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NEW QUESTION: 1
GDPRによって明示的に定義されているデータ主体権はどれですか?
A. データ主体がこれを要求した場合、個人データは常に消去する必要があります。
B. 個人データへのアクセスは、データ主体に対して無料で提供される必要があります。
C. 個人データは、データ主体の要求に応じて常に変更する必要があります。
D. 個人データのコピーは、データ主体が要求する形式で提供する必要があります。
Answer: B
Explanation:
A copy of personal data must be provided in the format requested by the data subject. Incorrect. It must be provided in a structured, commonly used and machine-readable format, but not necessarily in any format the data subject specifies.
Access to personal data must be provided free of charge for the data subject. Correct. Data subjects have a right to a copy of their data free of charge. However, only the first copy has to be free. (Literature: A, Chapter 4) Personal data must always be changed at the request of the data subject. Incorrect. Only erroneous data has to be rectified.
Personal data must always be erased if the data subject requests this. Incorrect. The right to erasure has several exceptions to this, for instance if the data are needed for the establishment, exercise or defense of legal claims.
NEW QUESTION: 2
Which type of VPN requires a full mesh of virtual circuits to provide optimal site-to-site connectivity?
A. Layer 2 overlay VPNs
B. GET VPNs
C. MPLS Layer 3 VPNs
Answer: A
Explanation:
Explanation/Reference:
Explanation:
http://etutorials.org/Networking/MPLS+VPN+Architectures/Part+2+MPLS-based+Virtual+Private
+Networks/Chapter+7.+Virtual+Private+Network+VPN+Implementation+Options/Overlay+and+Peer-to- peer+VPN+Model/ Two VPN implementation models have gained widespread use:
The overlay model, where the service provider provides emulated leased lines to the customer.
The service provider provides the customer with a set of emulated leased lines. These leased lines are called VCs, which can be either constantly available (PVCs) or established on demand (SVCs). The QoS guarantees in the overlay VPN model usually are expressed in terms of bandwidth guaranteed on a certain VC (Committed Information Rate or CIR) and maximum bandwidth available on a certain VC (Peak Information Rate or PIR). The committed bandwidth guarantee usually is provided through the statistical nature of the Layer 2 service but depends on the overbooking strategy of the service provider The peer-to-peer model, where the service provider and the customer exchange Layer 3 routing information and the provider relays the data between the customer sites on the optimum path between the sites and without the customer's involvement.
The peer-to-peer VPN model was introduced a few years ago to alleviate the drawbacks of the overlay VPN model. In the peer-to-peer model, the Provider Edge (PE) device is a router (PE-router) that directly exchanges routing information with the CPE router. The Managed Network service offered by many service providers, where the service provider also manages the CPE devices, is not relevant to this discussion because it's only a repackaging of another service. The Managed Network provider concurrently assumes the role of the VPN service provider (providing the VPN infrastructure) and part of the VPN customer role (managing the CPE device).
The peer-to-peer model provides a number of advantages over the traditional overlay model:
Routing (from the customer's perspective) becomes exceedingly simple, as the customer router exchanges routing information with only one (or a few) PE-router, whereas in the overlay VPN network, the number of neighbor routers can grow to a large number.
Routing between the customer sites is always optimal, as the provider routers know the customer's network topology and can thus establish optimum inter-site routing.
Bandwidth provisioning is simpler because the customer has to specify only the inbound and outbound bandwidths for each site (Committed Access Rate [CAR] and Committed Delivery Rate [CDR]) and not the exact site-to-site traffic profile.
The addition of a new site is simpler because the service provider provisions only an additional site and changes the configuration on the attached PE-router. Under the overlay VPN model, the service provider must provision a whole set of VCs leading from that site to other sites of the customer VPN.
Prior to an MPLS-based VPN implementation, two implementation options existed for the peer-to-peer VPN model:
The shared-router approach, where several VPN customers share the same PE-router.
The dedicated-router approach, where each VPN customer has dedicated PE-routers.
Overlay VPN paradigm has a number of drawbacks, most significant of them being the need for the customer to establish point-to-point links or virtual circuits between sites. The formula to calculate how many point-to-point links or virtual circuits you need in the worst case is ((n)(n-1))/2, where n is the number of sites you need to connect. For example, if you need to have full-mesh connectivity between 4 sites, you will need a total of 6 point-to-point links or virtual circuits.
To overcome this drawback and provide the customer with optimum data
transport across the Service Provider backbone, the peer-to-peer VPN concept was introduced where the Service Provider actively participates in the customer routing, accepting customer routes, transporting them across the Service Provider backbone and finally propagating them to other customer sites.
NEW QUESTION: 3
Your company has offices in New York and Montreal. Each office is configured as an Active Directory site.
You have an Exchange Server 2010 SP1 organization. The organization contains five servers. The servers are configured as shown in the following table:
Each Mailbox server contains two mailbox databases. All users have a mailbox on their local Mailbox server.
Server3 contains a public folder database.
You create a Client Access array named casarray1.contoso.com.
You need to ensure that all of the users connect to casarray1.contoso.com when they open their mailbox by
using Microsoft Outlook 2010.
What Should you modify?
A. The Exchange ActiveSync mailbox policy.
B. The Outlook Web App mailbox policy.
C. The Autodiscover DNS record.
D. The mailbox database.
E. An Attachment Filter agent.
F. The email address policy.
G. The EWS virtual directory.
H. The mailbox features.
I. The Client Access array.
Answer: D
Explanation:
Set-MailboxDatabase <name of DB> -RpcClientAccessServer "outlook.domain.com"
Reference:
http://www.msexchange.org/articles_tutorials/exchange-server-2007/planning-architecture/uncovering-newrpc-client-access-service-exchange-2010-part1.html
NEW QUESTION: 4
Which two Cisco Nexus 1000V Series Switch features exceed the functionality of the VWware vNetwork Distributed Switch? (Choose two )
A. Network vMotion
B. port state migration
C. QoS marking
D. access control lists
E. DV Port Groups
Answer: C,D