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NEW QUESTION: 1
An LTM has the 3 virtual servers, four self IP addresses defined and the networks shown in the exhibit. Selected options for each object are shown below. Settings not shown are at their defaults. VirtualServerl Destination: 10.10.2.102:443 netmask 255.255.255.255 Pool: Pool with 3 members in the 172.16/16 network VirtualServer2 Destination: 10.10.2.102:* netmask 255.255.255.255 Pool: Pool with 3 members in the 192.168/16 network VirtualServer3 Destination: 10.10.2.0:80 netmask 255.255.255.0 Type: IP Forwarding SNAT1 Source IP: All Addresses SNAT Address: SNAT Pool with 2 members -172.16.20.50 and 192.168.10.50 Self IPs 192.168.1.1; 172.16.1.1; 10.10.2.1;
10.10.1.1 A connection attempt is made with a source IP and port of 10.20.100.50:2222 and a destination IP and port of 10.10.2.102:80. When the request is processed, what will be the destination IP address?
A. The request will be dropped.
B. Destination IP: pool member in the 172.16/16 network
C. Destination IP: pool member in the 192.168/16 network
D. Destination IP: 10.10.2.102
Answer: C
NEW QUESTION: 2
You want to use netcat to generate huge amount of useless network data continuously for various performance testing between 2 hosts.
Which of the following commands accomplish this?
A. Machine A #yes AAAAAAAAAAAAAAAAAAAAAA | nc -v -v -l -p 2222 > /dev/null Machine B #yes BBBBBBBBBBBBBBBBBBBBBB | nc machinea 2222 > /dev/null
B. Machine A nc -l -p 1234 | uncompress -c | tar xvfp Machine B tar cfp - /some/dir | compress -c | nc -w 3 machinea 1234
C. Machine A cat somefile | nc -v -v -l -p 2222 Machine B cat somefile | nc othermachine 2222
D. Machine A while true : do nc -v -l -s -p 6000 machineb 2 Machine B while true ; do nc -v -l -s -p 6000 machinea 2 done
Answer: A
Explanation:
Machine A is setting up a listener on port 2222 using the nc command and then having the letter A sent an infinite amount of times, when yes is used to send data yes NEVER stops until it recieves a break signal from the terminal (Control+C), on the client end (machine B), nc is being used as a client to connect to machine A, sending the letter B and infinite amount of times, while both clients have established a TCP connection each client is infinitely sending data to each other, this process will run FOREVER until it has been stopped by an administrator or the attacker.
NEW QUESTION: 3
Sie müssen sicherstellen, dass die Sicherheitsanforderungen erfüllt sind.
Wie solltest du das Codesegment vervollständigen?
Um zu antworten, wählen Sie die entsprechende Option im Antwortbereich.
HINWEIS: Jede richtige Auswahl ist einen Punkt wert.
Answer:
Explanation:
Explanation:
Box 1: ExpenseAccount
Scenario: User's expense account number must be visible only to logged in users. All other views of the expense account number should include only the last segment. With the remaining parts obscured.
Box 2: Text
If MaskingFunction has a value of Number or Text, you can specify the NumberFrom and NumberTo parameters, for number masking, or the PrefixSize, ReplacementString, and SuffixSize for text masking.
Box 3: 4
-SuffixSize specifies the number of characters at the end of the text that are not masked. Specify this parameter only if you specify a value of Text for the MaskingFunction parameter.
Scenario: Format is 1234-1234-1235
Box 4: xxxx"
Scenario: Format is 1234-1234-1235
References:
https://docs.microsoft.com/en-us/powershell/module/azurerm.sql/new-azurermsqldatabasedatamaskingrule?view=azurermps-6.13.0
NEW QUESTION: 4
You want to prioritize the video streaming traffic over the HTTP server traffic. Which attribute can be used to identify the streaming video flow?
A. IP address and TCP port
B. the NIC Transmit and Receive Ring
C. the Application Port Number
D. the Differentiated Service Field
Answer: D
Explanation:
* DiffServ uses the 6-bit Differentiated services Field (DS field) in the IP header for packet classification purposes.
* In the Diffserv model, the marker marks a packet with a value that reflects a forwarding behavior. Marking is the process of placing a value in the packet's header to indicate how to forward the packet to the network. IPQoS contains two marker modules:
/ dscpmk - Marks the DS field in an IP packet header with a numeric value that is called the Differentiated Services codepoint, or DSCP. A Diffserv-aware router can then use the DS codepoint to apply the appropriate forwarding behavior to the packet.
/ dlcosmk - Marks the virtual local area network (VLAN) tag of an Ethernet frame header with a numeric value that is called the user priority. The user priority indicates the class of service (CoS), which defines the appropriate forwarding behavior to be applied to the datagram.
Note:
*Differentiated services or DiffServ is a computer networking architecture that specifies a simple, scalable and coarse-grained mechanism for classifying and managing network traffic and providing quality of service (QoS) on modern IP networks. DiffServ can, for example, be used to provide low-latency to critical network traffic such as voice or streaming media while providing simple best-effort service to non-critical services such as web traffic or file transfers.
*IPQoS, included in Solaris, includes the following modules, which are part of the Differentiated Services (Diffserv) architecture that is defined in RFC 2475: Classifier Meter Marker
IPQoS adds the following enhancements to the Diffserv model: Flow-accounting module 802.1D datagram marker