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NEW QUESTION: 1
회사의 서버 가상화 팀은 기존 네트워크 스토리지 배열을 사용하기 위해 일련의 Hyper-V 워크로드를 프로비저닝해야 합니다. 팀은 게스트 운영 체제 내에서 파이버 채널 포트를 사용하도록 선택했습니다.
Hyper-V 파이버 채널 포트를 사용할 때 게스트 운영 체제로 사용할 수 있는 다음 Windows Server 버전은 무엇입니까?
A. 2003 R2
B. 0
C. 1
D. 2
Answer: B,C
Explanation:
설명
Hyper-V 파이버 채널 HBA (호스트 버스 어댑터)를 사용하는 경우 Windows Server 2008, 2008 R2 및 2012 R2는 게스트 운영 체제가 될 수 있습니다. NPIV 지원 (N_Port ID 가상화) SAN과 함께 업데이트 된 HBA 드라이버가 필요합니다.
빠른 팁 : 가상 파이버 채널 논리 장치는 부트 매체로 사용할 수 없습니다.
NEW QUESTION: 2
With Oracle Database Cloud Service as the subscription type, you must configure a database for Backup and Recovery.
Which two options do you have to back up your database instance?
A. No backups required. You are responsible for configuring the database backups.
B. Backup to cloud storage and VM block storage. Fourteen days worth of backups are kept, with seven most recent days worth of backups available directly on VM block storage.
C. Backup to cloud storage and VM block storage. Ten days worth of backups are kept, with five most recent days worth of backups available directly on VM block storage.
D. Backup to Oracle Cloud Service storage volumes that is equal to five times the value that was provided in Usable Data Storage when the instance was created.
Answer: A,D
Explanation:
When creating a new database deployment on Oracle Database Cloud Service, you choose whether you want automatic backups to be configured for the database. Your choices are:
Both Cloud Storage and Local Storage-30 days' worth of backups are kept, with the 7 most recent days' worth available directly on the compute node's local storage.
Cloud Storage Only-30 days' worth of backups are kept, with all backups on cloud storage.
None-automatic backups are not configured.
References: https://docs.oracle.com/en/cloud/paas/database-dbaas-cloud/csdbi/db-deployments.html
NEW QUESTION: 3
展示を参照してください。

ステートフルなパケットファイアウォールを使用し、内部ACLエントリpermit ip 192.16.1.00 .0.0.255 anyを指定すると、外部ACLの戻りトラフィックに対して、結果として動的に設定されたACLはどのようになりますか?
A. permit tcp host 172.16.16.10 eq 80 host 192.168.1.11 eq 2300
B. permit tcp any eq 80 host 192.168.1.11 eq 2300
C. permit ip 172.16.16.10 eq 80 192.168.1.0 0.0.0.255 eq 2300
D. permit ip host 172.16.16.10 eq 80 host 192.168.1.0 0.0.0.255 eq 2300
Answer: A
Explanation:
http://www.cisco.com/en/US/docs/security/security_management/cisco_security_manager/security_manager/4.1/user/guide/fwinsp.html
Understanding Inspection Rules
Inspection rules configure Context-Based Access Control (CBAC) inspection commands. CBAC inspects traffic that travels through the device to discover and manage state information for TCP and UDP sessions. The device uses this state information to create temporary openings to allow return traffic and additional data connections for permissible sessions.
CBAC creates temporary openings in access lists at firewall interfaces. These openings are created when inspected traffic exits your internal network through the firewall. The openings allow returning traffic (that would normally be blocked) and additional data channels to enter your internal network back through the firewall. The traffic is allowed back through the firewall only if it is part of the same session as the original traffic that triggered inspection when exiting through the firewall.
Inspection rules are applied after your access rules, so any traffic that you deny in the access rule is not inspected. The traffic must be allowed by the access rules at both the input and output interfaces to be inspected. Whereas access rules allow you to control connections at layer 3 (network, IP) or 4 (transport, TCP or UDP protocol), you can use inspection rules to control traffic using application-layer protocol session information.
For all protocols, when you inspect the protocol, the device provides the following functions:
* Automatically opens a return path for the traffic (reversing the source and destination addresses), so that you do not need to create an access rule to allow the return traffic. Each connection is considered a session, and the device maintains session state information and allows return traffic only for valid sessions. Protocols that use TCP contain explicit session information, whereas for UDP applications, the device models the equivalent of a session based on the source and destination addresses and the closeness in time of a sequence of UDP packets.
These temporary access lists are created dynamically and are removed at the end of a session.
* Tracks sequence numbers in all TCP packets and drops those packets with sequence numbers that are not within expected ranges.
* Uses timeout and threshold values to manage session state information, helping to determine when to drop sessions that do not become fully established. When a session is dropped, or reset, the device informs both the source and destination of the session to reset the connection, freeing up resources and helping to mitigate potential Denial of Service (DoS) attacks.