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NEW QUESTION: 1
Which default code on Cisco IP phones is used to unlock the manual configuration of items such as network configuration settings?
A. #0*987654321
B. **#
C. #**
D. 123456789*0#
Answer: B

NEW QUESTION: 2
DRAG DROP
You are planning the upgrade to Exchange Server 2013.
You plan to perform the following tasks:
Identify the number of email messages sent and received by the users in the current Exchange Server organization.
Identify how many IOPS are required to provide adequate access to mailboxes for all of the users in the planned organization.
Validate that all of the planned servers will meet the IOPS requirements of the planned organization.
You need to identify which tool must be used to achieve each task.
Which tools should you identify?
To answer, drag the appropriate tool to the correct task in the answer area. Each tool may be used once, more than once, or not at all. Additionally, you may need to drag the split bar between panes or scroll to view content.
Select and Place:

Answer:
Explanation:

Explanation/Reference:
Explanation:
Exchange Mailbox Server Role Requirements Calculator
Exchange 2010 Product
http://blogs.technet.com/b/exchange/archive/2009/11/09/3408737.aspx
(Exchange 2013 Server Role Requirements Calculator
Yes, this is no longer a Mailbox server role calculator; this calculator includes recommendations on sizing Client Access servers too!)
After you have determined the design you would like to implement, you can follow the steps in the Exchange 2010 Mailbox Server Role Design Example article within the Exchange 2010 Online Help to calculate your solution's CPU, memory, and storage requirements, or you can leverage the Exchange
2010 Mailbox Server Role Requirements Calculator.
The calculator is broken out into the following sections (worksheets):
Input
Role Requirements
Activation Scenarios
Distribution
LUN Requirements
Backup Requirements
Log Replication Requirements
Storage Design
Based on the above input factors the calculator will recommend the following architecture, broken down into four sections:
Environment Configuration
Active Database Copy Configuration
Server Configuration
Log, Disk Space, and IO Requirements

Microsoft Exchange Server Deployment Assistant
The Exchange Server Deployment Assistant is a web-based tool that asks you a few questions about your current environment and then generates a custom step-by-step checklist that will help you deploy Exchange.
The Exchange Server 2013 Deployment Assistant is available for the following scenarios. More scenarios will be added on a continuous basis.
On-premises deployments
New installation of Exchange Server 2013
Upgrade from Exchange 2010 to Exchange 2013
Upgrade from Exchange 2007 to Exchange 2013
Upgrade from mixed Exchange 2007 and Exchange 2010 to Exchange 2013
Hybrid deployments
(On-premises + Cloud)
Exchange 2013 on-premises with Exchange Online
Exchange 2010 on-premises with Exchange Online
Exchange 2007 on-premises with Exchange Online
Cloud-only deployments
Understand your options for migrating email to Exchange Online and Microsoft Office 365

Microsoft Exchange Server Jetstress 2010
Applies to: Exchange Server 2010 SP1, Exchange Server 2010
Jetstress 2010 works with the Microsoft Exchange Server 2010 database engine to simulate the Exchange database and log disk input/output (I/O) load.
You can use Jetstress 2010 to verify the performance and stability of a disk subsystem prior to putting an Exchange 2010 server into production. Jetstress helps verify disk performance by simulating Exchange disk I/O load. Jetstress simulates the Exchange database and log file loads produced by a specific number of users.
You use Performance Monitor, Event Viewer, and the Exchange Server Database Utilities (Eseutil.exe) tool in conjunction with Jetstress to verify that your disk subsystem meets or exceeds the performance criteria you establish. After successful completion of the Jetstress disk performance and stress tests in a non-production environment, you will have verified that your Exchange 2010 disk subsystem is adequately sized (in terms of performance criteria you establish) for the user count and user profiles you have established.
Important:
Jetstress testing should be performed before you install Exchange on the server.

Microsoft Exchange Server Profile Analyzer

The Microsoft Exchange Server Profile Analyzer tool lets administrators collect estimated statistical information from a single mailbox store or across an Exchange Server organization.
You can use the collected data to perform the following operations:
Analyze the performance and health of a mailbox server.
Improve capacity planning models.
Improve testing methodologies and tools.
Improve future client and server products.
STEPS
1. Microsoft Exchange Server Profile Analyser Collects statistical information across an Exchange Server organization
2. Exchange Mailbox Server Role Requirements Calculator Makes recommendations based on inputs provided.
3. Microsoft Exchange Server Jetstress 2010 Jetstress 2010 works with the Microsoft Exchange Server 2010 database engine to simulate the Exchange database and log disk input/output (I/O) load.
Microsoft Exchange Server Profile Analyzer
Released: Exchange 2013 Server Role Requirements Calculator - Exchange Team Blog - Site Home - TechNet Blogs
Microsoft Exchange Server Jetstress 2010

NEW QUESTION: 3

A. Option C
B. Option E
C. Option D
D. Option B
E. Option A
Answer: D
Explanation:
The IEEE 802.1D Spanning Tree Protocol was designed to keep a switched or bridged network loop free, with adjustments made to the network topology dynamically. A topology change typically takes 30 seconds, where a port moves from the Blocking state to the Forwarding state after two intervals of the Forward Delay timer. As technology has improved, 30 seconds has become an unbearable length of time to wait for a production network to failover or "heal" itself during a problem.
Topology Changes and RSTP Recall that when an 802.1D switch detects a port state change (either up or down), it signals the Root Bridge by sending topology change notification (TCN) BPDUs. The Root Bridge must then signal a topology change by sending out a TCN message that is relayed to all switches in the STP domain. RSTP detects a topology change only when a non-edge port transitions to the Forwarding state. This might seem odd because a link failure is not used as a trigger. RSTP uses all of its rapid convergence mechanisms to prevent bridging loops from forming. Therefore, topology changes are detected only so that bridging tables can be updated and corrected as hosts appear first on a failed port and then on a different functioning port. When a topology change is detected, a switch must propagate news of the change to other switches in the network so they can correct their bridging tables, too. This process is similar to the convergence and synchronization mechanism-topology change (TC) messages propagate through the network in an ever-expanding wave.
Reference:
CCNP BCMSN Official Exam Certification Guide, Fourth Edition, Chapter 11: Advanced Spanning Tree Protocol, Rapid Spanning Tree Protocol, Topology Changes and RSTP, p. 269