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NEW QUESTION: 1
HOTSPOT
You need to recommend a solution to meet the technical requirements for email message recovery.
Which command should you include in the recommendation? (To answer, configure the appropriate options in the answer area.)

Answer:
Explanation:
Topic 5, Proseware, Inc
Overview General Overview
Proseware, Inc., is an international manufacturing company that has 3,000 users. Proseware has a sales department, a marketing department, a research department, and a human resources department.
Proseware recently purchased a small competitor named Contoso, Ltd.
Physical Locations
Proseware has two offices. The offices are located in New York and London. The offices connect to each other by using a WAN link. Each office connects directly to the Internet. Contoso has one office in Chicago.
Existing Environment Active Directory Environment
The network of Proseware contains an Active Directory forest named proseware.com. The forest contains a single domain and two sites named London and New York. Each site contains two domain controllers that run Windows Server 2008 R2. The domain controllers in the New York site are named DC1 and DC2. The domain controllers in the London site are named DC3 and DC4.
All FSMO roles are hosted on DC3 and DC4.
The network of Contoso contains an Active Directory forest named contoso.com. The forest contains five domain controllers and one site.
Exchange Server Organization
Proseware has an Exchange Server 2013 organization that contains two database availability groups (DAGs) named DAG-NYC and DAG-LON. The DAGs are configured as shown in the following table.
The certificate used for Exchange Server 2013 has a subject name of mail.proseware.com and a Subject Alternative Name (SAN) of autodiscover.proseware.com.
Each mailbox database has three copies. All users connect to an active copy of the database on a server in their respective office. Native data protection is implemented.
NTLM communication is used exclusively for Outlook Anywhere both internally and externally. Problem Statements
Proseware identifies the following issues:
- Users report that sometimes, they fail to access the free/busy information of the other users. You also discover that some users fail to retrieve Autodiscover settings.
- Users in the London office report that during a 24-hour WAN outage, they could see only new users in the global address list (GAL) from Outlook Web App.
- The manager of the human resources department in the New York office cannot see new London office users in the GAL until several hours after the help desk confirms that the users were created.
- A hung MSExchangeOWAAppPool in Internet Information Services (IIS) on EX1 causes all of the database copies to fail over. Despite having the same CopyQueueLength and ReplayQueueLength as the copies on EX2, the copies on EX3, which have a higher activation preference, are activated, forcing user connections over the WAN.
- A custom application named App1 recently malfunctioned and sent hundreds of false positive email notifications that had a subject of System Alert: Sales Database Reaching Capacity to all of the users in the organization. While attempting to remove the email messages, an administrator ran the Search-Mailbox -DeleteContent command and erroneously deleted valid email messages from the mailboxes of some executives.
Requirements Business Goal
Proseware identifies the following business goals: - Reduce the costs associated with using bandwidth on the WAN links. - Improve social media integration by using a Microsoft Outlook app that will be
deployed to all of the users in the sales department.
Planned Changes
Proseware plans to make the following changes: - Implement a lagged copy for the mailbox database of the executives. - Implement an RBAC-linked role group for the administrators at Contoso to manage
the mailboxes of the Proseware users.
Technical Requirements
Proseware identifies the following technical requirements: - End users must be notified after one hour if the email messages that they send are not delivered.
- If mailbox database storage fails, the IT department must be able to recover old email messages that were sent up to five days earlier to the mailboxes of the executives.
- All new users hired at Contoso must have a user account in contoso.com and an Exchange Server mailbox in proseware.com. All new user accounts in contoso.com must have a user principal name (UPN) that ends with proseware.com.
- Administrators at Contoso must be able to create and manage recipient objects in the Exchange Server organization of Proseware by using their existing contoso.com administrator account. All Contoso recipient objects must reside in an organizational unit (OU) named proseware.com
Security Requirements
The Chief Security Officer (CSO) introduces the following security requirements: - All Outlook users who connect from the Internet must use Basic authentication only. - All Outlook users who connect from the internal network must use NTLM authentication only.
SLA Requirements
Due to productivity losses during some recent maintenance windows, the Chief Information Officer (CIO) introduces a new service level agreement (SLA) requiring that all servers
entering or exiting a maintenance window must be taken in and out of service properly.
The SLA contains the following requirements: - All mounted databases on the server undergoing maintenance must be activated on another server. - All message queues on the server undergoing maintenance must be empty before maintenance can begin. - The server undergoing maintenance must be prevented from becoming a Primary Active Manager (PAM). - Databases copies on the server undergoing maintenance must not be activated while maintenance is occurring.
NEW QUESTION: 2
Which of the following is NOT a type of motion detector?
A. Ultrasonic Sensor.
B. Passive infrared sensors
C. Microwave Sensor.
D. Photoelectric sensor
Answer: D
Explanation:
A photoelectric sensor does not "directly" sense motion there is a narrow
beam that won't set off the sensor unless the beam is broken. Photoelectric sensors, along
with dry contact switches, are a type of perimeter intrusion detector.
All of the other answers are valid types of motion detectors types.
