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NEW QUESTION: 1
Your company deploys an Office 365 tenant.
You need to ensure that you can view service health and maintenance reports for the past seven days.
What are two possible ways to achieve this goal? Each correct answer presents a complete solution.
A. Subscribe to the Office 365 Service Health RSS Notifications feed.
B. View the service health current status page of the Office 365 admin center.
C. View the service settings page of the Office 365 admin center.
D. Run the Microsoft Online Services Diagnostics and Logging (MOSDAL) Support Kit.
You can log into Office 365 as an Office365Administrator and view the Service Health Page to view the status of your Office 365 services. You can use the Service Health Page to view information on the status of your services for the current day or you can select the previous 6 days or 30 days for a historical view.
The following icons are used in the Service Health Page:
* A plain green tick indicates that the service is available and there have been no incidents during the reported time period.
* A grey question mark in a circle indicates that a potential issue is currently under investigation.
* A plain green tick with a plus sign indicates that a reported issue was a false positive.
* A white down arrow in a red circle indicates that the service is offline.
* A white up arrow in an orange circle indicates that a service incident is currently being resolved.
* A white right-facing arrow in an orange circle indicates that the service is degraded.
* A white exclamation mark in a blue circle indicates that there was an incident during a previous day and that more information is displayed in the Today column.
* A white square indicates that a post incident report has been published.
In the top right corner of the Service Health page, there is an RSS icon. You can click on the RSS icon to sign up for the service health RSS feed, which will email you when a new event is added or an existing event is updated.
NEW QUESTION: 2
Click the Exhibit button.
-- Exhibit -
-- Exhibit --
You must configure two SRX devices to enable bidirectional communications between the two networks shown in the exhibit. You have been allocated the 172.16.1.0/24 and
172.16.2.0/24 networks to use for this purpose.
Which configuration will accomplish this task?
A. Use an IPsec VPN to connect the two networks and hide the addresses from the
B. Using static NAT, translate traffic destined to 172.16.1.0/24 to Site1's addresses, and translate traffic destined to 172.16.2.0/24 to Site2's addresses.
C. Using source NAT, translate traffic from Site1's addresses to 172.16.1.0/24, and translate traffic from Site2's addresses to 172.16.2.0/24.
D. Using destination NAT, translate traffic destined to 172.16.1.0/24 to Site1's addresses, and translate traffic destined to 172.16.2.0/24 to Site2's addresses.
To examine bidirectional communication you need multiple packet filters, one for each direction.
NEW QUESTION: 3
You are the network security engineer for the Secure-X network. The company has recently detected Increase of traffic to malware Infected destinations. The Chief Security Officer deduced that some PCs in the internal networks are infected with malware and communicate with malware infected destinations.
The CSO has tasked you with enable Botnet traffic filter on the Cisco ASA to detect and deny further connection attempts from infected PCs to malware destinations. You are also required to test your configurations by initiating connections through the Cisco ASA and then display and observe the Real-Time Log Viewer in ASDM.
To successfully complete this activity, you must perform the following tasks:
* Download the dynamic database and enable use of it.
* Enable the ASA to download of the dynamic database
* Enable the ASA to download of the dynamic database.
* Enable DNS snooping for existing DNS inspection service policy rules..
* Enable Botnet Traffic Filter classification on the outside interface for All Traffic.
* Configure the Botnet Traffic Filter to drop blacklisted traffic on the outside interface. Use the default Threat Level settings NOTE: The database files are stored in running memory; they are not stored in flash memory.
NOTE: DNS is enabled on the inside interface and set to the HQ-SRV (10.10.3.20).
NOTE: Not all ASDM screens are active for this exercise.
* Verify that the ASA indeed drops traffic to blacklisted destinations by doing the following:
the Employee PC, navigate to http://www.google.com to make sure that access to the Internet is working.
the Employee PC, navigate to http://bot-sparta.no-ip.org. This destination is classified as malware destination by the Cisco SIO database.
the Employee PC, navigate to http://superzarabotok-gid.ru/. This destination is classified as malware destination by the Cisco SIO database.
