continue to grow. Over the next two years, the company plans to increase staff by 10 percent at each location, with the exception of the Pacific Rim area, where it plans to increase staff 50 percent.
Money is budgeted for improvements in network reliability and scalability.
Overview:
The divisions at Trey Research are autonomous. Each company location has staff assigned to support and administer the Exchange Server computers.
Directory Design:
The directory structure is a traditional Microsoft Windows NT 4.0 multi-master domain model that includes an Exchange Server 5.5 directory. The company does not use Active Directory. The planned Active Directory design implementation will migrate the current Windows n domains to a single Microsoft Windows 2000 domain.
Administrative Model:
The Exchange Server 5.5 staff at each location consists of a group of administrators who are responsible for the Exchange Server 5.5 infrastructure and the Exchange Server 5.5 directory.
The Windows staff is a separate storage group of administrators and who are responsible for the Windows NT and Windows 2000 infrastructure. The group is also responsible for the Windows NT domains.
The network staff is a third group of administrators, who are responsible the network infrastructure which includes DNS name resolution and the firewalls.
Network Infrastructure:
Trey Research has a worldwide network, which is shown in the exhibit.
The Exchange 5.5 site connections follow the physical network connections. The cost value on each site connector is 10. Bandwidth available between sites is at least 256 Kbps.
Servers:
There are Exchange Server 5.5 computers at every location. There are two Exchange Server 5.5 computer configurations
* Dual-function mailbox-public folder servers.
* Bridgehead servers.
The following lists describe the mailbox-public folder servers.
SMALL SERVERS
* 500-999 mailboxes
* Priv.edb size of 5 GB to 10 GB
* Pub.edb size of 3 GB to 10 GB
LARGE SERVERS
* 1,000-6,000 mailboxes
* Priv.edb size of 11 GB to 50 GB
* Pub.edb size of 11 GB to 40 GB
The large mailbox-public folder servers process a high volume of transactions. Currently, public folder usage has a negative effect on mailbox access on these servers.
Some of the small mil-box public folder servers are configured with circular logging enabled. The large mailbox-public folder servers are configured with circular logging disabled.
The bridgehead servers have 128 MB of memory.
Virus-scanning software is installed on all Exchange Server 5.5 mailbox-public folder servers.
Client Computers:
On a company-wide basis, all versions of Microsoft Outlook are used to access Exchange. Some employees use third-party POP3 client software to remotely access Exchange. Exchange Server
5.5 Outlook Web Access is available but has not been used extensively because of scalability problems.
Users in the inventory control department do not use Microsoft Office or Outlook. This group runs a custom inventory application that does not require powerful client computers. Most users in this group have Pentium computers with 100 MHz processors running Windows for Workgroups 3.11.
All users in this group must have access to e-mail and public folders.
Exchange 2000 Server Requirements and Goals:
Security Requirements:
Exchange 2000 Server design must maximize the security between the Exchange 2000 Server computers and the POP3 client software that is used on the remote client computers.
Backup, Recovery, and Archiving Requirements:
These requirements must be fulfilled after a failure.
* Mailboxes for users in the Legal department must be restored within two hours.
* Mailboxes for all other users must be restored within six hours.
* Information in public folders must be restored within eight hours.
These requirements must be fulfilled for archive retention.
* Legal department messages must be retained for at least three days, with a measure of 30 days.
* All other user's messages must be retained for at least 30 days, with a maximum of one year.
* Documents in public folders must be retained for at least two years with no maximum.
The Exchange 2000 Server computers should be recoverable to point of failure.
Interoperability Requirements:
The employees who use POP3 client software must be able to remotely access public folders.
The POP3 software must maintain a small footprint on these remote client computers.
Technical Support Requirements:
The Exchange Administrator staff will be split into two groups:
* The first group will administer all connections between Exchange 2000 Server sites and routing groups. This group will also administer Exchange 2000 server computers that are used as bridgehead servers and as front-end servers, and all exchanged hosted connections to outside sources.
* The second group will continue to administer the information store servers at each location.
* The administrators at each office will be able to administer the information store servers at only that location.
Messaging manager:
The manager in charge of messaging services wants to meet these objectives for the new exchange 2000 server implementation:
* All users must be able to quickly locate documents in all of the public folders.
* The design for exchange 2000 server public folder must accommodate documents that are stored in public folders and tat change very frequently, but are accessed infrequently.
* The back-end servers must be available 99.999 percent of the time, and hardware must be used efficiently.
* Users will log on to the active directory infrastructure by using a windows 2000 account as they are moved to exchange 2000 server.
Changes to the existing network should be avoided, and new physical network connections should be designed with capabilities that exceed the requirements for failover purposes.
Technology Specialist:
The technology specialist who is responsible for the exchange server computers wants to meet these objectives:
* The design should minimize total disk space requirements by maximizing single-instance storage.
* Only the essential items that are needed to perform a complete mailbox server recovery should be backed up to tape on a nightly basis.
* The design must protect against message storms and the misuse of distribution groups.
Questions, Case Study #4, Trey Research
NEW QUESTION: 2
Drag each IPv6 prefix on the left to its use on the right.
Answer:
Explanation:
Explanation
FF02::1 = All link-local nodes on a segment
FF02::5 = all OSPFv3 routers
FF02::6 = OSPFv3 designated routers
FF02::A = all EIGRPv6 routers
FF02::D = All PIM routers
FF05::2 = all site local routers
NEW QUESTION: 3
A. Option A
B. Option F
C. Option E
D. Option G
E. Option B
F. Option C
G. Option D
Answer: D,E
Explanation:
Since static routing is a manual process, it can be argued that it is more secure (and more prone to human errors) since the network administrator will need to make changes to the routing table directly.
Also, in stub networks where there is only a single uplink connection, the load is reduced as stub routers just need a single static default route, instead of many routes that all have the same next hop IP address.