The content below on the different types of sensors is from Wikepedia:
Indoor Sensors
These types of sensors are designed for indoor use. Outdoor use would not be advised
due to false alarm vulnerability and weather durability.Passive infrared detectors
Passive Infrared Sensor
The passive infrared detector (PIR) is one of the most common detectors found in
household and small business environments because it offers affordable and reliable
functionality. The term passive means the detector is able to function without the need to
generate and radiate its own energy (unlike ultrasonic and microwave volumetric intrusion
detectors that are "active" in operation). PIRs are able to distinguish if an infrared emitting
object is present by first learning the ambient temperature of the monitored space and then
detecting a change in the temperature caused by the presence of an object. Using the
principle of differentiation, which is a check of presence or nonpresence, PIRs verify if an
intruder or object is actually there. Creating individual zones of detection where each zone
comprises one or more layers can achieve differentiation. Between the zones there are
areas of no sensitivity (dead zones) that are used by the sensor for comparison.
Ultrasonic detectors
Using frequencies between 15 kHz and 75 kHz, these active detectors transmit ultrasonic
sound waves that are inaudible to humans. The Doppler shift principle is the underlying
method of operation, in which a change in frequency is detected due to object motion. This
is caused when a moving object changes the frequency of sound waves around it. Two
conditions must occur to successfully detect a Doppler shift event:
There must be motion of an object either towards or away from the receiver.
The motion of the object must cause a change in the ultrasonic frequency to the receiver
relative to the transmitting frequency.
The ultrasonic detector operates by the transmitter emitting an ultrasonic signal into the
area to be protected. The sound waves are reflected by solid objects (such as the
surrounding floor, walls and ceiling) and then detected by the receiver. Because ultrasonic
waves are transmitted through air, then hard-surfaced objects tend to reflect most of the
ultrasonic energy, while soft surfaces tend to absorb most energy.
When the surfaces are stationary, the frequency of the waves detected by the receiver will be equal to the transmitted frequency. However, a change in frequency will occur as a result of the Doppler principle, when a person or object is moving towards or away from the detector. Such an event initiates an alarm signal. This technology is considered obsolete by many alarm professionals, and is not actively installed. Microwave detectors This device emits microwaves from a transmitter and detects any reflected microwaves or reduction in beam intensity using a receiver. The transmitter and receiver are usually combined inside a single housing (monostatic) for indoor applications, and separate housings (bistatic) for outdoor applications. To reduce false alarms this type of detector is usually combined with a passive infrared detector or "Dualtec" alarm.
Microwave detectors respond to a Doppler shift in the frequency of the reflected energy, by a phase shift, or by a sudden reduction of the level of received energy. Any of these effects may indicate motion of an intruder. Photo-electric beams Photoelectric beam systems detect the presence of an intruder by transmitting visible or infrared light beams across an area, where these beams may be obstructed. To improve the detection surface area, the beams are often employed in stacks of two or more. However, if an intruder is aware of the technology's presence, it can be avoided. The technology can be an effective long-range detection system, if installed in stacks of three or more where the transmitters and receivers are staggered to create a fence-like barrier. Systems are available for both internal and external applications. To prevent a clandestine attack using a secondary light source being used to hold the detector in a 'sealed' condition whilst an intruder passes through, most systems use and detect a modulated light source.
Glass break detectors The glass break detector may be used for internal perimeter building protection. When glass breaks it generates sound in a wide band of frequencies. These can range from infrasonic, which is below 20 hertz (Hz) and can not be heard by the human ear, through the audio band from 20 Hz to 20 kHz which humans can hear, right up to ultrasonic, which is above 20 kHz and again cannot be heard. Glass break acoustic detectors are mounted in close proximity to the glass panes and listen for sound frequencies associated with glass breaking. Seismic glass break detectors are different in that they are installed on the glass pane. When glass breaks it produces specific shock frequencies which travel through the glass and often through the window frame and the surrounding walls and ceiling. Typically, the most intense frequencies generated are between 3 and 5 kHz, depending on the type of glass and the presence of a plastic interlayer. Seismic glass break detectors "feel" these shock frequencies and in turn generate an alarm condition.
The more primitive detection method involves gluing a thin strip of conducting foil on the inside of the glass and putting low-power electrical current through it. Breaking the glass is practically guaranteed to tear the foil and break the circuit. Smoke, heat, and carbon monoxide detectors
Heat Detection System Most systems may also be equipped with smoke, heat, and/or carbon monoxide detectors. These are also known as 24 hour zones (which are on at all times). Smoke detectors and heat detectors protect from the risk of fire and carbon monoxide detectors protect from the risk of carbon monoxide. Although an intruder alarm panel may also have these detectors connected, it may not meet all the local fire code requirements of a fire alarm system.
Other types of volumetric sensors could be:
Active Infrared Passive Infrared/Microware combined Radar Accoustical Sensor/Audio Vibration Sensor (seismic) Air Turbulence
NEW QUESTION: 3
Which of the following is NOT an organizational audit purpose?
A. How often does the received product match the one ordered?
B. Is technology being used to the fullest extent?
C. Are internal customers getting appropriate information new products?
D. Are producers and supplier demand equal?
Answer: D
Explanation:
Whether producers and supplier demand equal is NOT an audit purpose. Whether technology is being used to the fullest extent, are internal customers getting appropriate information new products, and how often does the received product match the one ordered are all audit purposes.
NEW QUESTION: 4
Aruba Mobility Master(MM)ベースのソリューションのWLANは、エンタープライズWPA2セキュリティを実施し、トンネル転送モードを使用します。会社には外部RADIUSサーバーがあります。
RADIUSサーバーとRADIUSパケットを交換するデバイスはどれですか?
A. ワイヤレスクライアント
B. アクセスポイント(AP)
C. モビリティマスター(MM)
D. モビリティコントローラー(MC)
Answer: C
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