* From Admin PC, launch ASDM to display and observe the Real-Time Log Viewer.
You have completed this exercise when you have configured and successfully tested Botnet traffic filter on the Cisco ASA.
See the explanation for detailed answer to this sim question.
First, click on both boxes on the Botnet Database as shown below and hit apply:
Click Yes to send the commands when prompted.
Then, click on the box on the DNS Snooping page as shown below and hit apply:
Click Yes to send the commands when prompted.
Then, click on the box on the Traffic Settings tab as shown:
At which point this pop-up box will appear when you click on the Add button:
Click OK. Then Apply. Then Send when prompted.
Then verify that all is working according to the instructions given in the question.
NEW QUESTION: 4
Which statement about slow inter-VLAN forwarding is true?
A. The VLAN is experiencing slowness in the point-to-point collisionless connection.
B. The VLANs are experiencing slowness because multiple devices are connected to the same hub.
C. The entire VLAN is experiencing slowness.
D. The VLANs are experiencing slowness due to a duplex mismatch.
E. The local VLAN is working normally, but traffic to the alternate VLAN is forwarded slower than expected.
Common Causes of Slow IntraVLAN and InterVLAN Connectivity The symptoms of slow connectivity on a VLAN can be caused by multiple factors on different network layers. Commonly the network speed issue may be occurring on a lower level, but symptoms can be observed on a higher level as the problem masks itself under the term "slow VLAN". To clarify, this document defines the following new terms: "slow collision domain", "slow broadcast domain" (in other words, slow VLAN), and "slow interVLAN forwarding". These are defined in the section Three Categories of Causes, below.
In the following scenario (illustrated in the network diagram below), there is a Layer 3 (L3) switch performing interVLAN routing between the server and client VLANs. In this failure scenario, one server is connected to a switch, and the port duplex mode is configured half-duplex on the server side and full-duplex on the switch side. This misconfiguration results in a packet loss and slowness, with increased packet loss when higher traffic rates occur on the link where the server is connected. For the clients who communicate with this server, the problem looks like slow interVLAN forwarding because they do not have a problem communicating to other devices or clients on the same VLAN. The problem occurs only when communicating to the server on a different VLAN.Thus, the problem occurred on a single collision domain, but is seen as slow interVLAN forwarding.
Three Categories of Causes
The causes of slowness can be divided into three categories, as follows:
Slow Collision Domain Connectivity
Collision domain is defined as connected devices configured in a half-duplex port configuration, connected to each other or a hub. If a device is connected to a switch port and full-duplex mode is configured, such a point-to-point connection is collisionless. Slowness on such a segment still can occur for different reasons.
Slow Broadcast Domain Connectivity (Slow VLAN)
Slow broadcast domain connectivity occurs when the whole VLAN (that is, all devices on the same VLAN) experiences slowness.
Slow InterVLAN Connectivity (Slow Forwarding Between VLANs) Slow interVLAN connectivity (slow forwarding between VLANs) occurs when there is no slowness on the local VLAN, but traffic needs to be forwarded to an alternate VLAN, and it is not forwarded at the expected rate.
Causes for Network Slowness
In most cases, a network is considered slow when higher-layer protocols (applications) require extended time to complete an operation that typically runs faster.
That slowness is caused by the loss of some packets on the network, which causes higher-level protocols like TCP or applications to time out and initiate retransmission.
Hardware Forwarding Issues
With another type of slowness, caused by network equipment, forwarding (whether Layer 2 [L2] or L3) is performed slowly. This is due to a deviation from normal (designed) operation and switching to slow path forwarding. An example of this is when Multilayer Switching (MLS) on the switch forwards L3 packets between VLANs in the hardware, but due to misconfiguration, MLS is not functioning properly and forwarding is done by the router in the software (which drops the interVLAN forwarding rate significantly).
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