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NEW QUESTION: 1
An LTM Specialist is troubleshooting an issue with a new virtual server. When connecting through the virtual server, clients receive the message "Unable to connect" in the browser, although connections directly to the pool member show the application is functioning correctly. The LTM configuration is:
ltm virtual /Common/vs_https {
destination /Common/10.10.1.110:443
ip-protocol udp
mask 255.255.255.255
pool /Common/pool_https
profiles {
/Common/udp { }
}
translate-address enabled
translate-port enabled
vlans-disabled
}
ltm pool /Common/pool_https {
members {
/Common/172.16.20.1:443 {
address 172.16.20.1
}
}
}
How should the LTM Specialist resolve this issue?
A. Select the correct protocol for the virtual server.
B. Enable the pool member on the correct VLAN.
C. Add an HTTP profile to the virtual server.
D. Remove an HTTP monitor from the pool.
Answer: A

NEW QUESTION: 2
An administrator is attempting to power on a virtual machine, but the task is hanging at 95%.
What three scenarios best explain why this problem is happening? (Choose three.)
A. Another task for the virtual machine or other component is already in progress.
B. The host has lost access to the storage device containing the virtual machine files.
C. The host is under resource contention and unable to power on the virtual machine.
D. The VMware High Availability cluster has insufficient resources to guarantee failover.
E. A virtual machine question is currently being posed to the administrator.
Answer: A,D,E
Explanation:
Explanation/Reference:
Explanation:
It might be that another task for the virtual machine or another component is already in progress or that the Vmware HA cluster has insufficient resources to guarantee failover.
Reference: https://kb.vmware.com/selfservice/search.do?
cmd=displayKC&docType=kc&docTypeID=DT_KB_1_1&externalId=1027096

NEW QUESTION: 3
You need to ensure that your high-priority traffic uses the best-possible route while your best-effort traffic uses a lower preference route. You want to use CoS-based forwarding to use the DSCP values of the different types of traffic to assign the LSP that should be used for the next hop.
Which three additions must be made to the configuration to satisfy the requirement?
(Choose three.)
A. a class-of-service forwarding policy
B. a policy statement for LSP next-hop selection
C. an important policy applied to the forwarding table
D. a multifield firewall filter for LSP next-hop selection
E. an export policy applied to the forwarding table
Answer: A,D,E
Explanation:
D: The final step is to apply the route filter to routes exported to the forwarding engine. This is shown in the following example:
routing-options {
forwarding-table {
export my-cos-forwarding;
}
}
This configuration instructs the routing process to insert routes to the forwarding engine matching my-cos-forwarding with the associated next-hop CBF rules.
A: Assigning Forwarding Class and DSCP Value for Routing Engine-Generated Traffic You can set the forwarding class and differentiated service code point (DSCP) value for traffic originating in the Routing Engine. To configure forwarding class and DSCP values that apply to Routing Engine-generated traffic only, apply an output filter to the loopback (lo.0) interface and set the appropriate forwarding class and DSCP bit configuration for various protocols.
E: The following example assigns Routing Engine sourced ping packets (using ICMP) a DSCP value of 38 and a forwarding class of af17, OSPF packets a DSCP value of 12 and a forwarding class of af11, and BGP packets (using TCP ) a DSCP value of 10 and a forwarding class of af16.
[edit class-of-service]
forwarding-classes {
class af11 queue-num 7;
class af12 queue-num 1;
class af13 queue-num 2;
class af14 queue-num 4;
class af15 queue-num 5;
class af16 queue-num 4;
class af17 queue-num 6;
class af18 queue-num 7;
}
[edit firewall filter family inet]
filter loopback-filter {
term t1 {
from {
protocol icmp; # For pings
}
then {
forwarding-class af17;
dscp 38;
}
}
term t2 {
from {
protocol ospf; # For OSPF
}
then {
forwarding-class af11;
dscp 12;
}
}
}
Etc.
References: https://www.juniper.net/techpubs/en_US/junos16.1/topics/usage- guidelines/cos-assigning-fc-dscp-to-re-pkts.html
http://www.juniper.net/techpubs/en_US/junos13.3/information-products/pathway- pages/cos/forwarding-classes.pdf (page 42)

NEW QUESTION: 4
You are developing a serverless application with Oracle Functions. Your function needs to store state in a database. Your corporate security Standards mandate encryption of secret information like database passwords.
As a function developer, which approach should you follow to satisfy this security requirement?
A. Encrypt the password using Oracle Cloud Infrastructure Key Management. Decrypt this password in your function code with the generated key.
B. All function configuration variables are automatically encrypted by Oracle Functions.
C. Use Oracle Cloud Infrastructure Key Management to auto-encrypt the password. It will inject the auto-decrypted password inside your function container.
D. Use the Oracle Cloud Infrastructure Console and enter the password in the function configuration section in the provided input field.
Answer: D
Explanation:
Passing Custom Configuration Parameters to Functions
he code in functions you deploy to Oracle Functions will typically require values for different parameters. Some pre-defined parameters are available to your functions as environment variables. But you'll often want your functions to use parameters that you've defined yourself. For example, you might create a function that reads from and writes to a database. The function will require a database connect string, comprising a username, password, and hostname. You'll probably want to define username, password, and hostname as parameters that are passed to the function when it's invoked.
Using the Console
To specify custom configuration parameters to pass to functions using the Console:
Log in to the Console as a functions developer.
In the Console, open the navigation menu. Under Solutions and Platform, go to Developer Services and click Functions.
Select the region you are using with Oracle Functions. Oracle recommends that you use the same region as the Docker registry that's specified in the Fn Project CLI context (see 6. Create an Fn Project CLI Context to Connect to Oracle Cloud Infrastructure).
Select the compartment specified in the Fn Project CLI context (see 6. Create an Fn Project CLI Context to Connect to Oracle Cloud Infrastructure).
The Applications page shows the applications defined in the compartment.
Click the name of the application containing functions to which you want to pass custom configuration parameters:
To pass one or more custom configuration parameters to every function in the application, click Configuration to see the Configuration section for the application.
To pass one or more custom configuration parameters to a particular function, click the function's name to see the Configuration section for the function.
In the Configuration section, specify details for the first custom configuration parameter:
Key: The name of the custom configuration parameter. The name must only contain alphanumeric characters and underscores, and must not start with a number. For example, username Value: A value for the custom configuration parameter. The value must only contain printable unicode characters. For example, jdoe Click the plus button to save the new custom configuration parameter.
Oracle Functions combines the key-value pairs for all the custom configuration parameters (both application-wide and function-specific) in the application into a single, serially-encoded configuration object with a maximum allowable size of 4Kb. You cannot save the new custom configuration parameter if the size of the serially-encoded configuration object would be greater than 4Kb.
(Optional) Enter additional custom configuration parameters as required.