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NEW QUESTION: 1
Click the Exhibit button.

The maximum RAID group size of the RAID-DP aggr1 shown in the exhibit is 18. You expand the aggregate by 20 disks.
How many of the new disks are used for data?
A. 0
B. 1
C. 2
D. 3
Answer: A
Explanation:
RAID 6 extends RAID 5 by adding another parity block; thus, it uses block-level striping with two parity blocks distributed across all member disks.
Figure: Diagram of a RAID 6 setup, which is identical to RAID 5 other than the addition of a second parity block


NEW QUESTION: 2
コアインシデント対応チームの一員であるファーストレスポンダは、ディレクトリ全体を暗号化するためにNASに呼びかけていた3つのホストを隔離するために急いでデータ損失を招いたランサムウェアの発生を封じ込めるために取り組んでいます。 調査せずに直ちに閉鎖され、その後隔離された。
次のうちどれが逃しましたか? (2つ選んでください。)
A. 既知のクリーンな状態にデータを復元するために必要な基本情報
B. 調査に必要なCoC情報
C. CPU、プロセス状態テーブル、およびメインメモリダンプ
D. 一時ファイルシステムとスワップ空間
E. ランサムウェアの暗号化を決定するための妥協の指標
Answer: C,E
Explanation:
Shutting the computer down means complete loss of forensic evidence within the "A" This means likely loss of indicators of compromise to determine ransomware encryption "D"

NEW QUESTION: 3
You are deploying a standalone SRX650 in transparent mode for evaluation purposes in a potential client's network. The client will need to access the device to modify security policies and perform other various configurations. Where would you configure a Layer 3 interface to meet this requirement?
A. vlan.1
B. ge-0/0/0.0
C. irb.1
D. fxp0.0
Answer: C
Explanation:
Explanation/Reference:
Reference: http://safetynet.trapezenetworks.com/techpubs/en_US/junos12.1/information- products/topic- collections/security/software-all/layer-2/index.html?topic-52755.html

NEW QUESTION: 4
The public key is used to perform the following: (Choose three.)
A. Decrypt messages
B. Perform key escrow
C. Encrypt messages
D. Validate the identity of an email sender
E. Perform key recovery
F. Validate the CRL
Answer: A,C,D
Explanation:
Section: Cryptography
Explanation/Reference:
Explanation:
B: The sender uses the private key to create a digital signature. The message is, in effect, signed with the
private key. The sender then sends the message to the receiver. The receiver uses the public key attached
to the message to validate the digital signature. If the values match, the receiver knows the message is
authentic.
C: The sender uses the public key to encrypt a message, and the receiver uses the private key to decrypt
the message.
E: You encrypt data with the private key and decrypt with the public key, though the opposite is much more
frequent.
Public-key cryptography, also known as asymmetric cryptography, is a class of cryptographic protocols
based on algorithms that require two separate keys, one of which is secret (or private) and one of which is
public. Although different, the two parts of this key pair are mathematically linked.